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Double-side role of short chain fatty acids on host health via the gut-organ axes
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作者 Yanan Gao Qianqian Yao +2 位作者 Lu Meng Jiaqi Wang Nan Zheng 《Animal Nutrition》 SCIE CAS CSCD 2024年第3期322-339,共18页
Short chain fatty acids(SCFA)exist in dietary foods and are produced by the fermentation of gut microbiota,and are considered an important element for regulating host health.Through blood circulation,SCFA produced in ... Short chain fatty acids(SCFA)exist in dietary foods and are produced by the fermentation of gut microbiota,and are considered an important element for regulating host health.Through blood circulation,SCFA produced in the gut and obtained from foods have an impact on the intestinal health as well as vital organs of the host.It has been recognized that the gut is the“vital organ”in the host.As the gut microbial metabolites,SCFA could create an“axis”connecting the gut and to other organs.Therefore,the“gut-organ axes”have become a focus of research in recent years to analyze organism health.In this review,we summarized the sources,absorption properties,and the function of SCFA in both gut and other peripheral tissues(brain,kidney,liver,lung,bone and cardiovascular)in the way of“gut-organ axes”.Short chain fatty acids exert both beneficial and pathological role in gut and other organs in various ways,in which the beneficial effects are more pronounced.In addition,the beneficial effects are reflected in both preventive and therapeutic effects.More importantly,the mechanisms behinds the gut and other tissues provided insight into the function of SCFA,assisting in the development of novel preventive and therapeutic strategies for maintaining the host health. 展开更多
关键词 short chain fatty acid Intestinal barrier Gut-organ axis Host health Beneficial effect Pathological effect
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The interaction among gut microbes,the intestinal barrier and short chain fatty acids 被引量:29
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作者 Jiayu Ma Xiangshu Piao +2 位作者 Shad Mahfuz Shenfei Long Jian Wang 《Animal Nutrition》 SCIE CSCD 2022年第2期159-174,共16页
The mammalian gut is inhabited by a massive and complicated microbial community, in which the hostachieves a stable symbiotic environment through the interdependence, coordination, reciprocal constraintsand participat... The mammalian gut is inhabited by a massive and complicated microbial community, in which the hostachieves a stable symbiotic environment through the interdependence, coordination, reciprocal constraintsand participation in an immune response. The interaction between the host gut and themicrobiota is essential for maintaining and achieving the homeostasis of the organism. Consequently, guthomeostasis is pivotal in safeguarding the growth and development and potential productive performanceof the host. As metabolites of microorganisms, short chain fatty acids are not only the preferredenergy metabolic feedstock for host intestinal epithelial cells, but also exert vital effects on antioxidantsand the regulation of intestinal community homeostasis. Herein, we summarize the effects of intestinalmicroorganisms on the host gut and the mechanisms of action of short chain fatty acids on the fourintestinal barriers of the organism, which will shed light on the manipulation of the intestinal communityto achieve precise nutrition for specific individuals and provide a novel perspective for theprevention and treatment of diseases. 展开更多
关键词 short chain fatty acids Gut microbiota Intestinal barrier Intestinal epithelium cells Interaction mechanism
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Production of short chain fatty acids and vitamin B_(12) during the in-vitro digestion and fermentation of probiotic chocolate 被引量:1
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作者 Md Nur Hossain Chaminda Senaka Ranadheera +1 位作者 Zhongxiang Fang Said Ajlouni 《Food Bioscience》 SCIE 2022年第3期688-699,共12页
The prebiotic functions of chocolate to improve the function and health benefit of the chocolate when enriched with probiotics has not been fully investigated.This study investigated the role of chocolates enriched wi... The prebiotic functions of chocolate to improve the function and health benefit of the chocolate when enriched with probiotics has not been fully investigated.This study investigated the role of chocolates enriched with probiotics in the production of SCFAs and vitamin B_(12) during the in-vitro colonic fermentation.Seven probiotic bacteria were encapsulated using a mixture of cocoa powder(10%),FOS(2%)and Na-alginate(1%)before added to chocolates.The results revealed that encapsulated Lactobacillus plantarum and Bifidobacterium animalis spp.lactis BB12 produced significantly higher amounts(1876.5±105.16 and 1348.51±77.37 mmol,respectively)of acetic acid after 48h of colonic fermentation.Chocolates with encapsulated BB12,La5,Lactobacillus sanfranciscensis and Streptococcus thermophilus yielded higher amounts of propionic,isobutyric,butyric and isovaleric acid.Probiotic-chocolates with 70%cocoa produced significantly more acetic,propionic,and butyric acids than that of 45%cocoa.However,Probiotic-chocolates with 45%cocoa produced greater amounts of vitamin B_(12) than 70%cocoa.These data demonstrate that probiotic-chocolate could be a functional snack with additional health benefits. 展开更多
关键词 Chocolates Gastrointestinal digestion Colonic fermentation Gut microbiota short chain fatty acids Vitamin B_(12)
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Gut microbiota-derived short chain fatty acids are potential mediators in gut inflammation 被引量:15
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作者 Muhammad Akhtar Yan Chen +4 位作者 Ziyu Ma Xiaolong Zhang Deshi Shi Jawaria AKhan Huazhen Liu 《Animal Nutrition》 SCIE CSCD 2022年第1期350-360,共11页
Gut inflammation is a challenging concern in humans and animals,which disturbs normal growth and leads to severe bowel diseases.Short chain fatty acids(SCFA)are the gut microbiota metabolites produced from fermentatio... Gut inflammation is a challenging concern in humans and animals,which disturbs normal growth and leads to severe bowel diseases.Short chain fatty acids(SCFA)are the gut microbiota metabolites produced from fermentation of non-digestible carbohydrates,and have been reported to modulate gut inflammation.SCFA have been implicated as the potential therapeutic bioactive molecules for gut inflammatory diseases,and could be an alternative to antibiotic growth promoters(AGP).In this review,the existing knowledge about the types of SCFA,the related gut microbes producing SCFA,the roles of SCFA in maintaining gut homeostasis,and how SCFA modulate gut inflammation is summarized.The therapeutic application of SCFA in the treatment of inflammatory bowel disease(IBD)is also highlighted 展开更多
关键词 Gut microbiota short chain fatty acid Gut inflammation Gut homeostasis Inflammatory bowel disease
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Infusion of short chain fatty acids in the ileum improves the carcass traits,meat quality and lipid metabolism of growing pigs 被引量:10
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作者 Anran Jiao Hui Diao +9 位作者 Bing Yu Jun He Jie Yu Ping Zheng Yuheng Luo Junqiu Luo Quyuan Wang Huifen Wang Xiangbing Mao Daiwen Chen 《Animal Nutrition》 SCIE CSCD 2021年第1期94-100,共7页
Short chain fatty acids(SCFA)are the main products of indigestible carbohydrates undergoing bacterial fermentation in the hindgut,which are related to some physiological functions.This study was designed to investigat... Short chain fatty acids(SCFA)are the main products of indigestible carbohydrates undergoing bacterial fermentation in the hindgut,which are related to some physiological functions.This study was designed to investigate the effects of SCFA infusion by ileum on the carcass traits,meat quality and lipid meta-bolism of growing pigs.In a 28-day study,24 growing barrows fitted with a T-cannula in distal ileum were divided into 4 treatments:1)Control,2)antibiotics(AB),3)AB+300 mL of SCFA1 solution(ABS1),4)AB+300 mL of SCFA2 solution(ABS2).The concentrations of acetate,propionate and butyrate in SCFA1 solution were respectively 61.84,18.62 and 12.55 mmol/L,and in SCFA2 were respectively 40.08,15.41 and 9.78 mmol/L The results showed that the SCFA infusion increased the average daily feed intake and average daily gain of pigs(P<0.05).Meanwhile,the SCFA treatments increased longissimus dorsi area(P<0.05)and carcass weight(P=0.058),decreased the drip loss of longissimus dorsi(P=0.059),and reduced serum concentrations of triglyceride,total cholesterol and urea nitrogen(P<0.05).Besides,the SCFA administration inhibited the mRNA expressions of fatty acid synthase(FAS)and acetyl-CoA carboxylase in longissimus dorsi(P<0.05),the mRNA expression of FAS in the liver(P<0.05),and the mRNA expression of hormone-sensitive lipase in abdominal fat(P<0.05).Short chain fatty acid infusion also enhanced the mRNA expression of carnitine palmitoyltransferase-1αin the liver(P<0.05),the mRNA expressions of peroxisome proliferator activated receptor gamma and lipoprotein lipase in abdominal fat(P<0.05),and the mRNA expressions of free fatty acid receptor 2,glucose-6-phosphatase and phosphoenolpyruvate carboxykinase 1 in the colon(P<0.05).These results suggested that SCFA administration in the ileum could improve the carcass traits and meat quality of growing pigs,which was possibly due to the fact that SCFA modulated lipid metabolism. 展开更多
关键词 short chain fatty acid Carcass trait Meat quality Lipid metabolism Growing pig
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D-Psicose intake exacerbates dextran sulfate sodium-induced colitis in mice through alteration in the gut microbiota and dysfunction of mucosal barrier 被引量:1
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作者 Xuejiao Zhang Ang Li +5 位作者 Yuanyifei Wang Jin Wang Bowei Zhang Yan Zhang Jingmin Liu Shuo Wang 《Food Science and Human Wellness》 SCIE CSCD 2024年第1期173-182,共10页
D-Psicose,as a low-calorie rare sugar,has attracted a lot of attention in recent years for alternating to sucrose.The anti-obesity effect of D-psicose has been extensively confirmed in previous studies,however,the imp... D-Psicose,as a low-calorie rare sugar,has attracted a lot of attention in recent years for alternating to sucrose.The anti-obesity effect of D-psicose has been extensively confirmed in previous studies,however,the impact of D-psicose on colitis remains vague.Here,we firstly evaluated the effect of the D-psicose prophylactic intervention on dextran sulfate sodium-induced colitis in C57BL/6 mice.The pathological symptoms,inflammatory cytokines levels,gut microbiota composition,short chain fatty acids(SCFAs)production and colonic barrier integrity were comprehensively evaluated.The results confirmed that D-psicose intervention aggravated colitis,characterized by the exacerbation of colon shortening,increase of colonic inflammatory infiltration,and marked exaltation of disease activity indices and IL-6,IL-1βand TNF-αlevels.Further,the dysfunction of gut microbiota was identified in the psicose group.The abundance of pro-inflammatory bacteria Lachnospiraceae_NK4A136_group was significantly up-regulated while the abundance of probiotics Akkermansia and Lactobacillus were significantly down-regulated in the psicose group compared to the model group.Moreover,the production of SCFAs was suppressed in the psicose group,accompanied by a decrease in the level of mucin 2(Muc-2).Collectively,the underlying mechanism of the exacerbation of colitis by D-psicose intervention might be attributed to microbiota dysfunction accompanied by the reduction of SCFAs,which leads to the damage of the mucosal barrier and the intensifi cation of inflammatory invasion. 展开更多
关键词 D-Psicose COLITIS Gut microbiota short chain fatty acids Mucin 2
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Antihypertensive effects of whey protein hydrolysate involve reshaping the gut microbiome in spontaneously hypertension rats
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作者 Peipei Dou Xiaoyi Li +6 位作者 Xiaoxiao Zou Kai Wang Lei Yao Zhuo Sun Hui Hong Yongkang Luo Yuqing Tan 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第4期1974-1986,共13页
Novel angiotensin-converting enzyme(ACE)inhibitory peptides were identified from whey protein hydrolysates(WPH)in vitro in our previous study and the antihypertensive abilities of WPH in vivo were further investigated... Novel angiotensin-converting enzyme(ACE)inhibitory peptides were identified from whey protein hydrolysates(WPH)in vitro in our previous study and the antihypertensive abilities of WPH in vivo were further investigated in the current study.Results indicated that WPH significantly inhibited the development of high blood pressure and tissue injuries caused by hypertension.WPH inhibited ACE activity(20.81%,P<0.01),and reduced renin concentration(P<0.05),thereby reducing systolic blood pressure(SBP)(12.63%,P<0.05)in spontaneously hypertensive rats.The increased Akkermansia,Bacteroides,and Lactobacillus abundance promoted high short chain fatty acid content in feces after WPH intervention.These changes jointly contributed to low blood pressure.The heart weight and cardiomyocyte injuries(hypertrophy and degeneration)were alleviated by WPH.The proteomic results revealed that 19 protein expressions in the heart mainly associated with the wingless/integrated(Wnt)signaling pathway and Apelin signaling pathway were altered after WPH supplementation.Notably,WPH alleviated serum oxidative stress,indicated by the decreased malondialdehyde content(P<0.01),enhanced total antioxidant capacity(P<0.01)and superoxide dismutase activity(P<0.01).The current study suggests that WPH exhibit promising antihypertensive abilities in vivo and could be a potential alternative for antihypertensive dietary supplements. 展开更多
关键词 Whey protein hydrolysate ANTIHYPERTENSION short chain fatty acids Gut microbiome
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Lactobacillus plantarum CCFM1180 attenuates obesity induced by estrogen deficiency by activating estrogen receptor alpha in abdominal adipose tissue and regulating gut microbiota-derived metabolites
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作者 Qian Chen Chunxia Mei +5 位作者 Min Guo Botao Wang Haiqin Chen Jianxin Zhao Gang Wang Wei Chen 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期765-777,共13页
Lipid metabolism disorders commonly occur during menopause.Estrogen deficiency has been shown to lead to excessive energy intake and abnormal lipid metabolism in ovariectomized rats,resulting in obesity.Probiotics exh... Lipid metabolism disorders commonly occur during menopause.Estrogen deficiency has been shown to lead to excessive energy intake and abnormal lipid metabolism in ovariectomized rats,resulting in obesity.Probiotics exhibit anti-obesity properties,and their underlying mechanism has been widely reported.In this study,we demonstrated the metabolic benefits of Lactobacillus plantarum CCFM1180 in suppressing appetite,controlling body weight,correcting obesity-induced abnormalities,enhancing liver lipid metabolism,and protecting liver function in estrogen-deficient rats.The mechanisms associated with the anti-obesity and anti-dyslipidemia effects of CCFM1180 on estrogen-deficient rats were clarified.The results showed that CCFM1180 dramatically reduced food intake by activating the expression of estrogen receptor alpha(ERα)and increasing the level of leptin in abdominal adipose tissue.These changes,combined with the increased butyrate concentration and recovered bile acid structure,helped enhance lipid metabolism.Additionally,CCFM1180 treatment was found to be safer than exogenous estrogen supplementation.Thus,L.plantarum CCFM1180 could be considered a new therapeutic strategy for preventing and alleviating menopausal lipid abnormalities. 展开更多
关键词 Bile acid Gut microbiota MENOPAUSE OVARIECTOMY short chain fatty acid
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Processing Effect on the Physicochemical and Volatile Fatty Acid Profile of African Breadfruit (Treculia africana) Seed Oil
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作者 Titus U. Nwabueze Amarachi G. Emenonye 《Food and Nutrition Sciences》 2016年第7期627-635,共10页
African breadfruit seeds were subjected to three processing methods—parboiling, cooking and toasting, and the raw was used as control. The purpose of this research was to extract the oil from the seed and to determin... African breadfruit seeds were subjected to three processing methods—parboiling, cooking and toasting, and the raw was used as control. The purpose of this research was to extract the oil from the seed and to determine the effect of processing on the oil for physicochemical properties and volatile fatty acid profile. Physicochemical properties showed that the colour of the oil varied from golden yellow to brownish yellow with specific gravity varying between 0.802 g/cm3 and 0.813 g/cm3. Percentage yield of oil was 6.14% for raw extract, 6.62% for parboiled extract, 7.56% for toasted extract, and 5.01% for cooked extract. Acid, peroxide and saponification value for oil extracted from the raw seed varied with the processed samples value. The Volatile Fatty Acid (VFA), also known as Short Chain Fatty Acid (SCFA) found inherent in varying concentration, were formic, acetic, propionic, isobutyric, butyric, isovaleric, valeric, isocarproic, hexanoic and heptanoic acid. Overall results prove that heat results in increases in the VFA concentration of the processed oil. 展开更多
关键词 Component Formatting Style STYLING African Breadfruit Volatile fatty Acid (VFA) short chain fatty Acid (SCFA) PHYSICOCHEMICAL
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Propionate and butyrate attenuate macrophage pyroptosis and osteoclastogenesis induced by CoCrMo alloy particles
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作者 Yang-Lin Wu Chen-Hui Zhang +6 位作者 Yun Teng Ying Pan Nai-Cheng Liu Pei-Xin Liu Xu Zhu Xin-Lin Su Jun Lin 《Military Medical Research》 SCIE CAS CSCD 2023年第2期191-206,共16页
Background:Wear particles-induced osteolysis is a major long-term complication after total joint arthroplasty.Up to now,there is no effective treatment for wear particles-induced osteolysis except for the revision sur... Background:Wear particles-induced osteolysis is a major long-term complication after total joint arthroplasty.Up to now,there is no effective treatment for wear particles-induced osteolysis except for the revision surgery,which is a heavy psychological and economic burden to patients.A metabolite of gut microbiota,short chain fatty acids(SCFAs),has been reported to be beneficial for many chronic inflammatory diseases.This study aimed to investigate the therapeutic effect of SCFAs on osteolysis.Methods:A model of inflammatory osteolysis was established by applying CoCrMo alloy particles to mouse calvarium.After two weeks of intervention,the anti-inflammatory effects of SCFAs on wear particle-induced osteolysis were evaluated by micro-CT analysis and immunohistochemistry staining.In vitro study,lipopolysaccharide(LPS)primed bone marrow-derived macrophages(BMDMs)and Tohoku hospital pediatrics-1(THP-1)macrophages were stimulated with CoCrMo particles to activate inflammasome in the presence of acetate(C2),propionate(C3),and butyrate(C4).Western blotting,enzyme-linked immunosorbent assay,and immunofluorescence were used to detect the activation of NLRP3 inflammasome.The effects of SCFAs on osteoclasts were evaluate by qRT-PCR,Western blotting,immunofluorescence,and tartrate-resistant acid phosphatase(TRAP)staining.Additionally,histone deacetylase(HDAC)inhibitors,agonists of GPR41,GPR43,and GPR109A were applied to confirm the underlying mechanism of SCFAs on the inflammasome activation of macrophages and osteoclastogenesis.Results:C3 and C4 but not C2 could alleviate wear particles-induced osteolysis with fewer bone erosion pits(P<0.001),higher level of bone volume to tissue volume(BV/TV,P<0.001),bone mineral density(BMD,P<0.001),and a lower total porosity(P<0.001).C3 and C4 prevented CoCrMo alloy particles-induced ASC speck formation and nucleationinduced oligomerization,suppressing the cleavage of caspase-1(P<0.05)and IL-1β(P<0.05)stimulated by CoCrMo alloy particles.C3 and C4 also inhibited the generation of gasdermin D-N-terminal fragment(GSDMD-NT)to regulate pyroptosis.Besides,C3 and C4 have a negative impact on osteoclast differentiation(P<0.05)and its function(P<0.05),affecting the podosome arrangement and morphologically normal podosome belts formation.Conclusions:Our work showed that C3 and C4 are qualified candidates for the treatment of wear particle-induced osteolysis. 展开更多
关键词 NLRP3 inflammasome PYROPTOSIS short chain fatty acids OSTEOLYSIS OSTEOCLAST
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Effects of yeast cell wall on growth performance, immune responses and intestinal short chain fatty acid concentrations of broilers in an experimental necrotic enteritis model 被引量:9
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作者 Guang-Da Xue Shu-Biao Wu +1 位作者 Mingan Choct Robert A.Swick 《Animal Nutrition》 SCIE 2017年第4期399-405,共7页
Subclinical necrotic enteritis(NE) causes devastating economic losses in the broiler chicken industry,especially in birds raised free of in-feed antibiotics. Prebiotics are potential alternatives to in-feed antibiotic... Subclinical necrotic enteritis(NE) causes devastating economic losses in the broiler chicken industry,especially in birds raised free of in-feed antibiotics. Prebiotics are potential alternatives to in-feed antibiotics. Yeast cell wall extract(YCW) derived from Saccharomyces cerevisiae is a prebiotic with known immune modulating effects. This study examined the effects of YCW and antibiotics(AB) during subclinical NE on broiler growth performance, intestinal lesions, humoral immune response and gut microflora metabolites. The study employed a 2 × 3 factorial arrangement of treatments. Factors were:NE challenge(yes or no) and feed additive(control, AB, or YCW). Each treatment was replicated in 8 floor pens with 15 birds per pen. Challenged birds had higher feed conversion ratio(FCR) than unchallenged birds on d 35(P < 0.05). Dietary inclusion of AB decreased FCR regardless of challenge(P < 0.05) on d 24 and 35. Inclusion of YCW reduced serum interleukin-1(IL-1) concentration in NE challenged birds(P < 0.01) and increased immunoglobulin(Ig) G(P < 0.05) and Ig M(P < 0.05) levels compared to other dietary treatments regardless of challenge. Yeast cell wall extract increased formic acid concentration in cecal contents during challenge and increased butyric acid concentration in unchallenged birds on d 16.This study indicates YCW suppressed inflammatory response, promoted generation of immunoglobulin and increased short chain fatty acid production suggesting potential benefits to bird health. 展开更多
关键词 Subclinical necrotic enteritis Yeast cell wall extract Immune response short chain fatty acid BROILER
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燕麦β-葡聚糖及其寡糖对肠道菌群结构和代谢的影响 被引量:11
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作者 王如月 余讯 +3 位作者 徐静静 朱莉 詹晓北 张洪涛 《食品与发酵工业》 CAS CSCD 北大核心 2020年第11期85-91,97,共8页
燕麦β-葡聚糖(oatsβ-glucans,OGs)及其水解寡糖(oatsβ-glucan oligosaccharides,OGOs)被认为是具有潜在益生元特性的功能性物质。从燕麦麸皮中提取得到分子质量为1.34×10^5 Da的β-葡聚糖(OGs),并通过OGs酸水解得到聚合度范围为... 燕麦β-葡聚糖(oatsβ-glucans,OGs)及其水解寡糖(oatsβ-glucan oligosaccharides,OGOs)被认为是具有潜在益生元特性的功能性物质。从燕麦麸皮中提取得到分子质量为1.34×10^5 Da的β-葡聚糖(OGs),并通过OGs酸水解得到聚合度范围为3~11的β-葡寡糖(OGOs)。分别以OGs和OGOs为培养基碳源,进行健康人和2型糖尿病人来源粪便菌群的体外厌氧发酵,研究OGs和OGOs对不同来源肠道菌群结构和代谢的影响。结果显示,健康人和2型糖尿病人粪便菌群均可以较好地利用OGs和OGOs,在经过48 h发酵后利用率均可以达到93%以上。以OGs和OGOs为碳源对健康人和2型糖尿病人粪便菌群发酵48 h后,发酵液pH均显著降低,乙酸和丙酸含量均显著增加。相比于OGOs,以OGs为碳源发酵粪便菌群48 h后,粪便菌群中产丁酸菌相对总细菌的含量显著提高(P<0.05),相应地,发酵液中丁酸含量显著增加(P<0.05);与OGs相比,以OGOs为碳源则显著增加了粪便菌群中乳酸杆菌和双歧杆菌的相对含量(P<0.05),并且明显增加了发酵液中乙酸和丙酸含量。研究结果显示,OGs和OGOs对肠道菌群的组成和代谢有不同的改善作用,OGs和OGOs可能可以有针对性地改善2型糖尿病人肠道菌群的结构和相关代谢。 展开更多
关键词 Β-葡聚糖 β-葡寡糖 肠道微生物 2型糖尿病 短链脂肪酸(short chain fatty acids SCFA) 体外发酵
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Mechanistic links between gut microbial community dynamics, microbial functions and metabolic health 被引量:5
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作者 Connie WY Ha Yan Y Lam Andrew J Holmes 《World Journal of Gastroenterology》 SCIE CAS 2014年第44期16498-16517,共20页
Gut microbes comprise a high density, biologically active community that lies at the interface of an animal with its nutritional environment. Consequently their activity profoundly influences many aspects of the physi... Gut microbes comprise a high density, biologically active community that lies at the interface of an animal with its nutritional environment. Consequently their activity profoundly influences many aspects of the physiology and metabolism of the host animal. A range of microbial structural components and metabolites directly interact with host intestinal cells and tissues to influence nutrient uptake and epithelial health. Endocrine, neuronal and lymphoid cells in the gut also integrate signals from these microbial factors to influence systemic responses. Dysregulation of these host-microbe interactions is now recognised as a major risk factor in the development of metabolic dysfunction. This is a two-way process and understanding the factors that tip host-microbiome homeostasis over to dysbiosis requires greater appreciation of the host feedbacks that contribute to regulation of microbial community composition. To date, numerous studies have employed taxonomic profiling approaches to explore the links between microbial composition and host outcomes(especially obesity and its comorbidities), but inconsistent host-microbe associations have been reported. Available data indicates multiple factors have contributed to discrepancies between studies. These include the high level of functional redundancy in host-microbiome interactions combined with individual variation in microbiome composition; differences in study design, diet composition and host system between studies; and inherent limitations to the resolution of r RNA-based community profiling. Accounting for these factors allows for recognition of the common microbial and host factors driving community composition and development of dysbiosis on high fat diets. New therapeutic intervention options are now emerging. 展开更多
关键词 Microbiome DYSBIOSIS High fat diet BILE Intestinal mucosa Microbe-associated molecular patterns short chain fatty acids IMMUNOMODULATION Enteroendocrine cells
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Fructo-oligosaccharide intensifies visceral hypersensitivity and intestinal inflammation in a stress-induced irritable bowel syndrome mouse model 被引量:5
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作者 Bin-Rui Chen Li-Jun Du +5 位作者 Hui-Qin He John J Kim Yan Zhao Ya-Wen Zhang Liang Luo Ning Dai 《World Journal of Gastroenterology》 SCIE CAS 2017年第47期8321-8333,共13页
AIM To determine whether fructo-oligosaccharide(FOS) affects visceral sensitivity, inflammation, and production of intestinal short-chain fatty acids(SCFA) in an irritable bowel syndrome(IBS) mouse model.METHODS Mice ... AIM To determine whether fructo-oligosaccharide(FOS) affects visceral sensitivity, inflammation, and production of intestinal short-chain fatty acids(SCFA) in an irritable bowel syndrome(IBS) mouse model.METHODS Mice were randomly assigned to daily oral gavage of saline solution with or without FOS(8 g/kg body weight) for 14 d. Mice were further assigned to receive either daily one-hour water avoidance stress(WAS) or sham-WAS for the first 10 d. After 2 wk, visceral sensitivity was measured by abdominal withdrawal reflex in response to colorectal distension and mucosal inflammation was evaluated. Gas chromatography, real-time reverse transcription PCR, and immunohistochemistry assays were used to quantify cecal concentrations of SCFA, intestinal cytokine expression, and number of intestinal mast cells per high-power field(HPF), respectively.RESULTS Mice subjected to WAS exhibited visceral hypersensitivity and low-grade inflammation. Among mice subjected to WAS, FOS increased visceral hypersensitivity and led to higher cecal concentrations of acetic acid(2.49 ± 0.63 mmol/L vs 1.49 ± 0.72 mmol/L, P < 0.05), propionic acid(0.48 ± 0.09 mmol/L vs 0.36 ± 0.05 mmol/L, P < 0.01), butyric acid(0.28 ± 0.09 mmol/L vs 0.19 ± 0.003 mmol/L, P < 0.05), as well as total SCFA(3.62 ± 0.87 mmol/L vs 2.27 ± 0.75 mmol/L, P < 0.01) compared to saline administration. FOS also increased ileal interleukin(IL)-23 mR NA(4.71 ± 4.16 vs 1.00 ± 0.99, P < 0.05) and colonic IL-1β mR NA(2.15 ± 1.68 vs 0.88 ± 0.53, P < 0.05) expressions as well as increased mean mast cell counts in the ileum(12.3 ± 2.6 per HPF vs 8.3 ± 3.6 per HPF, P < 0.05) and colon(6.3 ± 3.2 per HPF vs 3.4 ± 1.2 per HPF, P < 0.05) compared to saline administration in mice subjected to WAS. No difference in visceral sensitivity, intestinal inflammation, or cecal SCFA levels was detected with or without FOS administration in mice subjected to sham-WAS.CONCLUSION FOS administration intensifies visceral hypersensitivity and gut inflammation in stress-induced IBS mice, but not in the control mice, and is also associated with increased intestinal SCFA production. 展开更多
关键词 FRUCTO-OLIGOSACCHARIDE STRESS Irritable bowel syndrome Visceral hypersensitivity Intestinal inflammation short chain fatty acids FODMAP
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Interactions between gut microbiota and berberine,a necessary procedure to understand the mechanisms of berberine 被引量:4
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作者 Hao Cheng Juan Liu +2 位作者 Yuzhu Tan Wuwen Feng Cheng Peng 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2022年第4期541-555,共15页
Berberine(BBR),an isoquinoline alkaloid,has been found in many plants,such as Coptis chinensis Franch and Phellodendron chinense Schneid.Although BBR has a wide spectrum of pharmacological effects,its oral bioavailabi... Berberine(BBR),an isoquinoline alkaloid,has been found in many plants,such as Coptis chinensis Franch and Phellodendron chinense Schneid.Although BBR has a wide spectrum of pharmacological effects,its oral bioavailability is extremely low.In recent years,gut microbiota has emerged as a cynosure to understand the mechanisms of action of herbal compounds.Numerous studies have demonstrated that due to its low bioavailability,BBR can interact with the gut microbiota,thereby exhibiting altered pharmacological effects.However,no systematic and comprehensive review has summarized these interactions and their corresponding influences on pharmacological effects.Here,we describe the direct interactive relationships between BBR and gut microbiota,including regulation of gut microbiota composition and metabolism by BBR and metabolization of BBR by gut microbiota.In addition,the complex interactions between gut microbiota and BBR as well as the side effects and personalized use of BBR are discussed.Furthermore,we provide our viewpoint on future research directions regarding BBR and gut microbiota.This review not only helps to explain the mechanisms underlying BBR activity but also provides support for the rational use of BBR in clinical practice. 展开更多
关键词 BERBERINE Gut microbiota Oral bioavailability Traditional Chinese medicines short chain fatty acids
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Role of metabolites derived from gut microbiota in inflammatory bowel disease 被引量:5
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作者 Lie Zheng Xin-Li Wen Sheng-Lei Duan 《World Journal of Clinical Cases》 SCIE 2022年第9期2660-2677,共18页
Over the past two decades,it is improved gut microbiota plays an important role in the health and disease pathogenesis.Metabolites,small molecules produced as intermediate or end products of microbial metabolism,is co... Over the past two decades,it is improved gut microbiota plays an important role in the health and disease pathogenesis.Metabolites,small molecules produced as intermediate or end products of microbial metabolism,is considered as one of the major interaction way for gut microbiota with the host.Bacterial metabolisms of dietary substrates,modification of host molecules or bacteria are the major source of metabolites.Signals from microbial metabolites affect immune maturation and homeostasis,host energy metabolism as well as mucosal integrity maintenance.Based on many researches,the composition and function of the microbiota can be changed,which is also seen in the metabolite profiles of patients with inflammatory bowel disease(IBD).Additionally,some specific classes of metabolites also can trigger IBD.In this paper,definition of the key classes of microbialderived metabolites which are changed in IBD,description of the pathophysiological basis of association and identification of the precision therapeutic modulation in the future are the major contents. 展开更多
关键词 Inflammatory bowel disease Microbial metabolites short chain fatty acids Bile acids TRYPTOPHAN
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Oral administration of Moringa oleifera leaf powder relieves oxidative stress,modulates mucosal immune response and cecal microbiota after exposure to heat stress in New Zealand White rabbits 被引量:2
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作者 Talat Bilal Yasoob Defu Yu +4 位作者 Abdur Rauf Khalid Zhen Zhang Xiaofeng Zhu Heba M.Saad Suqin Hang 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2021年第4期1468-1482,共15页
Background:Heat stress(HS)disrupts the gut barrier allowing the uptake of lipopolysaccharide(LPS)and leads to an inflammatory response and changes in gut microbiota composition.Moringa oleifera leaf powder(MOLP)has be... Background:Heat stress(HS)disrupts the gut barrier allowing the uptake of lipopolysaccharide(LPS)and leads to an inflammatory response and changes in gut microbiota composition.Moringa oleifera leaf powder(MOLP)has been proposed to combat HS,yet its alleviate role is currently under investigation.The current study investigated the effects of chronic HS and MOLP supplementation on changes in redox status and immune response of cecal mucosa along with alteration in cecal microbiota.Methods:A total of 21 young New Zealand White(NZW)rabbits(male)about 32 weeks old(mean body weight of 3318±171 g)reared on a commercial pelleted diet were employed;divided into three groups(n=7):control(CON,25°C),heat stress(HS,35°C for 7 h daily),and HS supplemented orally with MOLP(HSM,35°C)at 200 mg/kg body weight per day for 4 weeks.Results:The results demonstrated that MOLP supplementation increased organ index of cecal tissue compared with the HS group(P>0.05).Levels of malonaldehyde(MDA)and activity of superoxide dismutase(SOD)as well as lactate dehydrogenase(LDH)were reduced in the cecal mucosa of the HSM group compared with the HS group.MOLP downregulated the contents of cecal mucosa LPS,several inflammatory markers(TNF-α/IL-1α/IL-1β),and myeloperoxidase(MPO)in the HSM group(P<0.05).Secretory immunoglobulin A(SIgA)was increased in the HSM group compared with the HS group(P<0.05).The transcriptome of cecal mucosa showed that MOLP reduced gene expression relative to several immune factors,including IL-10,IFNG,and RLA,whereas both HS and MOLP increased the gene expression of fat digestion and absorption pathway,including APOA1,FABP1,FABP2,MTTP,andLOC100344166,compared to the CON group(P<0.001).At the phylum level,the relative abundance of Proteobacteria was increased by HS,while Actinobacteria was significantly increased by HSM compared to other groups(P<0.05).At genus level,Papillibacter was higher in abundance in HSM groups compared to CON and HS groups(P<0.05).Higher butyrate concentrations were observed in the HSM group than HS and CON groups(P<0.05).Conclusion:In conclusion,HS in growing rabbits resulted in alteration of cecal microbiota at phyla level as well as increased oxidative stress and expression of mucosal inflammatory genes.Whereas,oral MOLP supplementation elevated the relative weight of cecum,affected their immunological and cecal micro-ecosystem function by improving antioxidant status and down-regulating mucosal tissue inflammatory response. 展开更多
关键词 Cecal microbiota Heat stress Moringa oleifera leaf powder RABBITS short chain fatty acids
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Efficacy of probiotics on the modulation of gut microbiota in the treatment of diabetic nephropathy 被引量:2
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作者 Nozomi Nagase Yuka Ikeda +2 位作者 Ai Tsuji Yasuko Kitagishi Satoru Matsuda 《World Journal of Diabetes》 SCIE 2022年第3期150-160,共11页
Diabetic nephropathy(DN)is a major cause of end-stage renal disease,and therapeutic options for preventing its progression are insufficient.The number of patients with DN has been increasing in Asian countries because... Diabetic nephropathy(DN)is a major cause of end-stage renal disease,and therapeutic options for preventing its progression are insufficient.The number of patients with DN has been increasing in Asian countries because of westernization of dietary lifestyle,which may be associated with the following changes in gut microbiota.Alterations in the gut microbiota composition can lead to an imbalanced gastrointestinal environment that promotes abnormal production of metabolites and/or inflammatory status.Functional microenvironments of the gut could be changed in the different stages of DN.In particular,altered levels of short chain fatty acids,D-amino acids,and reactive oxygen species biosynthesis in the gut have been shown to be relevant to the pathogenesis of the DN.So far,evidence suggests that the gut microbiota may play a key role in determining networks in the development of DN.Interventions directing the gut microbiota deserve further investigation as a new protective therapy in DN.In this review,we discuss the potential roles of the gut microbiota and future perspectives in the protection and/or treatment of kidneys. 展开更多
关键词 Diabetic nephropathy short chain fatty acids Superoxide dismutase Reactive oxygen species D-amino acids Gut microbiota Diabetes mellitus Renal disease
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Fermented soy whey induced changes on intestinal microbiota and metabolic influence in mice 被引量:2
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作者 Wei Han Xuhui Zhuang +3 位作者 Qian Liu Bo Sun Haijiang Miao Xiaolin Zhang 《Food Science and Human Wellness》 SCIE 2022年第1期41-48,共8页
Soy whey(SW)is generated as process waste while preparing soy protein isolates(SPI),and causing severe environmental pollution.Therefore,its value-added utilization is of prime importance for transforming and upgradin... Soy whey(SW)is generated as process waste while preparing soy protein isolates(SPI),and causing severe environmental pollution.Therefore,its value-added utilization is of prime importance for transforming and upgrading traditional industry.This study aims to utilize SW as a substrate for the growth of probiotics and produce a SW based synbiotics.By a series of trials,the effect of the dietary supplementation with this fermented SW(FSW)was analyzed on ICR mice's body weight,metabolites,and intestinal microbiota in 4 weeks.The results showed that,when SW was concentrated 15 times,the count of viable Lactobacillus casei reached 3.4×10^(9) CFU/mL by liquid fermentation method,which was the highest viable cell count among all test strains.In this FSW,the protein,amino acid,total dietary fibre,soluble dietary fibre,and oligosaccharide were 2.10%,1.63%,0.52%,0.51% and 0.79%,respectively.Compared to two control group,the total yields of the short chain fatty acids(SCFAs)were significantly improved(75%-125% at average),while the SCFAs structure was also significantly changed(especially acetic acid and butyrate)in the faeces of mice fed FSW.Meanwhile,FSW dietary addition was associated with the diversity and richness of the intestinal microbiota.Obviously,with mice's body weight loss,Firmicutes/Bacteroides ratio reduced accordingly(<1.21),and the abundance of Akkermansia muciniphila was significantly increased(the maximum amount was about 0.013%).In summary,our results indicated that the dietary supplementation of FSW affected mice's intestinal microbiota and metabolism and improved their health profile. 展开更多
关键词 Soy whey MICROBIOTA short chain fatty acids Lactobacillus casei Akkermansia muciniphila
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Preparation and characterization of resistant starch type 3 from yam and its effect on the gut microbiota 被引量:1
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作者 Xue-Qian Zhang Di Liang +4 位作者 Na Liu Ou Qiao Xue-Min Zhang Wen-Yuan Gao Xia Li 《Traditional Medicine Research》 2022年第2期11-19,共9页
Background:Yam(Dioscorea opposita Thunb.)has been consumed as a food and used in traditional Chinese medicine for thousands of years.Resistant starch(RS)3 is of particular interest because it is heat-resistant,safe an... Background:Yam(Dioscorea opposita Thunb.)has been consumed as a food and used in traditional Chinese medicine for thousands of years.Resistant starch(RS)3 is of particular interest because it is heat-resistant,safe and non-toxic,and retains good nutritional benefits;it is therefore used in a wide range of traditional and emerging foods as a heat-stable prebiotic ingredient.In our previous study,we found that yam RS includes strong lipid-lowering and anti-constipation activities.Methods:Yam RS3 was prepared by autoclaving-retrogradation and pullulanase debranching to yield autoclaving-retrogradation yam RS and pullulanase debranching yam RS,respectively.First,the physicochemical properties of both RS3s were analyzed.Second,the structures of the RS3s were characterized by scanning electron microscopy,X-ray powder diffraction,and Fourier transform infrared spectroscopy.Finally,the regulatory effects of the RS3s on the gut microbiota were evaluated using an in vitro fecal fermentation model.Results:The RS content of the RS3s decreased after processing,but was higher in pullulanase debranching yam RS(35.67%)than in autoclaving-retrogradation yam RS(28.71%).Compared with native yam starch,RS3s lost their original granular shapes and instead exhibited irregularly shapes with continuous phases.The crystalline structure of the RS3s was completely altered,with pullulanase debranching yam RS exhibiting B-type patterns.Both RS3s,and especially pullulanase debranching yam RS,promoted a significant increase in short chain fatty acid content after in vitro fermentation(all P<0.05).Moreover,pullulanase debranching yam RS significantly increased the abundance of beneficial bacteria and decreased the abundance of harmful bacteria such as Escherichia and Shigella(all P<0.05).Conclusion:Our findings show that yam RS3s can regulate the composition of the gut microbiota and promote the production of short chain fatty acid,especially butyric acid.Pullulanase debranching was a more effective method for producing functional yam RS3. 展开更多
关键词 YAM resistant starch type 3 physicochemical properties short chain fatty acids gut microbiota
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