亚洲欧美日韩中文字幕在线_亚洲成a人片在线观看中文_亚洲欧美日韩中文在线制服_久久91亚洲精品中文字幕

Hello, welcome to the official website of Shandong Harvey Pharmaceutical Co., Ltd.!
13146463569
400-008-0030
{dede:global.cfg_enwebname/}

Cardiovascular

products
Contact

Shandong Harvey Pharmaceutical Co., Ltd.

Address:Building A7, medical equipment Industrial Park, Yanhe Road, high tech Zone, Heze City, Shandong Province
Tel:400-008-0030

Hotline400-008-0030

Mechanisms of Action of Kefir in Chronic Cardiovascular and

Date:2019-12-27 06:04:35Times:

細胞生理生化2018;48:1901-1914
Mechanisms of Action of Kefir in Chronic Cardiovascular and Metabolic Diseases
Fabio S Pimentaa
Maria Luaces-Regueirab Alyne MM Tona
Bianca P Campagnaroa
Manuel Campos-Toimilb Thiago MC Pereiraa,c
Elisardo C Vasqueza
aLaboratory of Translational Physiology and Pharmacology, Pharmaceutical Sciences Graduate Program, Vila Velha University (UVV), Vila Velha, Brazil, bPharmacology of Chronic Diseases (CDPHARMA), Molecular Medicine and Chronic Diseases Research Centre (CIMUS), University of Santiago de Compostela, Santiago de Compostela, Spain, cFederal Institute of Education, Science and Technology (IFES), Vila Velha, Brazil
Key Words
Microbiota • Endothelial dysfunction • Baroreflex • Insulin resistance • Hypertension • Dyslipidemia • Atherosclerosis
Abstract
The gut microbiota maintains a complex mutual interaction with different organs of the host. Whereas in normal conditions this natural community of trillions of microorganisms greatly contributes to the human health, gut dysbiosis is related with onset or worsening of diverse chronic systemic diseases. Thus, the reestablishment of gut microbiota homeostasis with consumption of prebiotics and probiotics may be a relevant strategy to prevent or attenuate several cardiovascular and metabolic complications. Among these functional foods, the synbiotic kefir, which is a fermented milk composed of a mixture of bacteria and yeasts, is currently the most used and has attracted the attention of health care professionals. The present review is focused on reports describing the feasibility of kefir consumption to provide benefits in cardiometabolic diseases, including hypertension, vascular endothelial dysfunction, dyslipidemia and insulin resistance. Interestingly, recent studies show that mechanisms of actions of kefir in cardiometabolic diseases include recruitment of endothelial progenitor cells, improvement of the balance vagal/sympathetic nervous system, diminutionof excessive generation of reactive oxygen species, angiotensin converting enzyme inhibition, anti-inflammatory cytokines profile and alteration of the intestinal microbiota. These findings provide a better understanding about the mechanisms of the beneficial actions of kefir and motivate further investigations to determine whether the use of this synbiotic could also be translated into clinical improvements in cardiometabolic diseases.

Background
 
      In recent years, the incidence of cardiovascular and metabolic diseases in developed and developing countries has been increasing year by year, and the damage to global human health and quality of life is increasing. If the existing treatment methods cannot be effectively improved or better health care options can not be provided, the impact of such diseases on the global population will be increasingly serious. In recent years, scientists have found that intestinal flora can interact with human body, and the great changes of intestinal flora may further cause systemic diseases, such as cardiovascular and metabolic diseases. In the health management of these patients, the use of probiotics or their metabolites to improve the intestinal flora and further regulate metabolic diseases has begun to attract the attention of scientists and industry.
 
      Intestinal flora generally refers to non pathogenic microorganisms in the intestinal tract, which can form symbiotic bacteria with intestinal cells. These probiotics and intestinal cells can jointly form a barrier to foreign pathogens, to avoid pathogen infection and kill these bacteria. At the same time, some nutrients of human body also come from the metabolites of intestinal flora. In addition, these intestinal flora can further affect the distal organs of the body. For example, the flora bacteria regulate the brain and autonomic nervous system through the influence of endocrine and circulatory system. Figure 1 shows that the factors that destroy the intestinal flora are quite complex, including acute and chronic intestinal infections, antibiotic use, systemic diseases, aging, diet, living habits, etc. Therefore, this paper reviews the scientific and clinical experiments to further explore the effects of this functional food on cardiovascular system, endothelial cell function, arterial hypertension and hyperlipidemia, insulin antagonistic effect and other cardiovascular diseases.
 
2、 Kefir fermented milk and functional food
 
      The definition of functional food is that through long-term consumption of the product, in addition to the basic nutrients, it can bring health promotion effect to human body through the active ingredients, which is the lack of general food. With the world's urgent demand for functional food, more and more scientists and companies have invested in the research and development of products or materials, and many functional food have come out, so we are also curious about which functional food can change or improve intestinal flora, and further affect human health. The earliest human cognition of bacteria is a kind of microorganism that can cause disease. But with the progress of science and technology, we gradually understand that there are many kinds of bacteria, better or worse. At the beginning of last century, Dr. Elie Metchnikoff, the Nobel Prize winner of physiology from the Soviet Union, first proposed the theory that eating lactobacillus can bring benefits to human health! Over 100 years ago, kefir fermented milk has not been submerged by the historical trend, but also become one of the super foods. Many studies have pointed out that kefir fermented milk can improve intestinal flora, immune system and body organ function.
 
      Probiotics and synbiotics (mixture of probiotics and probiotics) have been used as dietary supplements to improve the balance of intestinal bacteria for many years. More and more researches have explored how probiotics can improve human health in the intestinal tract, such as producing bacteriostatic substances, occupying the surface of intestinal epithelial cells, making pathogens unable to attach, producing nutrients, immunomodulating, inhibiting pathogens producing toxins, etc. At the same time of using probiotic products, probiotics (such as indigestible oligosaccharides) will be added as probiotic food to promote probiotic colonization in the intestinal tract. Therefore, functional products are mostly composed of probiotics and probiotics at the same time, which can achieve the maximum benefit.
 
      Compared with probiotic products, fermented milk, a health promoting drink, has existed in human society for hundreds or even thousands of years. Hundreds of years ago, kefir fermented milk first appeared in the mountains of the north Caucasus, and it has been passed down from generation to generation and even spread all over the world. With the spread of kefir granule, a fermenting bacterium, more and more people in the world will make fermented milk with kefir granule at home. Kefir granules are symbiotic microfacies composed of a variety of lactic acid bacteria, yeast and acetic acid bacteria. Kefir granules circulated in different places may have differences in microfacies composition and fermented milk function. The lactic acid bacteria and yeast identified by kefir granules used by our team are known to have the effect of avoiding intestinal inflammation.
 
3、 New concept of kefir fermented milk in cardiovascular health care
 
      Because of the spread and application of kefir fermented milk in the past hundreds of years and the scientific research in the past hundred years, its health promotion function has been accepted by the public in succession, and it has been listed as one of the super foods for health promotion in European and American countries. Scientific teams in various countries have also focused on various studies of kefir fermented milk, hoping to reveal its biological activities through scientific methods, hoping to apply the fermented milk to more health functions such as cardiovascular health care.
3.1 effect of kefir fermented milk on blood pressure regulation
 
      The antihypertensive activity of kefir fermented milk was verified by using spontaneous hypertensive rat model. The antihypertensive activity mainly came from lactic acid bacteria or metabolites in fermented milk. Our team also showed that long-term consumption of kefir fermented milk can not only reduce the high blood pressure of spontaneous hypertensive rat (SHR), but also improve the problems of tachycardia and left ventricular hypertrophy. On the one hand, feeding kefir fermented milk can reduce the reactive oxygen species (ROS) in serum, reduce the oxidative pressure in blood vessels to avoid cardiovascular system abnormalities, such as: inflammation of blood vessels, blood pressure rise, endothelial cell damage, arterial smooth muscle fibrosis, etc. On the other hand, the metabolites in kefir fermented milk can regulate blood pressure by promoting vagal sensitivity and inhibiting vasoconstrictor converting enzyme activity. In addition, other teams also found that different lactic acid bacteria and their metabolites in kefir fermented milk also had the activity of lowering blood pressure.
 
3.2 kefir fermented milk improves cardiovascular function through autonomic nerve regulation
 
      There are many causes of hypertension in SHR rats, including autonomic nervous disorders. First of all, the activation of sympathetic nerve and the deactivation of parasympathetic nerve (vagus nerve) will lead to the rise of blood pressure. After 60 days of feeding kefir fermented milk, autonomic nerve rebalancing can be achieved, and then the high blood pressure can be reduced.
 
      In addition, cardiovascular diseases and metabolic diseases in SHR rats can also cause abnormal baroreflex. However, if kefir fermented milk is fed for 60 days, the abnormality of improving baroreflex can be detected by observing arterial blood pressure and heartbeat, mainly by adjusting the activity of sympathetic and parasympathetic nerves. However, further analysis is still needed to understand the role of living bacteria and metabolites in improving autonomic disorders and hypertension. Some evidences show that the above functions may be achieved by improving the secretion of GABA, serotonin or catecholamine in the body, but more experiments are needed to prove the above. Therefore, we conclude that the restoration of vagus function and the regulation of blood pressure may be through kefir fermented milk to improve the intestinal flora ecology of SHR rats, and then change the endocrine and brain gut axis.
 
3.3 kefir fermented milk improves endothelial cell damage
 
      Healthy endothelial cells in blood vessels are important factors to determine the balance of vasoconstriction and relaxation. In patients with cardiovascular and metabolic diseases, abnormal endothelial cell renewal will cause imbalance of vasoconstriction and relaxation regulation, and then induce arteriosclerosis and hypertension. In human body, oxidative pressure is a common factor that damages endothelial cells, because oxidative pressure can destroy the utilization of nitric oxide by endothelial cells, and then affect their functions. We hope that through the use of drugs or functional food to reduce the oxidative pressure in the blood, so as to maintain the status and function of endothelial cells. Physiologically, we can judge whether the vascular endothelium is damaged by analyzing the response of individuals to nitric oxide related mechanisms: we mainly observe whether the vascular vasodilator acetylcholine induced relaxation response is damaged, or the response to α - 1 vasoconstrictor is intensified.
 
      In SHR rats, long-term consumption of kefir fermented milk can improve the injury of vascular endothelial cells, and improve the relaxation response of aortic sinuses induced by acetylcholine. In addition, kefir fermented milk can reduce the production of free radicals such as · O2 - and onoo-h2o2 in blood, increase the utilization of no in vascular endothelial cells, and improve the damage and function of vascular endothelial cells. Because kefir fermented milk can increase the utilization rate of endothelial cells to nitric oxide and reduce the production of free radicals, it is quite suitable to be used as an antioxidant nutrition and health care supplement. It was further found in the literature that kefir fermented milk could further enhance the antioxidant activity of kefir fermented milk by inhibiting the free radicals and NADPH induced by TLR-4 (Toll like receptor-4), reducing the body's oxidative pressure.
 
      In addition to oxidative stress, our team confirmed the relationship between vascular endothelial cell damage and the generation of vascular physiological defects. It was found by SEM that kefir fermented milk could repair the vascular endothelial damage of SHR. The results showed that kefir fermented milk not only had antioxidant activity, but also had the function of attracting endothelial cells to repair endothelial cells, which contributed to its cardiovascular health care.
 
      Although the effects of oxidative stress on endothelial cell injury have been reported, the molecular mechanism of oxidative stress is still unclear. In addition to the influence of probiotics and human body, kefir fermented milk may also increase the synthesis of antioxidant enzymes or other components that can eliminate free radicals, or inhibit the production of vasoconstrictor converting enzymes through ace to avoid the promotion of oxidative pressure. The results show that kefir fermented milk can maintain or improve the function of endothelial cells through multi-faceted and multi mechanism.
3.4 anti inflammation and anti atherosclerotic function of kefir fermented milk
 
       The serious complications of atherosclerotic disease, such as stroke and myocardial infarction, are the main causes of death of patients with cardiovascular disease in the world. Therefore, the development of drugs or functional foods that can be used to prevent or improve atherosclerotic disease is an important topic in the field of cardiovascular medicine and health care. It was pointed out in the literature that the living bacteria and metabolites in kefir fermented milk have the biological activities of reducing blood cholesterol and immune regulation, so as to avoid the occurrence and deterioration of atherosclerotic sclerosis. At present, there are two possible mechanisms of action: 1. Inhibition of mhg-coa reductase activity to inhibit cholesterol synthesis; 2. Promotion of cholangiolysis enzyme activity and elimination of cholic acid to reduce cholesterol production, but more evidence is needed to confirm this statement. In addition, in the model of high cholesterol mice, it was found that the metabolites in kefir fermented milk could promote the increase of high density lipoprotein (HDL), decrease of low density lipoprotein (LDL), inhibit inflammation and immune regulation.
 
      In the anti-inflammatory and immunomodulatory part, both cell test and animal in vivo test showed that kefir fermented milk could significantly reduce the expression of proinflammatory factors such as TNF - α and inf - γ in serum. In addition, some studies show that kefir fermented milk can activate Th2 cells to inhibit Th1 cells, and finally achieve the effect of inhibiting inflammatory response. In recent years, it has been found that the components of non living bacteria in kefir fermented milk can inhibit the deposition of lipid in vascular endothelium and arteriosclerosis without changing blood cholesterol. In conclusion, kefir fermented milk can regulate the synthesis of cholesterol in serum and inhibit the occurrence of inflammatory reaction in blood vessels, and then inhibit the occurrence and deterioration of atherosclerotic arteriosclerosis. Our team's research shows that after long-term treatment with the components of non living bacteria in kefir fermented milk, it can regulate the performance of inflammatory and anti-inflammatory cell hormones, and avoid lipid accumulation of vascular endothelium under the condition of high cholesterol. It shows that kefir fermented milk not only has the effect of anti cholesterol, but also can regulate and inhibit the inflammatory reaction through the immune system, so as to avoid atherosclerosis.
 
3.5 kefir fermented milk in the regulation of metabolic syndrome function insulin resistance
 
      The prevalence rate of metabolic syndrome population in the world has a considerable gap, about 10% ~ 84%, due to genetic, regional, dietary habits and other factors. Metabolic syndrome is caused by a series of physiological and biochemical disorders, including insulin resistance, hyperlipidemia, hypertension, obesity, liver fibrosis, endothelial cell dysfunction, chronic inflammation, etc. Metabolic syndrome can increase the risk of cardiovascular disease by 2 times, type 2 diabetes by 5 times and death by 1.5 times. Among them, obesity and insulin resistance are the main risk factors for type 2 diabetes and cardiovascular disease.
 
      By changing the current diet habits and medical control, we have achieved little in control and improvement, which shows that we still need more effective methods and products. In the past decade, scientists have found that healthy gut flora can help control obesity and insulin resistance. For example, transplanting gut flora collected from healthy subjects into the gut of insulin resistant patients can effectively improve their metabolism, showing that the adjustment of gut flora can improve the symptoms of metabolic syndrome. The physiological explanation of the above situation is mainly due to the fact that intestinal flora can regulate the metabolism of carbohydrate and lipid, the metabolism of glycogen and the storage of fat in human intestine, so as to improve the function of obesity. For example, using fatty liver animal model analysis, some scientists have confirmed that kefir fermented milk can reduce lipid synthesis and increase fatty acid oxidation, thus improving common liver fatty lesions in metabolic syndrome patients. Therefore, kefir is a kind of fermented milk which can significantly improve the symptoms of metabolic syndrome.
 
      In addition, kefir fermented milk may activate PI 3-kinase and downstream insulin signaling pathway through its metabolites to increase the utilization of glucose by muscle cells. At present, different teams have verified the application of kefir fermented milk to reduce the blood glucose of type I diabetes and type II diabetes animal models by animal experiments, and also found that kefir fermented milk can improve the balance of pro-inflammatory / anti-inflammatory factors, showing the application potential of kefir fermented milk in improving the symptoms of metabolic syndrome.
 
4、 Conclusion:
 
      At present, studies have shown that there is a very close relationship between intestinal flora and cardiovascular disease. Probiotics in kefir fermented milk and other metabolic derivatives (such as peptides, organic acids, polysaccharides, etc.) can regulate body functions such as central nervous system, immune system, metabolic pathway, and circulatory system, so as to avoid atherosclerotic sclerosis and cardiovascular disease. In this review, we analyzed how kefir fermented milk can affect cardiovascular and metabolic diseases through intestinal flora or metabolites regulation, including autonomic nervous system regulation, cardiovascular function improvement, blood lipid reduction, insulin resistance improvement, and found out the possible mechanism. Kefir fermented milk has a long history of eating, and more and more scientific literature has revealed its activity of prevention of atherosclerotic sclerosis and improvement of metabolic syndrome, which is quite suitable for wide application. In the future, we still need more research to reveal the potential of application hidden in kefir fermented milk, in order to provide the best health promoting products for Chinese people.

參考文獻:
1 Murray CJ, Lopez AD: Measuring the global burden of disease. N Engl J Med 2013;369:448-457.
2 Mensah GA, Wei GS, Sorlie PD, Fine LJ, Rosenberg Y, Kaufmann PG, Mussolino ME, Hsu LL, Addou E, Engelgau MM, Gordon D: Decline in cardiovascular mortality: Possible causes and implications. Circ Res 2017;120:366-380.
3 WHO: World Health Organization. World health statistics, Geneva. 2009 http://www.who.int. Accessed 05/19/2017.
4 Claesson MJ, Clooney AG, O’Toole PW: A clinician’s guide to microbiome analysis. Nat Rev Gastroenterol
Hepatol 2017;14:585-595.
5 Powell N, Walker MM, Talley NJ: The mucosal immune system: master regulator of bidirectional gut-brain
communications. Nat Rev Gastroenterol Hepatol 2017;14:143-159.
6 Odenwald MA, Turner JR: The intestinal epithelial barrier: a therapeutic target? Nat Rev Gastroenterol
Hepatol 2017;14:9-21.
7 Vitetta L, Saltzman ET, Nikov T, Ibrahim I, Hall S: Modulating the Gut Micro-environment in the treatment of intestinal parasites. J Clin Med 2016;5:11.
8 Rosa D, Dias M, Grze?kowiak ?, Reis S, Conceição L, Peluzio MD: Milk kefir: nutritional, microbiological and health benefits. Nutr Res Rev 2017;30:82-96.
9 McFarland LV: From yaks to yogurt: the history, development, and current use of probiotics. Clin Infect Dis 2015;60:S85-90.
10 Noble EE, Hsu TM, Kanoski SE: Gut to Brain Dysbiosis: Mechanisms lnking western diet consumption, the
microbiome, and cognitive impairment. Front Behav Neurosci 2017;11:9.
11 Prado MR, Blandón LM, Vandenberghe LP, Rodrigues C, Castro GR, Thomaz-Soccol V, Soccol CR: Milk kefir: composition, microbial cultures, biological activities, and related products. Front Microbiol 2015;6:1177.
12 Magalhães KT, de Melo Pereira GV, Campos CR, Dragone G, Schwan RF: Brazilian kefir: structure, microbial communities and chemical composition. Braz J Microbiol 2011;42:693-702.
13 Leite AM, Leite DC, Del Aguila EM, Alvares TS, Peixoto RS, Miguel MA, Silva JT, Paschoalin VM: Microbiological and chemical characteristics of Brazilian kefir during fermentation and storage processes. J Dairy Sci 2013;96:4149-4159.
14 Shen J, Obin MS, Zhao L: The gut microbiota, obesity and insulin resistance. Mol Aspects Med 2013;34:39-58.
15 Lau K, Srivatsav V, Rizwan A, Nashed A, Liu R, Shen R, Akhtar M: Bridging the gap between gut microbial dysbiosis and cardiovascular diseases. Nutrients 2017;9: pii: E859.
16 Zhu Z, Xiong S, Liu D: The Gastrointestinal tract: an Initial Organ of Metabolic Hypertension? Cell Physiol Biochem 2016;38:1681-1694.
17 Pereira TM, Pimenta FS, Porto ML, Baldo MP, Campagnaro BP, Gava AL, Meyrelles SS, Vasquez EC: Coadjuvants in the diabetic complications: Nutraceuticals and drugs with pleiotropic effects. Int J Mol Sci 2016;17: pii: E1273.
18 Laparra JM, Sanz Y: Interactions of gut microbiota with functional food components and nutraceuticals. Pharmacol Res 2010;61:219-225.
19 Campos-Toimil M, Orallo F: Effects of (-)-epigallocatechin-3-gallate in Ca2+-permeable non-selective cation channels and voltage-operated Ca2+ channels in vascular smooth muscle cells. Life Sci 2007;80:2147-2153.
20 Campos-Toimil M, Elíes J, Álvarez E, Verde I, Orallo F: Effects of trans- and cis-resveratrol on Ca2+ handling in A7r5 vascular myocytes. Eur J Pharmacol 2007;577:91-99.
21 Elíes J, Cuíñas A, MacDougall DA, Leiro J, Campos-Toimil M: Trans-resveratrol down-regulates caveolin-1, up-regulates endothelial NO synthase and reduces their interaction in vascular smooth muscle and endothelial cells. Food Biosci 2013;1:31-38.
22 Segade M, Bermejo R, Silva A, Paiva-Martins F, Gil-Longo J, Campos-Toimil M: Involvement of endothelium in the vasorelaxant effects of 3, 4-DHPEA-EA and 3, 4-DHPEA-EDA, two major functional bioactives in olive oil. J Func Foods 2016;23:637–646.
23 Carding S, Verbeke K, Vipond DT, Corfe BM, Owen LJ: Dysbiosis of the gut microbiota in disease. Microb Ecol Health Dis 2015;26:26191.
24 Han C, Ding Z, Shi H, Qian W, Hou X, Lin R: The Role of probiotics in lipopolysaccharide-induced autophagy in intestinal epithelial cells. Cell Physiol Biochem 2016;38:2464-2478.
25 Parvez S, Malik KA, Ah Kang S, Kim HY: Probiotics and their fermented food products are beneficial for health. J Appl Microbiol 2006;100:1171-1185.
26 de Barros JM, Lechner T, Charalampopoulos D, Khutoryanskiy VV, Edwards AD: Enteric coated spheres produced by extrusion/spheronization provide effective gastric protection and efficient release of live therapeutic bacteria. Int J Pharm 2015;493:483-494
27 Newman D: Screening and identification of novel biologically active natural compounds. F1000Res 2017;6:783.
28 Toscano M, De Grandi R, Pastorelli L, Vecchi M, Drago L: A consumer’s guide for probiotics: 10 golden rules for a correct use. Dig Liver Dis 2017;49:1177-1184 pii: S1590-8658(17)30986-6.
29 Tune JD, Goodwill AG, Sassoon DJ, Mather KJ: Cardiovascular consequences of metabolic syndrome. Transl Res 2017;183:57-70.
30 Dogi CA, Perdigón G: Importance of the host specificity in the selection of probiotic bacteria. J Dairy Res 2006;73:357-366.
31 Galdeano CM, de Leblanc Ade M, Carmuega E, Weill R, Perdigón G: Mechanisms involved in the immunostimulation by probiotic fermented milk. J Dairy Res 2009;76:446-454.
32 Gibson GR, Roberfroid MB: Dietary modulation of the human colonic microbiota: introducing the concept of prebiotics. J Nutr 1995;125:1401-1412.
33 Markowiak P, ?li?ewska K: Effects of probiotics, prebiotics, and synbiotics on Human Health. Nutrients 2017;9: pii: E1021.
34 Ozen M, Dinleyici EC: The history of probiotics: the untold story. Benef Microbes 2015;6:159-165.
35 Tamime A: Fermented milks: a historical food with modern applications - a review. Eur J Clin Nutr 2002;56:S2-S15.
36 Friques AG, Arpini CM, Kalil IC, Gava AL, Leal MA, Porto ML, Nogueira BV, Dias AT, Andrade TU, Pereira TM, Meyrelles SS, Campagnaro BP, Vasquez EC: Chronic administration of the probiotic kefir improves the endothelial function in spontaneously hypertensive rats. J Transl Med 2015;13:390.
37 Ton AMM, Arpini CM, Campagnaro BP, Pereira TMC, Vasquez EC: Alzheimer’s disease: A brief update on the influence of gut microbiota and the impact of functional food. J Food Microbiol 2018;2:11-15.
38 Carasi P, Racedo SM, Jacquot C, Romanin DE, Serradell MA, Urdaci MC: Impact of kefir derived Lactobacillus kefiri on the mucosal immune response and gut microbiota. J Immunol Res 2015; 2015:361604.
39 Bolla PA, Abraham AG, Pérez PF, de Los Angeles Serradell M: Kefir-isolated bacteria and yeasts inhibit Shigella flexneri invasion and modulate pro-inflammatory response on intestinal epithelial cells. Benef Microbes 2016;7:103-110.
40 Kumar S, Bansal A, Chakrabarti A, Singhi S: Evaluation of efficacy of probiotics in prevention of candida colonization in a PICU-a randomized controlled trial. Crit Care Med 2013;41:565-572.
41 Singh RK, Chang HW, Yan D, Lee KM, Ucmak D, Wong K, Abrouk M, Farahnik B,Nakamura M, Zhu TH, Bhutani T, Liao W: Influence of diet on the gut microbiome and implications for human health. J Transl Med 2017;15:73.
42 Kanbak G, Uzuner K, Ku?at Ol K, O?lakç? A, Kartkaya K, ?entürk H: Effect of kefir and low-dose aspirin on arterial blood pressure measurements and renal apoptosis in unhypertensive rats with 4 weeks salt diet. Clin Exp Hypertens 2014;36:1-8.
43 Maeda H, Zhu X, Suzuki S, Suzuki K, Kitamura S: Structural characterization and biological activities of an exopolysaccharide kefiran produced by Lactobacillus kefiranofaciens WT-2B(T). J Agric Food Chem 2004;52:5533-5538.
44 Yap WB, Ahmad FM, Lim YC, Zainalabidin S: Lactobacillus casei strain C1 attenuates vascular changes in spontaneously hypertensive rats. Korean J Physiol Pharmacol 2016;20:621-628.
45 Friques AG, Klippel BF, Leal MA, Kalil I, Andrade TU, Pereira TMC, Meyrelles SS, Vasquez EC: The probiotic kefir improves cardiovascular function in spontaneously hypertensive rats. The FASEB J 2015;29 Suppl 647.3.
46 Klippel BF, Duemke LB, Leal MA, Friques AG, Dantas EM, Dalvi RF, Gava AL, Pereira TM, Andrade TU, Meyrelles SS, Campagnaro BP, Vasquez EC: Effects of kefir on the cardiac autonomic tones and baroreflex sensitivity in spontaneously hypertensive rats. Front Physiol 2016;2016;7:211.
47 Gómez-Guzmán M, Toral M, Romero M, Jiménez R, Galindo P, Sánchez M, Zarzuelo MJ, Olivares M, Gálvez J, Duarte J: Antihypertensive effects of probiotics Lactobacillus strains in spontaneously hypertensive rats. Mol Nutr Food Res 2015;59:2326-2336.
48 Chen Y, Liu W, Xue J, Yang J, Chen X, Shao Y, Kwok LY, Bilige M, Mang L, Zhang H: Angiotensin-converting enzyme inhibitory activity of Lactobacillus helveticus strains from traditional fermented dairy foods and antihypertensive effect of fermented milk of strain H9 J Dairy Sci 2014;97:6680-6692.
49 Liu CF, Tung YT, Wu CL, Lee BH, Hsu WH, Pan TM: Antihypertensive effects of Lactobacillus-fermented milk orally administered to spontaneously hypertensive rats. J Agric Food Chem 2011;59:4537-4543.
50 Rodríguez-Figueroa JC, González-Córdova AF, Astiazaran-García H, Vallejo-Cordoba B: Hypotensive and heart rate-lowering effects in rats receiving milk fermented by specific Lactococcus lactis strains. Br J Nutr 2013;109:827-833.
51 Nod K, Inoue T: Postprandial hyperglycemia as an etiological factor in vascular failure. Cardiovasc Diabetol 2009;8:23.
52 Nogueira BV, Peotta VA, Meyrelles SS, Vasquez EC: Evaluation of aortic remodeling in apolipoprotein E-deficient mice and renovascular hypertensive mice. Arch Med Res 2007;38:816-821.
53 He F, Zuo L: Redox Roles of Reactive Oxygen Species in Cardiovascular Diseases. Int J Mol Sci 2015;16:27770-27780.
54 Brasil GA, Silva-Cutini MA, Moraes FSA, Pereira TMC, Vasquez EC, Lenz D, Bissoli NS, Endringer DC, Lima EM, Biancardi VC, Maia JF, Andrade TU: The benefits of soluble non-bacterial fraction of kefir on blood pressure and cardiac hypertrophy in hypertensive rats are mediated by an increase in baroreflex sensitivity and decrease in angiotensin-converting enzyme activity. Nutrition 2018;51-52:66-72.
55 Jiang Y, Yang W, Du F, Yao Y, Shi C, Wang C: Effective treatment of hypertension by recombinant Lactobacillus plantarum expressing angiotensin converting enzyme inhibitory peptide. Microb Cell Fact 2015;14:202.
56 Campagnaro BP, Gava AL, Meyrelles SS, Vasquez EC: Cardiac-autonomic imbalance and baroreflex dysfunction in the renovascular Angiotensin-dependent hypertensive mouse. Int J Hypertens 2012:968123.
57 Campagnaro BP, Tonini CL, Nogueira BV, Casarini DE, Vasquez EC, Meyrelles SS: DNA damage and augmented oxidative stress in bone marrow mononuclear cells from Angiotensin-dependent hypertensive mice. Int J Hypertens 2013; 2013:305202.
58 Dias da Silva VJ, Viana Públio CC, de Melo Alves R, Fazan R Jr, Ruscone TG, Porta A, Malliani A, Salgado HC, Montano N: Intravenous amiodarone modifies autonomic balance and increases baroreflex sensitivity in conscious rats. Auton Neurosci 2002;95:88-96.
59 Vasquez EC, Peotta VA, Meyrelles SS: Cardiovascular autonomic imbalance and baroreflex dysfunction in the apolipoprotein E-deficient mouse. Cell Physiol Biochem 2012;29:635-646.
60 de Moura-Tonello SC, Porta A, Marchi A, de Almeida Fagundes A, Francisco C de O, Rehder-Santos P, MilanMattos JC, Simões RP, Gois Mde O, Catai AM: Cardiovascular variability analysis and baroreflex estimation in patients with type 2 diabetes in absence of any manifest neuropathy. PLoS One 2016;11(3):e0148903.
61 Su DF, Miao CY: Reduction of blood pressure variability: a new strategy for the treatment of hypertension. Trends Pharmacol Sci 2005;26:388-390.
62 Bravo JA, Forsythe P, Chew MV, Escaravage E, Savignac HM, Dinan TG, Bienenstock J, Cryan JF: Ingestion of Lactobacillus strain regulates emotional behavior and central GABA receptor expression in a mouse via the vagus nerve.Proc Natl Acad Sci USA 2011;108:16050-16055.
63 Bonaz B, Bazin T, Pellissier S: The Vagus nerve at the Interface of the microbiota-gut-brain axis. Front Neurosci 2018;12:49.
64 Leal MAS, Dias AT, Porto ML, Brun BF, Gava AL, Meyrelles SS, Gil-Longo J,Campos-Toimil M, Pereira TMC, Vasquez EC: Sildenafil (Viagra®) prevents cox-1/TXA2 pathway-mediated vascular hypercontractility in ApoE-/- mice. Cell Physiol Biochem 2017;44:1796-1809.
65 Rashid SK, Idris-Khodja N, Auger C, Alhosin M, Boehm N, Oswald-Mammosser M, Schini-Kerth VB: Probiotics (VSL#3) prevent endothelial dysfunction in rats with portal hypertension: Role of the angiotensin system. PLoS One 2014;9(5):e97458
66 Gómez-Guzmán M, Toral M, Romero M, Jiménez R, Galindo P, Sánchez M, Zarzuelo MJ, Olivares M, Gálvez J, Duarte J: Antihypertensive effects of probiotics Lactobacillus strains in spontaneously hypertensive rats. Mol Nutr Food Res 2015;59:2326-2336.
67 Toral M, Gómez-Guzmán M, Jiménez R, Romero M, Sánchez M, Utrilla MP, Garrido-Mesa N, RodríguezCabezas ME, Olivares M, Gálvez J, Duarte J: The probiotic Lactobacillus coryniformis CECT5711 reduces the vascular pro-oxidant and pro-inflammatory status in obese mice. Clin Sci (Lond) 2014;127:33-45.
68 Fahning BM, Dias AT, Oliveira JP, Gava AL, Porto ML, Gomes IB, Nogueira BV, Campagnaro BP, Pereira TM, Vasquez EC, Balarini CM, Meyrelles SS: Sildenafil improves vascular endothelial structure and function in renovascular hypertension. Curr Pharm Biotechnol 2015;16:823-831.
69 Tang W, Li C, He Z, Pan F, Pan S, Wang Y: Probiotic properties and cellular antioxidant activity of Lactobacillus plantarum MA2 isolated from Tibetan kefir grains. Probiotics Antimicrob Proteins 2017 DOI:10.1007/s12602-017-9349-8.
70 Cavalcanti Neto MP, Aquino JS, Romão da Silva LF, de Oliveira Silva R, Guimarães KSL, de Oliveira Y, de Souza EL, Magnani M, Vidal H, de Brito Alves JL: Gut microbiota and probiotics intervention: A potential therapeutic target for management of cardiometabolic disorders and chronic kidney disease? Pharmacol Res 2018;pii: S1043-6618(17)31050-2.
71 Calderini E, Celebioglu HU, Villarroel J, Jacobsen S, Svensson B, Pessione E: Comparative proteomics of oxidative stress response of Lactobacillus acidophilus NCFM reveals effects on DNA repair and cysteine de novo synthesis. Proteomics 2017;17: doi: 10.1002.
72 St-Onge MP, Farnworth ER, Savard T, Chabot D, Mafu A, Jones PJ: Kefir consumption does not alter plasma lipid levels or cholesterol fractional synthesis rates relative to milk in hyperlipidemic men: a randomized controlled trial [ISRCTN10820810]. BMC Complement Altern Med 2002;2:1.
73 St-Onge MP, Farnworth ER, Jones PJ: Consumption of fermented and nonfermented dairy products: effects on cholesterol concentrations and metabolism. Am J Clin Nutr 2000;71:674-1681.
74 Ooi LG, Liong MT: Cholesterol-lowering effects of probiotics and prebiotics: a review of in vivo and in vitrofindings. Int J Mol Sci 2010;11:2499-522.
75 Ichim TE, Patel AN, Shafer KA: Experimental support for the effects of a probiotic/digestive enzyme supplement on serum cholesterol concentrations and the intestinal microbiome. J Transl Med2016;14(1):184.
76 Huang Y, Wu F, Wang X, Sui Y, Yang L, Wang J: Characterization of Lactobacillus plantarum Lp27 isolated from Tibetan kefir grains: a potential probiotic bacterium with cholesterol-lowering effects. J Dairy Sci 2013;96:2816-2825.
77 Taverniti V, Minuzzo M, Arioli S, Junttila I, Hämäläinen S, Turpeinen H, Mora D, Karp M, Pesu M, Guglielmetti S: In vitro functional and immunomodulatory properties of the Lactobacillus helveticus MIMLh5-Streptococcus salivarius ST3 association that are relevant to the development of a pharyngeal probiotic product. Appl Environ Microbiol 2012;78:4209-4216.
78 Vinderola CG, Medici M, Perdigón G: Relationship between interaction sites in the gut, hydrophobicity, mucosal immunomodulating capacities and cell wall protein profiles in indigenous and exogenous bacteria. J Appl Microbiol 2004;96:230-243.
79 Vinderola CG, Duarte J, Thangavel D, Perdigón G, Farnworth E, Matar C: Immunomodulating capacity of kefir. J Dairy Res 2005;72:195-202.
80 Xiao JZ, Kondo S, Takahashi N, Miyaji K, Oshida K, Hiramatsu A, Iwatsuki K, Kokubo S, Hosono A: Effects of milk products fermented by Bifidobacterium longum on blood lipids in rats and healthy adult male volunteers. J Dairy Sci 2003;86:2452-2461.
81 Vuji?i? IF, Vuli? M, Könyves T: Assimilation of cholesterol in milk by kefir cultures. Biotechnol Lett 1992;14:847–850.
82 Hosono A, Tanako T: Binding of cholesterol with lactic acid bacterial cells. Milchwiss 1995;50:556-560.
83 Yoon YH, Cho JK, Baek YJ, Huh CS::Antimutagenic activity of Lactobacillus spp. isolated from kefir and yoghurt and non-starter strains. Korean J Animal Sci 1999;41:39-44.
84 Guo Z, Liu XM, Zhang QX, Shen Z, Tian FW, Zhang H, Sun ZH, Zhang HP, Chen W: Influence of consumption of probiotics on the plasma lipid profile: a meta-analysis of randomised controlled trials. Nutr Metab Cardiovasc Dis 2011;201;21:844-850.
85 Wang LX, Liu K, Gao DW, Hao JK: Protective effects of two Lactobacillus plantarum strains in hyperlipidemic mice. World J Gastroenterol 2013;19:3150-3156.
86 Wang Y, Xu N, Xi A, Ahmed Z, Zhang B, Bai X: Effects of Lactobacillus plantarum MA2 isolated from Tibet kefir on lipid metabolism and intestinal microflora of rats fed on high-cholesterol diet. Appl Microbiol Biotechnol 2009;84:341-347.
87 Zheng Y, Lu Y, Wang J, Yang L, Pan C, Huang Y: Probiotic properties of Lactobacillus strains isolated from Tibetan kefir grains. PLoS One 2013;8(7):e69868.
88 Liu Y, Fatheree NY, Mangalat N, Rhoads JM: Lactobacillus reuteri strains reduce incidence and severity of experimental necrotizing enterocolitis via modulation of TLR4 and NF-κB signaling in the intestine. Am J Physiol Gastrointest Liver Physiol 2012;302:G608-617.
89 Liu JR, Wang SY, Chen MJ, Chen HL, Yueh PY, Lin CW: Hypocholesterolaemic effects of milk-kefir and soyamilk-kefir in cholesterol-fed hamsters. Br J Nutr 2006;95(5):939-946 doi: 10.1079/BJN20061752.
90 Delzenne NM, Neyrinck AM, Bäckhed F, Cani PD: Targeting gut microbiota in obesity: effects of prebiotics and probiotics. Nat Rev Endocrinol 2011;7:639-646.
91 Macfarlane GT, Macfarlane S: Human colonic microbiota: ecology, physiology and metabolic potential of intestinal bacteria. Scand J Gastroenterol Suppl 1997;222:3-9.
92 Vinderola G, Perdigon G, Duarte J, Farnworth E, Matar C: Effects of the oral administration of the exopolysaccharide produced by Lactobacillus kefiranofaciens on the gut mucosal immunity. Cytokine 2006;36:254-260.
93 Carasi P, Racedo SM, Jacquot C, Romanin DE, Serradell MA, Urdaci MC: Impact of kefir derived Lactobacillus kefiri on the mucosal immune response and gut microbiota. J Immunol Res 2015;2015:361604.
94 Hadisaputro S, Djokomoeljanto RR, Judiono, Soesatyo MH: The effects of oral plain kefir supplementation on proinflammatory cytokine properties of the hyperglycemia Wistar rats induced by streptozotocin. Acta Med Indones 2012;44:100-104.
95 Bourrie BC, Willing BP, Cotter PD: The microbiota and health promoting characteristics of the fermented beverage kefir. Front Microbiol 2016;7:647.
96 Yin M, Yan X, Weng W, Yang Y, Gao R, Liu M, Pan C, Zhu Q, Li H, Wei Q, Shen T, Ma Y, Qin H: Micro integral membrane protein (MIMP), a newly discovered anti-Inflammatory protein of Lactobacillus plantarum, enhances the gut barrier and modulates microbiota and inflammatory cytokines. Cell Physiol Biochem 2018;45:474-490.
97 Santanna AF, Filete PF, Lima EM, Porto ML, Meyrelles SS, Vasquez EC, Endringer DC, Lenz D, Abdalla DS, Pereira TM, Andrade TU: Chronic administration of the soluble, nonbacterial fraction of kefir attenuates lipid deposition in LDLr(-/-) mice. Nutrition 2017;35:100-105.
98 Uchida M, Ishii I, Inoue C, Akisato Y, Watanabe K, Hosoyama S, Toida T, Ariyoshi N, Kitada M: Kefiran reduces atherosclerosis in rabbits fed a high cholesterol diet. J Atheroscler Thromb 2010;17:980-988.
99 Alberti KG, Zimmet P, Shaw J; IDF Epidemiology Task Force Consensus Group: The metabolic syndrome: a new worldwide definition. Lancet 2005;366:1059-1062.100 Galassi A, Reynolds K, He J: Metabolic syndrome and risk of cardiovascular disease: a meta-analysis. Am J Med 2006;119:812-819.101 Pucci G, Alcidi R, Tap L, Battista F, Mattace-Raso F, Schillaci G: Sex- and gender-related prevalence, cardiovascular risk and therapeutic approach in metabolic syndrome: A review of the literature. Pharmacol Res 2017;120:34-42.
102 Mottillo S, Filion KB, Genest J, Joseph L, Pilote L, Poirier P, Rinfret S, Schiffrin EL, Eisenberg MJ: The metabolic syndrome and cardiovascular risk a systematic review and meta-analysis. J Am Coll Cardiol 2010;56:1113-1132.
103 Kaur J: A comprehensive review on metabolic syndrome. Cardiol Res Pract 2014;2014:943162.
104 Ritchie SA, Connell JM: The link between abdominal obesity, metabolic syndrome and cardiovascular disease. Nutr Metab Cardiovasc Dis 2007;17:319-326.
105 Desroches S, Lamarche B: The evolving definitions and increasing prevalence of the metabolic syndrome. Appl Physiol Nutr Metab 2007;32:23-32.
106 Rosenstock J: Reflecting on type 2 diabetes prevention: more questions than answers! Diabetes Obes Metab 2007;9:S3-11.
107 Putignani L, Del Chierico F, Petrucca A, Vernocchi P, Dallapiccola B: The human gut microbiota: a dynamic interplay with the host from birth to senescence settled during childhood. Pediatr Res 2014;76:2-10.
108 Turnbaugh PJ, Ley RE, Mahowald MA, Magrini V, Mardis ER, Gordon JI: An obesity-associated gut microbiome with increased capacity for energy harvest. Nature 2006;444:1027-1031.
109 Parekh PJ, Balart LA, Johnson DA: The influence of the gut microbiome on obesity, metabolic syndrome and Gastrointestinal Disease. Clin Transl Gastroenterol 2015;6:e91.
110 Lloyd-Price J, Abu-Ali G, Huttenhower C: The healthy human microbiome. Genome Med 2016;8:51.
111 Festi D, Schiumerini R, Eusebi LH, Marasco G, Taddia M, Colecchia A: Gut microbiota and metabolic syndrome. World J Gastroenterol 2014;20:16079-16094.
112 Liou AP, Paziuk M, Luevano JM Jr, Machineni S, Turnbaugh PJ, Kaplan LM: Conserved shifts in the gut microbiota due to gastric bypass reduce host weight and adiposity. Sci Transl Med 2013;5(178):178ra41.
113 Chen HL, Tung YT, Tsai CL, Lai CW, Lai ZL, Tsai HC, Lin YL, Wang CH, Chen CM: Kefir improves fatty liver syndrome by inhibiting the lipogenesis pathway in leptin-deficient ob/ob knockout mice. Int J Obes (Lond) 2014;38:1172-1179.
114 Tung YT, Chen HL, Wu HS, Ho MH, Chong KY, Chen CM: Kefir peptides prevent hyperlipidemia and obesity in high-fat-diet-induced obese rats via lipid metabolism modulation. Mol Nutr Food Res 2018 Feb;62: doi: 10.1002.
115 Teruya K, Yamashita M, Tominaga R, Nagira T, Shim SY, Katakura Y, Tokumaru S, Tokumaru K, Barnes D, Shirahata S: Fermented milk, Kefram-Kefir enhances glucose uptake into insulin-responsive muscle cells. Cytotechnology 2002;40:107-716.
116 Rosa DD, Grze?kowiak ?M, Ferreira CL, Fonseca AC, Reis SA, Dias MM, Siqueira NP, Silva LL, Neves CA, Oliveira LL, Machado AB, Peluzio Mdo C: Kefir reduces insulin resistance and inflammatory cytokine expression in an animal model of metabolic syndrome. Food Funct 2016;7:3390-3401.
117 Punaro GR, Maciel FR, Rodrigues AM, Rogero MM, Bogsan CS, Oliveira MN, Ihara SS, Araujo SR, Sanches TR, Andrade LC, Higa EM: Kefir administration reduced progression of renal injury in STZ-diabetic rats by lowering oxidative stress. Nitric Oxide 2014;37:53-60.
118 Ostadrahimi A, Taghizadeh A, Mobasseri M, Farrin N, Payahoo L, Beyramalipoor Gheshlaghi Z, Vahedjabbari M: Effect of probiotic fermented milk (kefir) on glycemic control and lipid profile in type 2 diabetic patients: a randomized double-blind placebo-controlled clinical trial. Iran J Public Health 2015;44:228-237.
119 Nogueira BV, Palomino Z, Porto ML, Balarini CM, Pereira TM, Baldo MP, Casarini DE, Meyrelles SS, Vasquez EC: Granulocyte colony stimulating factor prevents kidney infarction and attenuates renovascular hypertension. Cell Physiol Biochem 2012;29:143-152.
120 Falcinelli S, Rodiles A, Unniappan S, Picchietti S, Gioacchini G, Merrifield DL, Carnevali O: Probiotic treatment reduces appetite and glucose level in the zebrafish model. Sci Rep 2016;6:18061.
 
 
 

Recommended information

13146463569
亚洲欧美日韩中文字幕在线_亚洲成a人片在线观看中文_亚洲欧美日韩中文在线制服_久久91亚洲精品中文字幕
<samp id="ceuam"><tbody id="ceuam"></tbody></samp>
  • <samp id="ceuam"></samp>
  • <ul id="ceuam"></ul>
    <ul id="ceuam"></ul>
    成人综合网网址| 在线视频不卡国产| 国产一区二区精品在线| 亚洲欧美日韩在线综合 | 国产精品自产拍高潮在线观看| 国产一区二区不卡视频在线观看| 91精品国产一区| 国产99视频精品免费视频36| 久久久久久午夜| 91精品国产一区二区三区动漫 | 久久国产精品免费一区| 欧美性受xxx| 久久精品成人一区二区三区蜜臀| 日本欧美精品在线| 欧美精品一区二区三区久久| 国产精品久久久久久久久久久新郎 | 国产精品久久久久久一区二区| 精选一区二区三区四区五区| 日韩av123| 日本一区二区三区www| 国产乱肥老妇国产一区二| 视频一区二区在线观看| 亚洲自拍中文字幕| 欧美综合第一页| 日本一区二区三区免费观看| 国产欧亚日韩视频| 高清一区二区三区四区五区| 99中文视频在线| 97久久精品视频| 欧美欧美一区二区| 亚洲曰本av电影| 欧美在线视频一区| 亚洲图片都市激情| 粉嫩av免费一区二区三区| 91爱爱小视频k| 亚洲精品一区二区三区av| 91麻豆蜜桃| 青草热久免费精品视频| 一区二区在线观| 精品国产一二| 91视频免费网站| 欧洲成人免费视频| 久久久久久这里只有精品| 欧美日韩国产高清视频| 不卡视频一区| 成人福利网站在线观看11| 久久免费国产精品1| 欧美大陆一区二区| 波多野结衣久草一区| 国产成人福利网站| 国内精品久久久久久久久| 日本中文不卡| 九九九九精品| 国产免费一区二区| 99理论电影网| 成人一区二区电影| 国产成人综合精品| 欧美极品少妇全裸体| 日本一区高清不卡| 久久久久综合一区二区三区| aa日韩免费精品视频一| 91精品国产综合久久久久久蜜臀 | 欧美高清一级大片| 日本精品一区二区三区视频| 国内精品视频在线播放| 7777奇米亚洲综合久久| 91精品久久久久久久| 日韩暖暖在线视频| 热99精品里视频精品| 久久久久久久久久婷婷| 宅男在线精品国产免费观看| 台湾成人av| 日韩欧美精品在线不卡| 日韩.欧美.亚洲| 欧美日韩在线观看一区| 久久久久久久久一区二区| 国产亚洲欧美一区二区| 国产日韩二区| 精品综合久久久| 快播亚洲色图| 欧美日韩精品一区| 日韩欧美亚洲在线| 日韩一区不卡| 亚洲一区二三| 久久人人爽人人爽人人片av高清| 97在线视频观看| 欧美综合一区第一页| 热re99久久精品国产66热| 欧洲精品毛片网站| 国产精品电影在线观看| 国产精品嫩草影院一区二区| 国内外成人免费激情在线视频网站| 国产精品偷伦视频免费观看国产| 在线一区高清| 96精品视频在线| 777国产偷窥盗摄精品视频| 668精品在线视频| 国产91对白在线播放| 日本最新高清不卡中文字幕| 国产精品美女午夜av| 国产日韩欧美在线看| 亚洲mm色国产网站| 国产乱码精品一区二区三区卡| 国产高清精品一区二区三区| 久久草.com| 亚欧精品在线| 国产综合在线视频| 国产成人久久久精品一区| 国产精品亚洲综合天堂夜夜| 亚洲xxxx3d| 久久久久无码国产精品一区| 少妇精品久久久久久久久久| 亚洲综合网中心| 91大神福利视频在线| 国产精品男人爽免费视频1| 91社区国产高清| 美女被啪啪一区二区| 影音先锋欧美在线| 国产精品高潮呻吟久久av黑人| 成人黄色中文字幕| 久久久久久久久久久久久久一区| 一区二区三区久久网| 91精品国产精品| 成人精品在线视频| 精品伦精品一区二区三区视频| 视频三区二区一区| 日本精品va在线观看| 亚洲在线视频福利| 欧美一区二区在线| 2020久久国产精品| 91gao视频| 亚洲国产精品久久久久久女王| 国内外成人免费激情在线视频网站| 国产精品啪视频| 国产亚洲二区| 久久人人爽人人爽人人片av高请| 国产欧美一区二区| 欧美精品在线一区| 欧美综合激情网| 成人欧美一区二区三区黑人免费| 天天久久人人| 国产精品久久久久久亚洲影视| 国产亚洲精品久久飘花| 久久久久久久久国产精品| 国产精品久久综合av爱欲tv| 久久久综合亚洲91久久98| 午夜免费日韩视频| 99久热re在线精品视频| 欧美国产乱视频| 国产在线观看一区二区三区| 秋霞在线观看一区二区三区| 日本视频久久久| 精品国产一区二区三区麻豆免费观看完整版 | 日韩av一级大片| 欧美又大又硬又粗bbbbb| 99热在线国产| 国模视频一区二区| 粉嫩精品一区二区三区在线观看 | 国产精品三区四区| 国内免费精品永久在线视频| 超碰97网站| 韩国19禁主播vip福利视频| 亚洲在线免费观看| 欧美黑人一区二区三区 | 9a蜜桃久久久久久免费| 欧美高清自拍一区| 成人女人免费毛片| 日本欧美在线视频| 亚洲高清视频一区二区| 91九色国产在线| 欧美激情综合亚洲一二区| 999国内精品视频在线| 在线综合视频网站| 懂色中文一区二区三区在线视频| 国产做受高潮69| 狠狠色综合欧美激情| 26uuu亚洲国产精品| 国产一区再线| 国产成人精品av在线| 视频一区视频二区视频| 亚洲一区二区久久久久久久| 久久久亚洲国产天美传媒修理工| 国产精品香蕉视屏| 国产精品第10页| 欧美大片免费看| 国内精品视频免费| 91精品久久久久久久久青青| 欧美精品www在线观看| 精品在线一区| 成人黄色在线免费| 欧美亚洲视频在线看网址| 免费看国产精品一二区视频| 91精品视频在线看| 欧美一级免费视频| 水蜜桃一区二区三区| 岛国视频一区免费观看| 国产精品久久中文| 亚洲91精品在线观看| 欧美日韩亚洲在线| 国产精品果冻传媒潘| 国产成人午夜视频网址| 久久久久久久久久久网站| 日本一区二区精品| 国产伦精品一区二区三区高清版 | 国产欧美亚洲日本| 成人免费福利在线| 日韩美女在线观看一区| 在线观看日韩片| 欧美极品一区二区| 国产精品免费一区二区三区四区| 国产精品久久视频| 91精品国产高清自在线| 一区二区三区在线视频看| 久久久久久久久久码影片| 亚洲最大成人网色| 91精品久久久久久久| 日韩免费观看在线观看| 午夜精品久久久久久99热软件| 神马影院午夜我不卡影院| 精品一区久久久| 国产精品一码二码三码在线| 91久久精品国产91久久| 国产精品成人一区二区| 97超级碰碰碰久久久| 一区二区精品在线| 日日夜夜精品网站| 欧美日韩免费高清| 欧美日韩亚洲一区二区三区四区| 国产乱码一区| 成人欧美一区二区三区在线观看 | 新呦u视频一区二区| 久久综合给合久久狠狠色| ts人妖另类在线| 成人资源av| 9a蜜桃久久久久久免费| 91观看网站| 91久久极品少妇xxxxⅹ软件| 亚洲专区在线视频| 亚洲自拍偷拍色片视频| 91精品视频免费| 亚洲自拍偷拍福利| 福利视频一区二区三区| 99c视频在线| 国产精品久久久久久久久久久久冷 | 97国产超碰| 18成人在线| 粉嫩av四季av绯色av第一区| 91一区二区三区| 粉嫩高清一区二区三区精品视频 | 国产综合色一区二区三区| 国产福利一区二区三区在线观看| 国产精品18毛片一区二区| 国产精品视频入口| 久久综合给合久久狠狠色| 免费看成人午夜电影| 欧美日韩一区二区视频在线| 欧美污视频久久久| 在线观看欧美激情| 68精品久久久久久欧美| 国产成人久久精品| 91亚洲va在线va天堂va国| 亚洲精品日韩av| 国产一区二区在线观看免费播放| 久久免费一区| 伊人色综合影院| 欧美在线影院在线视频| 国产精品美女视频网站| 91久久久亚洲精品| 国产传媒欧美日韩| 日韩一二三区不卡在线视频| 欧美黄色片免费观看| 91国内免费在线视频| 国产成人一区二区三区| 成人写真视频福利网| 国产日本一区二区三区| 色噜噜狠狠色综合网| 国产69精品99久久久久久宅男| 欧洲日韩成人av| 成人精品一区二区三区| 黄色99视频| 亚洲三区四区| 日本精品久久久久久久| 91情侣偷在线精品国产| 精品视频一区二区| 欧美高清性猛交| 国产成人精品日本亚洲 | 91嫩草视频在线观看| 精品视频高清无人区区二区三区| 视频一区二区精品| 日本成熟性欧美| 91观看网站| 亚洲欧洲国产日韩精品| **欧美日韩vr在线| 96国产粉嫩美女| 手机看片福利永久国产日韩| 51午夜精品视频| 成人国产精品av| 欧美日韩亚洲一区二区三区在线观看| 久久久久久综合网天天| 国产日韩视频在线观看| 国产伦精品一区二区三区四区免费| 日韩在线三级| 国产精品极品在线| 九九99玖玖| 1769国产精品| 9a蜜桃久久久久久免费| 在线观看日韩羞羞视频| 91精品久久久久久久久不口人| 久久一区二区精品| 69av成年福利视频| 国产精品制服诱惑| 91精品国产自产91精品| 成人av影视在线| 色综合久久久888| 91久久久久久久久| 伊人婷婷久久| 亚洲最大av在线| 欧美激情视频在线| 99久久精品久久久久久ai换脸| 亚洲精品久久久久久一区二区| 国产精品成人aaaaa网站| 久久精品国产精品国产精品污 | 91社区国产高清| 亚洲精品日韩精品| 成人欧美一区二区三区在线湿哒哒 | 国产成人一区二区三区电影| 久久99精品久久久久久青青日本| 国产91成人video| 久久精品二区| 国产精品久久久久久久久久尿 | 国产精品久久久久久久久久久新郎| 久久久久久欧美精品色一二三四| 青青青国产精品一区二区| 国产一区二区三区四区五区加勒比 | 欧美日韩一区二区三区在线视频| 国产成人精品视| 日本一区二区视频| 91精品久久久久久久久不口人| 亚洲欧洲精品在线| 亚洲在线免费观看| 性欧美视频videos6一9| 激情视频在线观看一区二区三区| 日本亚洲欧洲色α| 亚洲欧美日韩另类精品一区二区三区 | 91精品国产成人www| 久久riav| 成人免费观看网址| 91国自产精品中文字幕亚洲| 久久久久资源| 成人免费观看网址| 91精品国产91久久久久久久久 | 日韩av电影免费观看| 成人黄色免费看| 91精品国产91久久久久久吃药| 欧美极品jizzhd欧美| 91嫩草在线视频| 51久久精品夜色国产麻豆| 先锋影音一区二区三区| 国产一区自拍视频| 91精品视频在线看| 国产97色在线| 在线观看免费91| 久久亚洲一区二区| av观看久久| 国产激情综合五月久久| 欧美极度另类性三渗透| 日本不卡二区| 成人h视频在线观看| 国产精品主播视频| 国产91ⅴ在线精品免费观看| 一区二区三区观看| 神马一区二区影院| 麻豆久久久av免费| 99久久综合狠狠综合久久止| 国产欧美精品在线| 日本中文字幕久久看| 久久久中文字幕| 亚洲 国产 日韩 综合一区| 精品中文字幕人| 国产高清在线一区| 91在线视频精品| 国产精品久久久久久网站| 欧美亚洲另类激情另类| 欧美激情精品久久久久久| 少妇精品久久久久久久久久| 国产超碰91| 国产91av在线| 国产成人成网站在线播放青青| 国产精品999999| 久久久视频免费观看| 亚洲图片欧洲图片日韩av| 免费h精品视频在线播放| 成人av免费在线看| 91免费精品国偷自产在线| 国产ts一区二区| 欧美壮男野外gaytube| 国内精品久久久久影院 日本资源| 日韩av一区二区三区在线观看| 国产高清不卡av| 91pron在线| 日本精品二区| 亚洲va国产va天堂va久久| 国产精品高潮视频| 国产成人极品视频| 欧美一区第一页| 91精品91久久久久久| 午夜精品免费视频| 91精品国产91| 性色av一区二区三区红粉影视| 欧美国产中文字幕| 国语自产偷拍精品视频偷 | 欧美日韩无遮挡| 久久99热只有频精品91密拍| 国产三级精品在线不卡| 国产欧美日韩在线播放| 国产尤物91| 久久伊人一区| 日韩中文字幕一区| 亚洲欧美日韩在线综合| 宅男一区二区三区| 性欧美xxxx视频在线观看| 海角国产乱辈乱精品视频| 91精品国产99| 国产精品1区2区在线观看| 国产91精品最新在线播放| 国产精品成人一区二区三区吃奶 | 国产专区欧美专区| 91久久精品国产91久久| 亚洲最大成人在线| 国产精品久久7| 久久久99国产精品免费| 欧美性xxxx69| 一本色道久久综合亚洲二区三区 | 国产精品美女www| 91美女片黄在线观看游戏| av成人免费观看| 精品综合久久| 亚洲精品高清国产一线久久| 亚洲一区二区自拍偷拍| 午夜免费在线观看精品视频| 国产成人a亚洲精品| 成人精品一区二区三区电影黑人| 成人午夜电影免费在线观看| 激情小说综合网| 日产中文字幕在线精品一区| 欧美激情欧美激情在线五月| 3344国产精品免费看| 国产精品美女网站| 91丝袜脚交足在线播放| 久久久久久久久久久一区 | 国内一区在线| 农村寡妇一区二区三区| 这里只有精品66| 国产精品扒开腿做爽爽爽男男 | 全球成人中文在线| 成人a视频在线观看| 国产精品日韩一区二区三区| 丝袜美腿玉足3d专区一区| 欧美一级视频一区二区| 亚洲影视中文字幕| 欧美国产一二三区| 韩剧1988免费观看全集| 91精品国产综合久久香蕉922| 国产欧美日本在线| 久久久久久一区二区三区| 国产精品久久久久久亚洲调教| 国产精品亚洲综合| 欧美精品18videos性欧美| 国产欧美精品一区二区三区-老狼| 国产一区二区在线观看免费播放| 亚洲午夜在线观看| 国产成人免费av| 国产日韩欧美一区二区三区四区| 一区不卡视频| 国产日韩专区在线| 欧美午夜欧美| 国产97在线播放| 精品91免费| 91国内免费在线视频| 999精品在线观看| 亚洲春色在线| 国产精品视频99| 欧美不卡三区| 日韩av电影手机在线| 国产精品一区二| 668精品在线视频| 国产精品大全| 91精品国产成人www| 国产精品久久久久久久天堂第1集 国产精品久久久久久久免费大片 国产精品久久久久久久久婷婷 | 欧洲s码亚洲m码精品一区| 999在线免费观看视频| 在线视频91| 亚洲a∨日韩av高清在线观看| 色综合电影网| 国产欧美一区二区白浆黑人| 日本成人黄色免费看| 日本一欧美一欧美一亚洲视频| 国产乱人伦精品一区二区| 91国产在线精品| 久久99精品久久久久久久青青日本 | 日本亚洲导航| 国产女同一区二区| 一区二区三区四区不卡| 成人免费午夜电影| 久久久久国色av免费观看性色| 亚洲影院高清在线| 午夜欧美不卡精品aaaaa| 国产在线精品日韩| 日本亚洲精品在线观看| 任我爽在线视频精品一| 国产中文字幕日韩| 久久久亚洲天堂| 久久婷婷人人澡人人喊人人爽| 国产成人极品视频| 亚洲乱码一区二区三区| 99re在线| 国产精品a久久久久久| 亚洲人成人77777线观看| 97操在线视频| 国产999视频| 亚洲精品一区二区三区av| 97久久天天综合色天天综合色hd| 国产做受高潮69| 日本视频一区在线观看| 成人精品网站在线观看| 91国产视频在线| 视频一区三区| 国外成人在线视频网站| 国产剧情日韩欧美| 91精品国产高清久久久久久| 欧美久久综合性欧美| 91亚洲精华国产精华| 7777精品久久久久久| 午夜精品短视频| 国产伦精品一区| 成人免费观看a| 欧美在线视频播放| 正在播放一区| 欧美少妇一区| 国产一区二区在线网站| 91精品久久久久久久久久久| 97视频免费看| 亚洲午夜精品福利| 免费成人在线观看av| 成人3d动漫一区二区三区91| 国产精品久久久久久一区二区| 国内精品一区二区三区四区| 色噜噜狠狠一区二区三区| 国产伦精品一区二区三毛| 成人欧美在线视频| 国产精品嫩草影院一区二区| 91av在线网站| 久久久亚洲网站| 一区二区三区四区欧美| 日本在线观看一区二区| 激情伦成人综合小说| 亚洲精品免费网站| 国产精品亚洲激情| 欧美综合在线观看| 97av视频在线| 久久免费在线观看| 欧美大片在线影院| 一本一道久久a久久综合精品| 日韩免费av一区二区三区| 欧美久久久久久久| 裸模一区二区三区免费| 国产精品免费在线| 国产99视频精品免费视频36| 亚洲va欧美va国产综合剧情| 91精品久久久久久久久不口人| 国产精品视频大全| 国产成人一区二区三区| 欧美重口另类videos人妖| 97超级碰碰人国产在线观看| 久久免费国产视频| 国外成人在线播放| 久久久久久久影院| 97精品国产97久久久久久免费| 欧美激情精品久久久久久免费印度| 这里只有精品66| 欧美激情亚洲精品| 欧美极品第一页| 久久久久久噜噜噜久久久精品| 欧美国产视频日韩| 国语自产精品视频在免费| 海角国产乱辈乱精品视频| 午夜精品久久久久久久白皮肤| 91精品国产乱码久久久久久久久 | 91入口在线观看| 亚洲伊人久久大香线蕉av| 91老司机在线| 91亚洲永久免费精品| 亚洲综合大片69999| 91精品婷婷国产综合久久蝌蚪| 91影院在线免费观看视频| 亚洲综合第一页| 国产精品午夜av在线| 精品一区二区国产| 日韩福利二区| 一本色道婷婷久久欧美|