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      Obesity Regulation through Gut Microbiota Modulation and Adipose Tissue Browning

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      https://www.riss.kr/link?id=A106340303

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      국문 초록 (Abstract)

      비만은 에너지 섭취와 소비의 불균형으로 인해 유발되는 비정상적인 지방 축적으로, 근래에 다양한 만성질환을 초래하는 주요 국제 보건 문제로 부상하였다. 이러한 이유로, 비만 문제에 대한 여러 해결책들이 제시되고 있다. 에너지를 저장하며 내분비 작용을 하는 백색 지방과 달리 열을 생성하여 에너지를 발산하는 두 종류의 지방조직인 갈색 지방과 베이지색 지방이 성인에 존재하며 외부 자극에 의해 유도될 수 있다는 것이 밝혀진 이래로, 이들은 비만 치료의 유망한 표적으로서 각광받고 있다. 이러한 외부 자극 중, 인간 장관계에서 인간과 공존하는 장내 미생물총은 다양한 대사 작용에 참여하며, 이를 조절하는 것이 여러 대사 질환의 치료에 유력한 작용을 할 것으로 보인다. 따라서, 다양한 연구에서 항비만 치료가 장내 미생물 환경 전환이나 갈색 지방 조직 활성화에 미치는 영향에 초점을 맞추고 있다. 본 총설에서는 비만과 체중 증가, 대사 질환을 해소하는 것으로 알려진 자극과, 장내 미생물총의 변화나 갈색지방의 활성화를 야기하는 자극과, 이 자극들과 장내 미생물총의 조작, 지방조직의 갈색화 사이에서 알려져 있거나 있을 수 있는 상관관계를 중점적으로 다루고자 한다.
      번역하기

      비만은 에너지 섭취와 소비의 불균형으로 인해 유발되는 비정상적인 지방 축적으로, 근래에 다양한 만성질환을 초래하는 주요 국제 보건 문제로 부상하였다. 이러한 이유로, 비만 문제에 대...

      비만은 에너지 섭취와 소비의 불균형으로 인해 유발되는 비정상적인 지방 축적으로, 근래에 다양한 만성질환을 초래하는 주요 국제 보건 문제로 부상하였다. 이러한 이유로, 비만 문제에 대한 여러 해결책들이 제시되고 있다. 에너지를 저장하며 내분비 작용을 하는 백색 지방과 달리 열을 생성하여 에너지를 발산하는 두 종류의 지방조직인 갈색 지방과 베이지색 지방이 성인에 존재하며 외부 자극에 의해 유도될 수 있다는 것이 밝혀진 이래로, 이들은 비만 치료의 유망한 표적으로서 각광받고 있다. 이러한 외부 자극 중, 인간 장관계에서 인간과 공존하는 장내 미생물총은 다양한 대사 작용에 참여하며, 이를 조절하는 것이 여러 대사 질환의 치료에 유력한 작용을 할 것으로 보인다. 따라서, 다양한 연구에서 항비만 치료가 장내 미생물 환경 전환이나 갈색 지방 조직 활성화에 미치는 영향에 초점을 맞추고 있다. 본 총설에서는 비만과 체중 증가, 대사 질환을 해소하는 것으로 알려진 자극과, 장내 미생물총의 변화나 갈색지방의 활성화를 야기하는 자극과, 이 자극들과 장내 미생물총의 조작, 지방조직의 갈색화 사이에서 알려져 있거나 있을 수 있는 상관관계를 중점적으로 다루고자 한다.

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      다국어 초록 (Multilingual Abstract)

      Obesity, represented by abnormal fat accumulation due to an imbalance between energy intake and expenditure, is a major public health issue worldwide, leading to multiple noncommunicable diseases, including atherosclerosis, hypertension, type 2 diabetes, and cancer. Diverse solutions have been proposed to combat obesity. Attention has focused on two types of adipose tissues as a promising therapeutic target in obesity: traditional brown and beige or brite. Unlike energy-storing white adipose (endocrine) tissue, traditional brown adipose tissue and beige adipose tissue have energy-dissipating thermogenic properties. Both types of tissue are present in adult humans and inducible through external stimuli, such as cold exposure, β3-adrenergic receptor agonists, and phytochemicals. Among these stimuli, microbiota present in the human intestinal tract participate in multiple metabolic activities. Modulation of gut microbiota may offer a potent and possibly curative strategy against various metabolic diseases. Numerous studies have focused on the effects of established antiobesity treatments on the gut microenvironment or brown-adipose-tissue activation. In this review, we focus mainly on stimuli known to alleviate obesity, weight gain, and metabolic diseases, in addition to known and possible inter-relations between gut microbiota modulation and similar interventions and adipose tissue browning. The findings may pave the way toward new strategies against obesity.
      번역하기

      Obesity, represented by abnormal fat accumulation due to an imbalance between energy intake and expenditure, is a major public health issue worldwide, leading to multiple noncommunicable diseases, including atherosclerosis, hypertension, type 2 diabet...

      Obesity, represented by abnormal fat accumulation due to an imbalance between energy intake and expenditure, is a major public health issue worldwide, leading to multiple noncommunicable diseases, including atherosclerosis, hypertension, type 2 diabetes, and cancer. Diverse solutions have been proposed to combat obesity. Attention has focused on two types of adipose tissues as a promising therapeutic target in obesity: traditional brown and beige or brite. Unlike energy-storing white adipose (endocrine) tissue, traditional brown adipose tissue and beige adipose tissue have energy-dissipating thermogenic properties. Both types of tissue are present in adult humans and inducible through external stimuli, such as cold exposure, β3-adrenergic receptor agonists, and phytochemicals. Among these stimuli, microbiota present in the human intestinal tract participate in multiple metabolic activities. Modulation of gut microbiota may offer a potent and possibly curative strategy against various metabolic diseases. Numerous studies have focused on the effects of established antiobesity treatments on the gut microenvironment or brown-adipose-tissue activation. In this review, we focus mainly on stimuli known to alleviate obesity, weight gain, and metabolic diseases, in addition to known and possible inter-relations between gut microbiota modulation and similar interventions and adipose tissue browning. The findings may pave the way toward new strategies against obesity.

      더보기

      목차 (Table of Contents)

      • Introduction
      • Conclusion
      • References
      • 초록
      • Introduction
      • Conclusion
      • References
      • 초록
      더보기

      참고문헌 (Reference)

      1 Genta, S., "Yacon syrup : Beneficial effects on obesity and insulin resistance in humans" 28 : 182-187, 2009

      2 Cao, L., "White to brown fat phenotypic switch induced by genetic and environmental activation of a hypothalamic-adipocyte axis" 14 : 324-338, 2011

      3 Panteliou, E., "What is the role of bariatric surgery in the management of obesity?" 20 : 97-102, 2017

      4 Parnell, J. A., "Weight loss during oligofructose supplementation is associated with decreased ghrelin and increased peptide yy in overweight and obese adults" 89 : 1751-1759, 2009

      5 Skulachev, V. P, "Uncoupling : New approaches to an old problem of bioenergetics" 1363 : 100-124, 1998

      6 Anhê, F. F., "Treatment with camu camu(myrciaria dubia)prevents obesity by altering the gut microbiota and increasing energy expenditure in diet-induced obese mice" 68 : 453-464, 2019

      7 Weiner, J., "Thyroid hormones and browning of adipose tissue" 458 : 156-159, 2017

      8 Alberdi, G., "Thermogenesis is involved in the body-fat lowering effects of resveratrol in rats" 141 : 1530-1535, 2013

      9 den Besten, G., "The role of shortchain fatty acids in the interplay between diet, gut microbiota, and host energy metabolism" 54 : 2325-2340, 2013

      10 Cerdo, T., "The role of probiotics and prebiotics in the prevention and treatment of obesity" 11 : 635-, 2019

      1 Genta, S., "Yacon syrup : Beneficial effects on obesity and insulin resistance in humans" 28 : 182-187, 2009

      2 Cao, L., "White to brown fat phenotypic switch induced by genetic and environmental activation of a hypothalamic-adipocyte axis" 14 : 324-338, 2011

      3 Panteliou, E., "What is the role of bariatric surgery in the management of obesity?" 20 : 97-102, 2017

      4 Parnell, J. A., "Weight loss during oligofructose supplementation is associated with decreased ghrelin and increased peptide yy in overweight and obese adults" 89 : 1751-1759, 2009

      5 Skulachev, V. P, "Uncoupling : New approaches to an old problem of bioenergetics" 1363 : 100-124, 1998

      6 Anhê, F. F., "Treatment with camu camu(myrciaria dubia)prevents obesity by altering the gut microbiota and increasing energy expenditure in diet-induced obese mice" 68 : 453-464, 2019

      7 Weiner, J., "Thyroid hormones and browning of adipose tissue" 458 : 156-159, 2017

      8 Alberdi, G., "Thermogenesis is involved in the body-fat lowering effects of resveratrol in rats" 141 : 1530-1535, 2013

      9 den Besten, G., "The role of shortchain fatty acids in the interplay between diet, gut microbiota, and host energy metabolism" 54 : 2325-2340, 2013

      10 Cerdo, T., "The role of probiotics and prebiotics in the prevention and treatment of obesity" 11 : 635-, 2019

      11 Wang, Z. B., "The potential role of probiotics in controlling overweight/obesity and associated metabolic parameters in adults : A systematic review and meta-analysis" 2019 : 3862971-, 2019

      12 Leber, B., "The influence of probiotic supplementation on gut permeability in patients with metabolic syndrome : An open label, randomized pilot study" 66 : 1110-1115, 2012

      13 Luoto, R., "The impact of perinatal probiotic intervention on the development of overweight and obesity: Follow-up study from birth to 10 years" 34 : 1531-1537, 2010

      14 Mohammadi-Sartang, M., "The effect of daily fortified yogurt consumption on weight loss in adults with metabolic syndrome : A 10-week randomized controlled trial" 28 : 565-574, 2018

      15 Heaton, J. M, "The distribution of brown adipose tissue in the human" 112 : 35-39, 1972

      16 Ikeda, K., "The common and distinct features of brown and beige adipocytes" 29 : 191-200, 2018

      17 Nedergaard, J., "The browning of white adipose tissue : Some burning issues" 20 : 396-407, 2014

      18 Gomes, A. C., "The additional effects of a probiotic mix on abdominal adiposity and antioxidant status : A double-blind, randomized trial" 25 : 30-38, 2017

      19 Jung, S., "Supplementation with two probiotic strains, lactobacillus curvatus hy7601 and lactobacillus plantarum ky1032, reduced body adiposity and lp-pla2 activity in overweight subjects" 19 : 744-752, 2015

      20 Park, D. Y., "Supplementation of lactobacillus curvatus hy7601and lactobacillus plantarum ky1032 in diet-induced obese mice is associated with gut microbial changes and reduction in obesity" 8 : e59470-, 2013

      21 Murakami, Y., "Supplemental epilactose prevents metabolic disorders through uncoupling protein-1induction in the skeletal muscle of mice fed high-fat diets" 114 : 1774-1783, 2015

      22 Mischke, M., "Specific synbiotics in early life protect against dietinduced obesity in adult mice" 20 : 1408-1418, 2018

      23 Respondek, F., "Short-chain fructo-oligosaccharides modulate intestinal microbiota and metabolic parameters of humanized gnotobiotic diet induced obesity mice" 8 : e71026-, 2013

      24 Weitkunat, K., "Short-chain fatty acids and inulin, but not guar gum, prevent diet-induced obesity and insulin resistance through differential mechanisms in mice" 7 : 6109-, 2017

      25 Cummings, J. H, "Short chain fatty acids in the human colon" 22 : 763-779, 1981

      26 Choque Delgado, G. T., "Role of prebiotics in regulation of microbiota and prevention of obesity" 113 : 183-188, 2018

      27 Everard, A., "Responses of gut microbiota and glucose and lipid metabolism to prebiotics in genetic obese and diet-induced leptin-resistant mice" 60 : 2775-2786, 2011

      28 Reynes, B., "Regulation of adaptive thermogenesis and browning by prebiotics and postbiotics" 9 : 1908-, 2018

      29 Kadooka, Y., "Regulation of abdominal adiposity by probiotics(lactobacillus gasseri sbt2055)in adults with obese tendencies in a randomized controlled trial" 64 : 636-643, 2010

      30 Alisi, A., "Randomised clinical trial : The beneficial effects of vsl#3 in obese children with non-alcoholic steatohepatitis" 39 : 1276-1285, 2014

      31 Serrano, A., "Programming of the beige phenotype in white adipose tissue of adult mice by mild resveratrol and nicotinamide riboside supplementations in early postnatal life" 62 : 1800463-, 2018

      32 Gobel, R. J., "Probiotics to adolescents with obesity : Effects on inflammation and metabolic syndrome" 55 : 673-678, 2012

      33 Lindsay, K. L., "Probiotics in obese pregnancy do not reduce maternal fasting glucose : A double-blind, placebo-controlled, randomized trial(probiotics in pregnancy study)" 99 : 1432-1439, 2014

      34 Woodard, G. A., "Probiotics improve outcomes after roux-en-y gastric bypass surgery : A prospective randomized trial" 13 : 1198-1204, 2009

      35 Kong, C., "Probiotics improve gut microbiota dysbiosis in obese mice fed a high-fat or high-sucrose diet" 60 : 175-184, 2018

      36 Stenman, L. K., "Probiotic with or without fiber controls body fat mass, associated with serum zonulin, in overweight and obese adults-randomized controlled trial" 13 : 190-200, 2016

      37 Karbaschian, Z., "Probiotic supplementation in morbid obese patients undergoing one anastomosis gastric bypass-mini gastric bypass(oagb-mgb)surgery : A randomized, double-blind, placebo-controlled, clinical trial" 28 : 2874-2885, 2018

      38 Osterberg, K. L., "Probiotic supplementation attenuates increases in body mass and fat mass during high-fat diet in healthy young adults" 23 : 2364-2370, 2015

      39 Nicolucci, A. C., "Prebiotics reduce body fat and alter intestinal microbiota in children who are overweight or with obesity" 153 : 711-722, 2017

      40 Hume, M. P., "Prebiotic supplementation improves appetite control in children with overweight and obesity : A randomized controlled trial" 105 : 790-799, 2017

      41 Pyra, K. A., "Prebiotic fiber increases hepatic acetyl coa carboxylase phosphorylation and suppresses glucose-dependent insulinotropic polypeptide secretion more effectively when used with metformin in obese rats" 142 : 213-220, 2012

      42 Azhar, Y., "Phytochemicals as novel agents for the induction of browning in white adipose tissue" 13 : 89-, 2016

      43 Apovian, C. M., "Pharmacological management of obesity : An endocrine society clinical practice guideline" 100 : 342-362, 2015

      44 Kahan, S, "Overweight and obesity management strategies" 22 : s186-s196, 2016

      45 Minami, J., "Oral administration of bifidobacterium breve b-3 modifies metabolic functions in adults with obese tendencies in a randomised controlled trial" 4 : e17-, 2015

      46 Cani, P. D., "Oligofructose promotes satiety in healthy human : A pilot study" 60 : 567-572, 2006

      47 Verbrugghe, A., "Oligofructose and inulin modulate glucose and amino acid metabolism through propionate production in normal-weight and obese cats" 102 : 694-702, 2009

      48 Djuric, Z, "Obesity-associated cancer risk : The role of intestinal microbiota in the etiology of the host proinflammatory state" 179 : 155-167, 2017

      49 World Health Organization, "Obesity and overweight"

      50 World Health Organization, "Noncommunicable diseases country profiles 2018"

      51 Tseng, Y. H., "New role of bone morphogenetic protein 7 in brown adipogenesis and energy expenditure" 454 : 1000-1004, 2008

      52 Clarke, G., "Minireview : Gut microbiota : The neglected endocrine organ" 28 : 1221-1238, 2014

      53 Lucas, C., "Microbiota, inflammation and colorectal cancer" 18 : 1310-, 2017

      54 Dardmeh, F., "Lactobacillus rhamnosus pb01(dsm 14870)supplementation affects markers of sperm kinematic parameters in a diet-induced obesity mice model" 12 : e0185964-, 2017

      55 Fak, F., "Lactobacillus reuteri prevents diet-induced obesity, but not atherosclerosis, in a strain dependent fashion in apoe-/-mice" 7 : e46837-, 2012

      56 Park, J. E., "Lactobacillus plantarum lg42 isolated from gajami sik-hae decreases body and fat pad weights in diet-induced obese mice" 116 : 145-156, 2014

      57 Li, X., "Lactobacillus plantarum and lactobacillus fermentum alone or in combination regulate intestinal flora composition and systemic immunity to alleviate obesity syndrome in high-fat diet rat" 53 : 137-146, 2018

      58 김주희, "Lactobacillus gasseri BNR17 Supplementation Reduces the Visceral Fat Accumulation and Waist Circumference in Obese Adults: A Randomized, Double-Blind, Placebo-Controlled Trial" 한국식품영양과학회 21 (21): 454-461, 2018

      59 Omar, J. M., "Lactobacillus fermentum and lactobacillus amylovorus as probiotics alter body adiposity and gut mi croflora in healthy persons" 5 : 116-123, 2013

      60 Fathi, Y., "Kefir drink leads to a similar weight loss, compared with milk, in a dairy-rich non-energy-restricted diet in overweight or obese premenopausal women : A randomized controlled trial" 55 : 295-304, 2016

      61 Russo, F., "Inulinenriched pasta improves intestinal permeability and modifies the circulating levels of zonulin and glucagon-like peptide 2 in healthy young volunteers" 32 : 940-946, 2012

      62 Reimer, R. A., "Inulin-type fructans and whey protein both modulate appetite but only fructans alter gut microbiota in adults with overweight/obesity : A randomized controlled trial" 61 : 1700484-, 2017

      63 Dehghan, P., "Inulin controls inflammation and metabolic endotoxemia in women with type 2 diabetes mellitus : A randomized-controlled clinical trial" 65 : 117-123, 2014

      64 Chung, H. J., "Intestinal removal of free fatty acids from hosts by lactobacilli for the treatment of obesity" 6 : 64-76, 2016

      65 Staley, C., "Interaction of gut microbiota with bile acid metabolism and its influence on disease states" 101 : 47-64, 2017

      66 Fontane, L., "Influence of the microbiota and probiotics in obesity" 30 : 271-279, 2018

      67 Sharafedtinov, K. K., "Hypocaloric diet supplemented with probiotic cheese improves body mass index and blood pressure indices of obese hypertensive patients-a randomized double-blind placebo-controlled pilot study" 12 : 138-, 2013

      68 He, X., "Gut microbiota modulation attenuated the hypolipidemic effect of simvastatin in high-fat/cholesterol-diet fed mice" 16 : 1900-1910, 2017

      69 Cani, P. D., "Gut microbiota fermentation of prebiotics increases satietogenic and incretin gut peptide production with consequences for appetite sensation and glucose response after a meal" 90 : 1236-1243, 2009

      70 Brooks, A. W., "Gut microbiota diversity across ethnicities in the united states" 16 : e2006842-, 2018

      71 Xue, B., "Genetic variability affects the development of brown adipocytes in white fat but not in interscapular brown fat" 48 : 41-51, 2007

      72 Fabbiano, S., "Functional gut microbiota remodeling contributes to the caloric restriction-induced metabolic improvements" 28 : 907-921, 2018

      73 Virtanen, K. A., "Functional brown adipose tissue in healthy adults" 360 : 1518-1525, 2009

      74 Li, S., "Fucosylated chondroitin sulfate from isostichopus badionotus alleviates metabolic syndromes and gut microbiota dysbiosis induced by high-fat and high-fructose diet" 124 : 377-388, 2019

      75 Lu, H. Y., "Fecal fermentation products of common bean-derived fiber inhibit c/ebpalpha and ppargamma expression and lipid accumulation but stimulate ppardelta and ucp2 expression in the adipogenesis of 3t3-l1 cells" 60 : 9-15, 2018

      76 Allen, J. M., "Exercise alters gut microbiota composition and function in lean and obese humans" 50 : 747-757, 2018

      77 Kaddurah-Daouk, R., "Enteric microbiome metabolites correlate with response to simvastatin treatment" 6 : e25482-, 2011

      78 Hill, J. O., "Energy balance and obesity" 126 : 126-132, 2012

      79 Kim, M., "Effects of weight loss using supplementation with lactobacillus strains on body fat and medium-chain acylcarnitines in overweight individuals" 8 : 250-261, 2017

      80 Edrisi, F., "Effects of supplementation with rice husk powder and rice bran on inflammatory factors in overweight and obese adults following an energy-restricted diet : A randomized controlled trial" 57 : 833-843, 2018

      81 Halkjaer, S. I., "Effects of probiotics(vivomixx®)in obese pregnant women and their newborn : Study protocol for a randomized controlled trial" 17 : 491-, 2016

      82 Famouri, F., "Effects of probiotics on nonalcoholic fatty liver disease in obese children and adolescents" 64 : 413-417, 2017

      83 Saez-Lara, M. J., "Effects of probiotics and synbiotics on obesity, insulin resistance syndrome, type 2diabetes and non-alcoholic fatty liver disease : A review of human clinical trials" 17 : 928-, 2016

      84 Zarrati, M., "Effects of probiotic yogurt on fat distribution and gene expression of proinflammatory factors in peripheral blood mononuclear cells in overweight and obese people with or without weight-loss diet" 33 : 417-425, 2014

      85 Verhoef, S. P., "Effects of oligofructose on appetite profile, glucagon-like peptide 1 and peptide yy3-36 concentrations and energy intake" 106 : 1757-1762, 2011

      86 Vajro, P., "Effects of lactobacillus rhamnosus strain gg in pediatric obesity-related liver disease" 52 : 740-743, 2011

      87 Yin, Y. N., "Effects of four bifidobacteria on obesity in high-fat diet induced rats" 16 : 3394-3401, 2010

      88 Dewal, R. S., "Effects of exercise on brown and beige adipocytes" 1864 : 71-78, 2019

      89 Anna Pedret, "Effects of daily consumption of the probiotic Bifidobacterium animalis subsp. lactis CECT 8145 on anthropometric adiposity biomarkers in abdominally obese subjects: a randomized controlled trial" Springer Science and Business Media LLC 43 (43): 1863-1868, 2019

      90 Minami, J., "Effects of bifidobacterium breve b-3 on body fat reductions in pre-obese adults : A randomized, double-blind, placebo-controlled trial" 37 : 67-75, 2018

      91 Sanchez, M., "Effects of a diet-based weight-reducing program with probiotic supplementation on satiety efficiency, eating behaviour traits, and psychosocial behaviours in obese individuals" 9 : 284-, 2017

      92 Mykhal'chyshyn, H., "Effect of probiotics on proinflammatory cytokines level in patients with type 2 diabetes and nonalcoholic fatty liver disease" 2 : 56-62, 2013

      93 Rajkumar, H., "Effect of probiotic(vsl# 3)and omega-3 on lipid profile, insulin sensitivity, inflammatory markers, and gut colonization in overweight adults : A randomized, controlled trial" 2014 : 348959-, 2014

      94 Mahadzir, M. D. A., "Effect of probiotic microbial cell preparation(mcp)on fasting blood glucose, body weight, waist circumference, and faecal short chain fatty acids among overweight malaysian adults : A pilot randomised controlled trial of 4 weeks" 23 : 329-341, 2017

      95 Parnell, J. A., "Effect of prebiotic fibre supplementation on hepatic gene expression and serum lipids : A dose–response study in jcr : La-cp rats" 103 : 1577-1584, 2010

      96 Larsen, N., "Effect of lactobacillus salivarius ls-33 on fecal microbiota in obese adolescents" 32 : 935-940, 2013

      97 Aller, R., "Effect of a probiotic on liver aminotransferases in nonalcoholic fatty liver disease patients : A double blind randomized clinical trial" 15 : 1090-1095, 2011

      98 정승필, "Effect of Lactobacillus gasseri BNR17 on Overweight and Obese Adults: A Randomized, Double-Blind Clinical Trial" 대한가정의학회 34 (34): 80-89, 2013

      99 Agerholm-Larsen, L., "Effect of 8 week intake of probiotic milk products on risk factors for cardiovascular diseases" 54 : 288-297, 2000

      100 Szulińska, M., "Dose-dependent effects of multispecies probiotic supplementation on the lipopolysaccharide(lps)level and cardiometabolic profile in obese postmenopausal women : A 12-week randomized clinical trial" 10 : 773-, 2018

      101 Bahler, L., "Differences in sympathetic nervous stimulation of brown adipose tissue between the young and old, and the lean and obese" 57 : 372-377, 2016

      102 Nihei, N., "Dietary α-cyclodextrin modifies gut microbiota and reduces fat accumulation in high-fat-diet-fed obese mice" 44 : 336-347, 2018

      103 Silvester, A. J., "Dietary polyphenols and their roles in fat browning" 64 : 1-12, 2019

      104 Brahe, L. K., "Dietary modulation of the gut microbiota–a randomised controlled trial in obese postmenopausal women" 114 : 406-417, 2015

      105 You, Y., "Cyanidin-3-glucoside increases whole body energy metabolism by upregulating brown adipose tissue mitochondrial function" 61 : 1700261-, 2017

      106 You, Y., "Cyanidin-3-glucoside attenuates high-fat and high-fructose diet-induced obesity by promoting the thermogenic capacity of brown adipose tissue" 41 : 62-71, 2018

      107 An, Y., "Cordycepin reduces weight through regulating gut microbiota in high-fat diet-induced obese rats" 17 : 276-, 2018

      108 Madjd, A., "Comparison of the effect of daily consumption of probiotic compared with low-fat conventional yogurt on weight loss in healthy obese women following an energy-restricted diet:A randomized controlled trial" 103 : 323-329, 2015

      109 Stojanovic, O., "Common traits between the beige fat-inducing stimuli" 55 : 67-73, 2018

      110 Liao, A. H., "Combining ultrasound and lactobacilli treatment for high-fat-diet-induced obesity in mice" 101 : 703-712, 2017

      111 Bomhof, M. R., "Combined effects of oligofructose and bifidobacterium animalis on gut microbiota and glycemia in obese rats" 22 : 763-771, 2014

      112 Mosqueda-Solís, A., "Combination of capsaicin and hesperidin reduces the effectiveness of each compound to decrease the adipocyte size and to induce browning features in adipose tissue of western diet fed rats" 66 : 9679-9689, 2018

      113 van Marken Lichtenbelt, W. D., "Cold-activated brown adipose tissue in healthy men" 360 : 1500-1508, 2009

      114 De Lorenzo, A., "Can psychobiotics intake modulate psychological profile and body composition of women affected by normal weight obese syndrome and obesity? A double blind randomized clinical trial" 15 : 135-, 2017

      115 Fabbiano, S., "Caloric restriction leads to browning of white adipose tissue through type 2 immune signaling" 24 : 434-446, 2016

      116 Wang, E. A., "Bone morphogenetic protein-2 causes commitment and differentiation in c3h10t1/2 and 3t3 cells" 9 : 57-71, 1993

      117 Zietak, M., "Bile acids induce uncoupling protein 1-dependent thermogenesis and stimulate energy expenditure at thermoneutrality in mice" 310 : E346-354, 2016

      118 Sanchis-Chordà, J., "Bifidobacterium pseudocatenulatum cect 7765 supplementation improves inflammatory status in insulin-resistant obese children" 1-12, 2018

      119 Baskaran Thyagarajan, "Beiging of white adipose tissue as a therapeutic strategy for weight loss in humans" Walter de Gruyter GmbH 31 (31): 2017

      120 Macfarlane, G. T., "Bacteria, colonic fermentation, and gastrointestinal health" 95 : 50-60, 2012

      121 Zhuang, P., "Arachidonic acid sex-dependently affects obesity through linking gut microbiota-driven inflammation to hypothalamus-adiposeliver axis" 1863 : 2715-2726, 2017

      122 Whelan, K., "Appetite during consumption of enteral formula as a sole source of nutrition : The effect of supplementing pea-fibre and fructo-oligosaccharides" 96 : 350-356, 2006

      123 Kondo, S., "Antiobesity effects of bifidobacterium breve strain b-3 supplementation in a mouse model with high-fat diet-induced obesity" 74 : 1656-1661, 2010

      124 Higashikawa, F., "Antiobesity effect of pediococcus pentosaceus lp28 on overweight subjects : A randomized, double-blind, placebo-controlled clinical trial" 70 : 582-587, 2016

      125 Chen, L. H., "Antiobesity effect of lactobacillus reuteri 263 associated with energy metabolism remodeling of white adipose tissue in high-energy-diet-fed rats" 54 : 87-94, 2018

      126 An, H. M., "Antiobesity and lipid-lowering effects of bifidobacterium spp, In high fat diet-induced obese rats" 10 : 116-, 2011

      127 Miyoshi, M., "Anti-obesity effect of lactobacillus gasseri sbt2055 accompanied by inhibition of pro-inflammatory gene expression in the visceral adipose tissue in diet-induced obese mice" 53 : 599-606, 2014

      128 Shin, J. H., "Amelioration of obesity-related characteristics by a probiotic formulation in a high-fat diet-induced obese rat model" 57 : 2081-2090, 2018

      129 Zietak, M., "Altered microbiota contributes to reduced diet-induced obesity upon cold exposure" 23 : 1216-1223, 2016

      130 Kershaw, E. E., "Adipose tissue as an endocrine organ" 89 : 2548-2556, 2004

      131 Cypess, A. M., "Activation of human brown adipose tissue by a beta3-adrenergic receptor agonist" 21 : 33-38, 2015

      132 Ohyama, K., "A synergistic antiobesity effect by a combination of capsinoids and cold temperature through promoting beige adipocyte biogenesis" 65 : 1410-1423, 2016

      133 de Carvalho Marchesin, J., "A soy-based probiotic drink modulates the microbiota and reduces body weight gain in diet-induced obese mice" 48 : 302-313, 2018

      134 Sivamaruthi, B. S., "A review on role of microbiome in obesity and antiobesity properties of probiotic supplements" 2019 : 3291367-, 2019

      135 Neyrinck, A. M., "A polyphenolic extract from green tea leaves activates fat browning in high-fat-diet-induced obese mice" 49 : 15-21, 2017

      136 Askari, H., "A glance at the therapeutic potential of irisin against diseases involving inflammation, oxidative stress, and apoptosis : An introductory review" 129 : 44-55, 2018

      137 Arias, N., "A combination of resveratrol and quercetin induces browning in white adipose tissue of rats fed an obesogenic diet" 25 : 111-121, 2017

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-08-03 학술지명변경 외국어명 : Korean Journal of Life Science -> Journal of Life Science KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.37 0.37 0.42
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.43 0.43 0.774 0.09
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