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Blautia producta displays potential probiotic properties against dextran sulfate sodium-induced colitis in mice 被引量:3
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作者 Bingyong Mao Weiling Guo +4 位作者 Shumao Cui Qiuxiang Zhang jianxin zhao Xin Tang Hao Zhang 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期709-720,共12页
Blautia has attracted attention because of its potential efficacy in ameliorating host energy metabolism and inflammation.This study aims to investigate the influences of Blautia producta D4 on colitis induced by dext... Blautia has attracted attention because of its potential efficacy in ameliorating host energy metabolism and inflammation.This study aims to investigate the influences of Blautia producta D4 on colitis induced by dextran sulfate sodium(DSS)and to reveal the underlying mechanisms.Results showed that B.producta D4 intervention significantly relieved body weight loss,and suppressed the elevation of pro-inflammatory cytokines(including interleukin-6(IL-6),tumor necrosis factor-α(TNF-α),and interleukin-1β(IL-1β))and excessive oxidative stress(myeloperoxidease(MPO)activity,superoxide dismutase(SOD)activity,glutathione peroxidase(GSH-Px)activity,and malondialdehyde(MDA)level)in colitis mice.Moreover,the concentrations of tight junction proteins(occludin,claudin-1,and ZO-1)related to the intestinal barrier were obviously elevated,and colitis-related TLR4/NF-κB pathway activation was remarkably inhibited after B.producta D4 intervention.The intestinal microbial disorder was evidently ameliorated by increasing the relative abundance of Clostridium sensu stricto 1,Bifidobacterium,GCA-900066225,Enterorhabdus,and reducing the relative abundance of Lachnospiraceae NK4A136 group.In conclusion,oral administration of B.producta D4 could ameliorate DSS-induced colitis by suppressing inflammatory responses,maintaining the intestinal barrier,inhibiting TLR4/NF-κB pathway,and regulating intestinal microbiota balance.These results are conducive to accelerate the development of B.producta D4 as a functional probiotic for colitis. 展开更多
关键词 Blautia producta D4 COLITIS Intestinal mechanical barrier TLR4/NF-κB pathway Intestinal microbiot
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Amelioration of dextran sodium sulphate-induced colitis in mice by treatment with Lactobacillus rhamnosus and Lactobacillus reuteri:intraspecific and interspecific patterns
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作者 Chunxiu Lin Yuxing Zheng +5 位作者 Bo Zhang Guopeng Lin Kexin Shang jianxin zhao Gang Wang Wei Chen 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第5期2799-2812,共14页
Lactobacillus rhamnosus(Rh)and Lactobacillus reuteri(Re)are well-known probiotic species in inflammatory bowel disease(IBD)research.The variations between these species’efficacy against colitis,and their model of act... Lactobacillus rhamnosus(Rh)and Lactobacillus reuteri(Re)are well-known probiotic species in inflammatory bowel disease(IBD)research.The variations between these species’efficacy against colitis,and their model of action in this regard,are intriguing and enable treatment to be individually tailored to patients.In this study,four strains each of Rh and Re were isolated from fecal samples and their draft genomes were sequenced.The anti-colitis activities of both strains involved various aspects of intestinal immune,physical,chemical,and biological barrier function.Strikingly,the tested strains exhibited considerable interspecies and intraspecies specificity in colitis amelioration.Rh strains significantly outperformed Re strains in terms of short-chain fatty acid synthesis.Nevertheless,Re strains were more effective than Rh strains in inhibiting production of inflammatory factors;promoting production of intestinal mucus,antimicrobial peptides,and tight junction proteins;and supporting the stem cell compartment.This accounts for the anti-colitis outcomes of Re strains being superior to those of Rh strains.In addition,the effective Rh and Re strains were found to express high concentrations of specific carbohydrate metabolism-and prophage-related genes,respectively.Taken together,the results of this study could assist researchers in developing effective therapies for IBD. 展开更多
关键词 Inflammatory bowel disease Anti-colitis Lactobacillus rhamnosus Lactobacillus reuteri Intestinal barrier function Short-chain fatty acids
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Probiotics administration alleviates cognitive impairment and circadian rhythm disturbance induced by sleep deprivation
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作者 Peijun Tian Yunfei Hou +6 位作者 Zheng Wang Jiaona Jiang Xin Qian Zhihao Qu jianxin zhao Gang Wang Wei Chen 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第4期1951-1961,共11页
Gut microbiome is indispensable for maintaining normal brain function.Specifically,gut microbiota plays a causal role in sleep deprivation(SD)-induced cognitive impairment.In this study,neurobehavioral effects of the ... Gut microbiome is indispensable for maintaining normal brain function.Specifically,gut microbiota plays a causal role in sleep deprivation(SD)-induced cognitive impairment.In this study,neurobehavioral effects of the Bifidobacterium breve strain(CCFM1025)were assessed in sleep-deprived mice.CCFM1025 improved the body weight and food and water intake of the mice.It also alleviated SD-induced cognitive behavioural abnormalities(in the novel object recognition test),but did not show beneficial effects on mood-and spatial memory-related behaviours.CCFM1025 significantly altered the gut microbial composition and genome function.Key microbial metabolites that may regulate sleep function were also identified,such as isovaleric acid andγ-aminobutyric acid in the gut and purine metabolites in the serum.Those metabolites may participate in gutbrain communication by acting on the striatal melatonin system,for example to increase melatonin levels,and by regulating the expression of circadian clock genes such as those encoding the adenosine A2A receptor and period circadian regulator 1.Collectively,administration of probiotics alleviated cognitive impairment and circadian rhythm disturbance induced by SD via modulation of gut microbiome and its metabolites.These findings may help guide the treatment of insomnia or other sleep disorders via dietary strategies. 展开更多
关键词 BIFIDOBACTERIUM SLEEP Circadian rhythm PURINE Gut microbiome
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2’-Fucosyllactose alleviate immune checkpoint blockade-associated colitis by reshaping gut microbiota and activating AHR pathway
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作者 Shikai Yan Leilei Yu +3 位作者 Fengwei Tian jianxin zhao Wei Chen Qixiao Zhai 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第5期2543-2561,共19页
Immune checkpoint blockade(ICB)therapeutics are highly effective in cancer immunotherapy,but gastrointestinal toxicity limited the application.Intestinal microbiota plays a crucial role in ICB-associated colitis.2’-F... Immune checkpoint blockade(ICB)therapeutics are highly effective in cancer immunotherapy,but gastrointestinal toxicity limited the application.Intestinal microbiota plays a crucial role in ICB-associated colitis.2’-Fucosyllactose(2’FL)is most abundance prebiotic in human milk that can reshape gut microbiota and exert immune regulatory effect.The study aimed to determine the effects of 2’FL on ICB-associated colitis and to uncover the mediating mechanism.ICB-associated colitis was induced by the ipilimumab and dextran sulfate sodium.Oral administration of 2’FL(0.6 g/(kg∙day))ameliorated ICB-induced colitis by enhancing regulatory T cells(Treg)and the M2/M1 ratio of macrophages in colon.2’FL treatment also increased the expression of tight junction proteins(zonula occludens-1(ZO-1)and mucin 2(MUC2))and antioxidant stress indicators(superoxide dismutase(SOD)and catalase(CAT)).In addition,administration of 2’FL increased the abundance of Bifidobacterium and Lactobacillus,and elevated the levels of microbial metabolites,such as indole-3-lactic acid(ILA),which activated the aryl hydrocarbon receptor ligands(AHR)pathway.The protective effect of 2’FL was abolished upon depletion of gut microbiota,and ILA treatment partially simulated the protective effect of 2’FL.Notably,2’FL did not exhibit inhibition of antitumor immunity.These findings suggest that 2’FL could serve as a potential protective strategy for ICB-associated colitis by modulating the intestinal microbiota and bacterial metabolites. 展开更多
关键词 2’-Fucosyllactose Immune checkpoint blockade-associated colitis Gut microbiota Metabolomics Regulatory T cells(Treg)
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Alleviative effects of Bacillus coagulans strains on irritable bowel syndrome-unraveling strain specificity through physiological and genomic analysis
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作者 Jiang Cao Leilei Yu +4 位作者 jianxin zhao Hao Zhang Wei Chen Yuzheng Xue Qixiao Zhai 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第4期1845-1855,共11页
The high intraspecies heterogeneity of Baciillus coagulans leads to significant phenotypic differences among different strains.Thus,6 B.coagulans strains were tested in the present study using an irritable bowel syndr... The high intraspecies heterogeneity of Baciillus coagulans leads to significant phenotypic differences among different strains.Thus,6 B.coagulans strains were tested in the present study using an irritable bowel syndrome(IBS)animal model to determine whether the IBS-alleviating effects of B.coagulans strains are strain-specific.The results of this study showed that the ingestion of B.coagulans GBI-30,6086,and B.coagulans CCFM1041 significantly alleviated IBS symptoms in mice.In contrast,other B.coagulans strains showed no or limited alleviating effects on IBS symptoms.According to our experimental results,the two main common features of these strains were as follows:1)The resistance of vegetative cells to bile salts,and 2)ability to synthesize specific lipids and secondary metabolites.Screening strains based on these two indicators may greatly reduce costs and provide a basis for mining new functional B.coagulans strains.Our results also suggest that administration of B.coagulans could significantly regulate microbiota dysbiosis in animal models.Moreover,the close relationships between the gut microbiota,gut microbiota metabolites,and IBS were further confirmed in this study. 展开更多
关键词 Baciillus coagulans Irritable bowel syndrome Resistance to bile salts Comparative genomic analysis Gut microbiota
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Environmental enrichment in combination with Bifidobacterium breve HNXY26M4 intervention amplifies neuroprotective benefits in a mouse model of Alzheimer's disease by modulating glutamine metabolism of the gut microbiome
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作者 Guangsu Zhu Min Guo +3 位作者 jianxin zhao Hao Zhang Gang Wang Wei Chen 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期982-992,共11页
The gut microbiota-brain axis has emerged as a novel target for Alzheimer's disease(AD),a neurodegenerative disease characterised by behavioural and cognitive impairment.However,most previous microbiome-based inte... The gut microbiota-brain axis has emerged as a novel target for Alzheimer's disease(AD),a neurodegenerative disease characterised by behavioural and cognitive impairment.However,most previous microbiome-based intervention studies have focused on single factors and yielded only modest cognitive improvements.Here,we proposed a multidomain intervention strategy that combined Bifidobacterium breve treatment with environmental enrichment(EE)training.In this study,we found that compared with EE or B.breve treatment alone,B.breve intervention combined with EE amplified its neuroprotective effects on AD mice,as reflected by improved cognition,inhibited neuroinflammation and enhanced synaptic function.Moreover,using microbiome and metabolome profiling,we found that the combination of B.breve and EE treatment restored AD-related gut microbiota dysbiosis and reversed microbial metabolite changes.Finally,by integrating behavioural and neurological data with metabolomic profiles,we revealed that the underlying mechanism may involve the modulation of microbiota-derived glutamine metabolism via gut-brain interactions.Collectively,combined B.breve intervention with EE treatment can alleviate AD-related cognitive impairment and improve brain function by regulating glutamine metabolism of the gut microbiome.Our findings provide a promising multidomain intervention strategy,with a combination of dietary microbiome-based and lifestyle-targeted interventions,to promote brain function and delay the progression of AD. 展开更多
关键词 Alzheimer’s disease Bifidobacterium breve Environmental enrichment Glutamine metabolism Microbiota-gut-brain axis
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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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Protective effects of Bifi dobacterium breve on imiquimod-induced psoriasis in mice through secondary bile acid production and FXR-TLR4/NF-κB pathway
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作者 Xinqi Chen Yang Chen +4 位作者 Catherine Stanton RPaul Ross jianxin zhao Bo Yang Wei Chen 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第6期3447-3460,共14页
This study aimed to evaluate the effects of Bifi dobacterium breve CCFM683 on psoriasis and to investigate the underlying mechanisms.B.breve CCFM683 significantly ameliorated psoriasis in mice as well as elevated the ... This study aimed to evaluate the effects of Bifi dobacterium breve CCFM683 on psoriasis and to investigate the underlying mechanisms.B.breve CCFM683 significantly ameliorated psoriasis in mice as well as elevated the deoxycholic acid(DCA)and lithocholic acid(LCA)in the colon compared with those of the imiquimod(IMQ)-treated mice.Meanwhile,B.breve CCFM683 increased the relative abundance of DCA-producing Lachnoclostridium and diminished the harmful Desulfovibrio and Prevotellaceae UCG001.Additionally,the farnesoid X receptor(FXR)in the skin was activated and the expression of the Toll-like receptor 4(TLR4)/nuclear factor kappa-B(NF-κB)pathway was inhibited,and the downstream interleukin(IL)-17 and tumor necrosis factor(TNF)-αwere downregulated whereas IL-10 was up-regulated.Moreover,the subsequent hyperproliferation of keratinocytes and the dysfunction of the epidermal barrier were improved.In conclusion,CCFM683 administration ameliorated IMQ-induced psoriasis via modulating gut microbiota,promoting the DCA production,regulating the FXR-TLR4/NF-κB pathway,diminishing proinflammatory cytokines,and regulating keratinocytes and epidermal barrier.These findings may be conducive to elucidating the mechanism for probiotics to ameliorate psoriasis and to promote its clinical trials in skin disease. 展开更多
关键词 PSORIASIS Bifi dobacterium breve Gut microbiota Secondary bile acids FXR-TLR4/NF-κB pathway
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Ameliorative effects of Lactobacillus fermentum isolated from individuals following vegan, omnivorous and high-meat diets on ulcerative colitis in mice
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作者 Qingsong Zhang Wei Xiao +5 位作者 Leilei Yu Fengwei Tian jianxin zhao Hao Zhang Wei Chen Qixiao Zhai 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第6期3181-3192,共12页
Lactobacillus spp.can be beneficial for the prevention or treatment of ulcerative colitis(UC).In this study,153 participants who followed vegan,omnivorous,or high-meat diet were recruited.Compositional analysis of the... Lactobacillus spp.can be beneficial for the prevention or treatment of ulcerative colitis(UC).In this study,153 participants who followed vegan,omnivorous,or high-meat diet were recruited.Compositional analysis of the Lactobacillus community in feces revealed that Lactobacillus fermentum strains were significantly affected by diet.Administration of mixed L.fermentum strains from vegans significantly improved inflammation compared to that from omnivores and high-meat consumers,as evidenced by a significant reduction in colonic tissue damage,improvement in inflammatory cytokines,enhanced expression of ZO-1,occludin,and claudin-3,and a significant increase in short chain fatty acids concentration.The effect of a single strain of L.fermentum was similar to that of a mixed strains of L.fermentum group.Genomic analysis suggested that L.fermentum strains from the guts of vegans possessed a higher prevalence of genes involved in carbohydrate catabolism than those from the guts of omnivores and high-meat eaters.In particular,the ME2 gene is involved in the biosynthesis of acetate,a compound considered to possess anti-inflammatory properties.In conclusion,this study indicates strain-specific differences in the ability of L.fermentum strains to alleviate UC in mice,influenced by habitual diets。 展开更多
关键词 Ulcerative colitis VEGAN OMNIVOROUS High-meat diet Lactobacillus fermentum
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Limosilactobacillus mucosae FZJTZ26M3 prevents NAFLD in mice through modulation of lipid metabolism and gut microbiota dysbiosis
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作者 Danting Dang Bowen Li +5 位作者 Mengfan Ding RPaul Ross Catherine Stanton jianxin zhao Bo Yang Wei Chen 《Food Science and Human Wellness》 SCIE CSCD 2024年第3期1589-1601,共13页
Lactobacillus are considered promising therapeutic methods for nonalcoholic fatty liver disease(NAFLD).The effects of two strains of Ltmosilactobacillus mucosae on NAFLD were investigated in this study.Fourweek-old ma... Lactobacillus are considered promising therapeutic methods for nonalcoholic fatty liver disease(NAFLD).The effects of two strains of Ltmosilactobacillus mucosae on NAFLD were investigated in this study.Fourweek-old male C57BL/6J mice were divided into 4 groups(n=8 per group,Control,Model,FZJTZ26M3,FGSYC17L3).L.mucosae FZJTZ26M3 reduced the mice 's body weight,liver weight,and adipose tissue weight after 12 weeks of therapy.According to serum analysis,total cholesterol,triacylglycerol,and low-density lipoprotein cholesterol significantly decreased after L.mucosae FZJTZ26M3 intervention.Liver pathology showed that L.mucosae FZJTZ26M3 was effective to ameliorate lipid deposition in NAFLD mice.Additionally,the expression of the gene related to lipid metabolism in the liver and adipose tissue was analyzed,and the results indicated that L.mucosae FZJTZ26M3 could alleviate NAFLD by regulating lipid metabolism.Furthermore,the results of 16S rRNA gene sequencing revealed a drop in the relative abundance of Ruminococcaceae,which is linked to inflammation,but the relative abundance of a potential probiotic Akkermansia significantly increased after L.mucosae FZJTZ26M3 intervention.Generally,L.mucosae FZJTZ26M3 could be a candidate to prevent NAFLD. 展开更多
关键词 Limosilactobacillus mucosae Nonalcoholic fatty liver disease(NAFLD) Probiotic Lipid metabolism Gut microbiota
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Strain-specific effect of Streptococcus thermophilus consumption on host physiology
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作者 Peng Yu Yang Jiang +6 位作者 Yuqi Pan Min Guo Bo Yang Xiaoming Liu jianxin zhao Hao Zhang Wei Chen 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第5期2876-2888,共13页
Streptococcus thermophilus is one of the most prevalent species in stool samples of westernized populations due to continuous exposure to fermented dairy products.However,few studies have explored the effect on host p... Streptococcus thermophilus is one of the most prevalent species in stool samples of westernized populations due to continuous exposure to fermented dairy products.However,few studies have explored the effect on host physiology by multiple S.thermophilus strains and considered the inter-strain differences in regulating host.In the present study,we investigated how four S.thermophilus strains influenced the gut microbiota,mucin changes,and host metabolism after 28 days of intervention in conventional mice.The results indicated that the consumption of S.thermophilus affected the host with strain specificity.Among four S.thermophilus strains,DYNDL13-4 and DQHXNQ38M61,especially DQHXNQ38M61,had more effect on host physiology by modulating gut microbiota and host metabolism than LMD9 and 4M6.Ingestion of strains DYNDL13-4 and DQHXNQ38M61 resulted in more remarkable changes in amino acid metabolism and lipid metabolism than that of strains LMD9 and 4M6,which may be related to the elevation of intestinal Bifidobacterium by DYNDL13-4 and DQHXNQ38M61.The enriched Coriobacteriaceae UCG-002,Rikenellaceae RC9 gut group,and Lactobacillus only in the DQHXNQ38M61 group,had a close relationship with the prominent effect of DQHXNQ38M61 on regulating amino acid and lipid metabolism.In addition,DQHXNQ38M61 had a strong influence on degrading colonic mucin fucose by decreasedα-fucosidase activity in feces,and improving mucin sulfation by upregulated Gal3ST2 expression.Comparative genomic analysis revealed that the four S.thermophilus strains belonged to different branches in the phylogenetic tree,and DYNDL13-4 and DQHXNQ38M61 had more genes involved in carbohydrate metabolism,amino acid metabolism,membrane transport,and signal transduction,which may confer the capacity of nutrient utilization and gastrointestinal adaptation of the strains and be associated with their strong regulation in host.Our study provides valuable information for understanding the regulation of host metabolism after consuming different S.thermophilus strains and could facilitate potential personalized applications of S.thermophilus based on strain varieties. 展开更多
关键词 Streptococcus thermophilus Intestinal microbiota METABOLOME Comparative genomics
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Lactobacillus gasseri CCFM1255 promotes peripheral estrogen synthesis in ovariectomized rats by modulating the gut microbiome and serum metabolome
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作者 Qian Chen Haiqin Chen +2 位作者 jianxin zhao Wei Chen Gang Wang 《Food Science and Human Wellness》 SCIE CAS CSCD 2024年第6期3301-3310,共10页
The decline in ovarian estrogen production is known to have detrimental health consequences and negatively affect the quality of life in menopausal women.Increasing estradiol levels is key to preventing disease in men... The decline in ovarian estrogen production is known to have detrimental health consequences and negatively affect the quality of life in menopausal women.Increasing estradiol levels is key to preventing disease in menopausal women.In this study,Lactobacillus gasseri CCFM1255 isolated from healthy infants was found to have a positive effect on estradiol production in ovariectomized rats.CYP19,the key enzyme catalysing the conversion of androgens into estrogens,was upregulated in adipose tissue upon CCFM1255 treatment.Untargeted metabolome analysis and targeted metabolite detection were used to identify the key metabolites altered by CCFM1255 treatment.CCFM1255 treatment significantly improved the serum concentration of glutamine(Gln).A significantly positive correlation was observed between serum Gln and estradiol concentrations.CCFM1255 treatment reshaped the structure of the gut microbiome,which was correlated with certain changes in serum metabolite concentrations.These results indicate that the provision of CCFM1255 as a dietary supplement may be an effective strategy to alleviate menopausal symptoms by increasing circulating estradiol. 展开更多
关键词 ESTRADIOL AROMATASE Gut microbiota Amino acids
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Akkermansia muciniphila-directed polyphenol chlorogenic acid intervention for obesity in mice
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作者 Xiaoxiang Gao Chenbo Yue +5 位作者 Ruocen Tian Leilei Yu Fengwei Tian jianxin zhao Wei Chen Qixiao Zhai 《Food Science and Human Wellness》 SCIE CSCD 2024年第1期90-100,共11页
Akkermansia muciniphila play an important in ameliorating obesity but is not allowed for direct consumption in most countries.To date,microbiota-directed foods selectively promote the targeted human gut microbes,provi... Akkermansia muciniphila play an important in ameliorating obesity but is not allowed for direct consumption in most countries.To date,microbiota-directed foods selectively promote the targeted human gut microbes,providing a strategy for A.muciniphila enhancement.Multiple studies have indicated the potential regulation of the polyphenol on A.muciniphila.Therefore,a polyphenol screening based on A.muciniphila upregulation was performed in mice.Chlorogenic acid(CGA)exhibited a greater response to A.muciniphila upregulation.Furthermore,we found that CGA did not directly promote A.muciniphila growth or mucin secretion.Microbiome and metabolomics revealed that the increased abundance of A.muciniphila resulted from the inhibition of CGA on Desulfovibrio and Alistipes and the influence of docosahexaenoic acid,β-hydroxybutyrate,and N-acetyl-lactosamine.Finally,to confirm the regulation of CGA on A.muciniphila under disease conditions,high-fat diet-fed mice were established.The results showed CGA promoted A.muciniphila growth,and we expectedly found that CGA suppressed the augment in body weight of mice,significantly attenuated adipose tissue abnormality,provided liver protection and improved gut barrier integrity.These results suggest that CGA inhibits the development of obesity.Overall,our results indicate that microbiota-directed food is a promising approach for the treatment of obesity. 展开更多
关键词 Akkermansia muciniphila POLYPHENOL chlorogenic acid OBESITY
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方解石原位U-Pb测年结合磷灰石裂变径迹方法约束鄂尔多斯盆地西南部构造演化 被引量:8
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作者 杨鹏 任战利 +4 位作者 jianxin zhao Ai Duc Nguyen Yuexing Feng 祁凯 王琨 《石油与天然气地质》 EI CAS CSCD 北大核心 2021年第5期1189-1201,共13页
鄂尔多斯盆地下古生界油气资源丰富,盆地西南部下古生界海相碳酸盐岩地层沉积厚度大、有机质丰度较高,烃源岩热演化达到过成熟生干气阶段,但是构造演化缺乏深入研究,早期构造事件具体时限是一个亟待解决的关键科学问题。在详细的野外调... 鄂尔多斯盆地下古生界油气资源丰富,盆地西南部下古生界海相碳酸盐岩地层沉积厚度大、有机质丰度较高,烃源岩热演化达到过成熟生干气阶段,但是构造演化缺乏深入研究,早期构造事件具体时限是一个亟待解决的关键科学问题。在详细的野外调查、显微结构特征、原位微量元素分析和区域沉积-埋藏演化历史的约束下,结合下古生界碳酸盐岩地层及其断裂破碎带内次生方解石原位U-Pb测年与磷灰石裂变径迹时间-温度曲线模拟结果,揭示了鄂尔多斯盆地西南部晚奥陶世、晚三叠世、晚侏罗世和早白垩世末期—新生代以来的4期构造事件。结果表明研究区晚奥陶世(452±13)Ma存在一期热液改造事件,可能与加里东期原特提斯洋俯冲闭合密切相关;印支期(214±22)Ma的断裂活动是引起区域构造-热事件的重要原因,印支期构造事件规模有限;燕山期和喜马拉雅期构造活动强烈,造成鄂尔多斯盆地西南部大幅度隆升和强烈剥蚀。盆地西南部多阶段复杂的构造演化历史导致油气保存条件破坏严重,对寻找古生界天然气藏不利,应重视盆地天然气保存条件的研究。研究结果对鄂尔多斯盆地古生界油气勘探工作有重要指导意义。将低温热年代学与断裂带方解石原位U-Pb定年相结合分析构造演化的新思路,为解析复杂叠合盆地盆缘带构造演化及其后期改造过程的研究提供了新途径。 展开更多
关键词 方解石U-Pb定年 裂变径迹 构造演化 下古生界 鄂尔多斯盆地
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Probiotics supplementation for management of type Ⅱ diabetes risk factors in adults with polycystic ovarian syndrome: a meta-analysis of randomized clinical trial 被引量:1
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作者 Chengcheng Zhang Yingyue Sheng +7 位作者 Jinchi Jiang Yuzheng Xue Leilei Yu Fengwei Tian jianxin zhao Hao Zhang Jian Jin Qixiao Zhai 《Food Science and Human Wellness》 SCIE CSCD 2023年第4期1053-1063,共11页
This meta-analysis of randomized controlled trials aimed to evaluate the effects of probiotic supplementation on glucose homeostasis in patients with polycystic ovary syndrome(PCOS).The meta-analysis was performed in ... This meta-analysis of randomized controlled trials aimed to evaluate the effects of probiotic supplementation on glucose homeostasis in patients with polycystic ovary syndrome(PCOS).The meta-analysis was performed in accordance with the Cochrane Handbook guidelines and relevant the preferred reporting items for systematic reviews and meta-analyses(PRISMA)statement criteria.Of 825 identified reports,11 randomized clinical trials were included in the meta-analysis.An analysis of pooled extracted data revealed that supplementation with probiotics significantly decreased fasting blood glucose(FBG,n=7;standardized mean difference(SMD)=−0.40;95%confidence interval(CI):−2.02,−0.02;P=0.04)and insulin levels(n=6;SMD=−0.57;95%CI:−0.89,−0.25;P=0.0004)and the homeostatic model assessment of insulin resistance(n=7;SMD=−0.64;95%CI:−0.96,−0.31;P=0.0001)while increasing the quantitative insulin sensitivity check index(QUICKI,n=5;SMD=0.58;95%CI:0.08,1.09;P=0.02)in patients with PCOS.The FBG-reducing effect decreased as the baseline body mass index(BMI)and mean age of the participants increased.Indeed,a greater number of bacterial species and a higher bacterial dose were shown to reduce QUICKI effectively.The systematic review indicated that probiotic supplementation may help to control glucose homeostasis in adults with polycystic ovarian syndrome. 展开更多
关键词 Polycystic ovary syndrome Type 2 diabetes Glucose homeostasis Probiotic META-ANALYSIS Randomized clinical trial
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Stachyose modulates gut microbiota and alleviates DSS-induced ulcerative colitis in mice 被引量:1
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作者 Chen Wang Junying Bai +7 位作者 Botao Wang Leilei Yu Fengwei Tian jianxin zhao Hao Zhang Huayi Suo Wei Chen Qixiao Zhai 《Food Science and Human Wellness》 SCIE CSCD 2023年第6期2211-2220,共10页
Stachyose is a prebiotic that traditionally extracted from plants,such as vegetable.It has been demonstrated to alleviate intestinal inflammation by regulating gut microbiota,but the mechanism has been unclear.This re... Stachyose is a prebiotic that traditionally extracted from plants,such as vegetable.It has been demonstrated to alleviate intestinal inflammation by regulating gut microbiota,but the mechanism has been unclear.This research aims to detect the potential mechanism of stachyose in alleviating the severity of ulcerative colitis(UC).The results indicated that the administration of stachyose could recover the body weight,protect against the colonic tissue damage,reduce the pro-inflammatory cytokines levels,and reverse the histological abnormalities in UC mice.Oral stachyose could restore dextran sulfate sodium(DSS)-induced disturbance in intestinal bacteria.Besides,the metabolome result of serum samples showed that stachyose treatment significantly altered serum metabolites against inflammatory responses in colitis mice.Also,a significant correlation can be found between 23 metabolite biomarkers and 18 differential genera.Our results provided a strong foundation for the future study of the protective role of stachyose in maintaining intestinal homeostasis. 展开更多
关键词 STACHYOSE Prebiotic COLITIS METABONOMICS Gut microbiota
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一种基于Caco-2细胞单层膜的筛选抵抗特定代谢性疾病益生菌的模型
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作者 刘阳 彭江 +6 位作者 朱诗雅 于雷雷 田丰伟 赵建新 张灏 陈卫 翟齐啸 《Engineering》 SCIE EI CAS CSCD 2023年第6期222-233,M0009,共13页
最近的研究揭示了益生菌在缓解与肠道屏障功能障碍相关的代谢疾病方面的潜力。然而,目前还没有一种能高效筛选抵抗特定代谢疾病益生菌菌株的模型。本研究采用肿瘤坏死因子(TNF-α)和酒精处理的Caco-2细胞单层膜模型,评价了139株乳杆菌... 最近的研究揭示了益生菌在缓解与肠道屏障功能障碍相关的代谢疾病方面的潜力。然而,目前还没有一种能高效筛选抵抗特定代谢疾病益生菌菌株的模型。本研究采用肿瘤坏死因子(TNF-α)和酒精处理的Caco-2细胞单层膜模型,评价了139株乳杆菌在体外对肠道屏障功能的影响。然后,我们选择了11株对肠道屏障具有不同调节能力的乳杆菌菌株,进一步在体内评价了它们对卵巢切除引起的骨质疏松症或慢性酒精性肝损伤的作用效果。体外细胞模型和体内动物模型数据的关联性分析显示,两种疾病模型下的Pearson系数分别为0.82和-0.97,表明使用体外细胞模型模拟益生菌在体内的保护作用是可靠的。本研究建立了一种基于Caco-2细胞单层膜模型的体外方法,用于高效筛选可以抵抗特定代谢疾病(如骨质疏松症和慢性酒精性肝病)的益生菌。 展开更多
关键词 肠道屏障功能 代谢疾病 骨质疏松症 代谢性疾病 疾病模型 卵巢切除 肿瘤坏死因子 单层膜
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Bifidobacterium longum CCFM1077 Attenuates Hyperlipidemia by Modulating the Gut Microbiota Composition and Fecal Metabolites:A Randomized,Double-Blind,Placebo-Controlled Clinical Trial
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作者 Chuanqi Chu Jinchi Jiang +8 位作者 Leilei Yu Yiwen Li Songli Zhang Wei Zhou Qun Wang jianxin zhao Qixiao Zhai Fengwei Tian Wei Chen 《Engineering》 SCIE EI CAS CSCD 2023年第9期193-205,共13页
An increasing number of studies have indicated that gut microbiota and its metabolites are crucial in the development of hyperlipidemia.Bifidobacterium longum(B.longum)CCFM1077 has been shown to have lipid-lowering ef... An increasing number of studies have indicated that gut microbiota and its metabolites are crucial in the development of hyperlipidemia.Bifidobacterium longum(B.longum)CCFM1077 has been shown to have lipid-lowering effects in animals.This study aimed to evaluate the potential of B.longum CCFM1077 in lowering the lipid levels in patients with hyperlipidemia and investigate the effect of this bacterium on serum lipid abnormalities,gut microbiota,and fecal metabolites in these patients.This study was a six-week,randomized,double-blind,and placebo-controlled pilot clinical trial.Subjects with hyperlipidemia(N=62)were randomly assigned to receive placebo(N=31)or B.longum CCFM1077(1×1010colony-forming units(CFUs)per day;N=31).Serum lipid levels including total cholesterol(TC),lowdensity lipoprotein cholesterol(LDL-C),total triglyceride(TG),and high-density lipoprotein cholesterol(HDL-C)were examined at the baseline and interventio nal endpoints.Changes in the gut microbiota composition and diversity were measured based on 16S ribosomal RNA(rRNA)sequencing of the V3-V4region at the end of the intervention period.Non-targeted metabolomics of the feces was performed using ultra-performance liquid chromatography(UPLC)-Q-Exactive Orbitrap/mass spectrometer.Oral administration of B.longum CCFM1077 for six weeks significantly decreased the serum levels of TC(p<0.01)and LDL-C(p<0.01)in patients with hyperlipidemia.B.longum CCFM1077 treatment markedly increased gut microbiota diversity and the relative abundance of anti-obesity-related genera,including Lactobacillus,Butyricicoccus,Bifidobacterium,and Blautia,whereas it decreased the relative abundance of obesity-related genera,including Alistipes,Megamonas,and Catenibacterium.Additionally,some key metabolites(bile acids(BAs),biotin,and caffeine)and their corresponding metabolic pathways(primary BA biosynthesis,and taurine and hypotaurine,biotin,purine,and caffeine metabolisms)were enriched by B.longum CCFM1077,and thus it may lower lipid levels.B.longum CCFM1077 is a probiotic strain with the potential to lower serum TC and LDL-C levels patients with hyperlipidemia.The underlying mechanism may be related to the increased abundance of anti-obesity-related genera and fecal metabolites.These findings provide a foundation for future clinical applications of lipid-lowering probiotics in managing individuals with hyperlipidemia. 展开更多
关键词 PROBIOTICS Bifidobacterium longum HYPERLIPIDEMIA Gut microbiota Fecal metabolites Bile acid(BA)
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Optimization and Deployment of Memory-Intensive Operations in Deep Learning Model on Edge
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作者 Peng XU jianxin zhao Chi Harold LIU 《计算机科学》 CSCD 北大核心 2023年第2期3-12,共10页
As a large amount of data is increasingly generated from edge devices,such as smart homes,mobile phones,and wearable devices,it becomes crucial for many applications to deploy machine learning modes across edge device... As a large amount of data is increasingly generated from edge devices,such as smart homes,mobile phones,and wearable devices,it becomes crucial for many applications to deploy machine learning modes across edge devices.The execution speed of the deployed model is a key element to ensure service quality.Considering a highly heterogeneous edge deployment scenario,deep learning compiling is a novel approach that aims to solve this problem.It defines models using certain DSLs and generates efficient code implementations on different hardware devices.However,there are still two aspects that are not yet thoroughly investigated yet.The first is the optimization of memory-intensive operations,and the second problem is the heterogeneity of the deployment target.To that end,in this work,we propose a system solution that optimizes memory-intensive operation,optimizes the subgraph distribution,and enables the compiling and deployment of DNN models on multiple targets.The evaluation results show the performance of our proposed system. 展开更多
关键词 Memory optimization Deep compiler Computation optimization Model deployment Edge computing
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Strain-specific effects of Akkermansia muciniphila on the regulation of intestinal barrier
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作者 Yang Liu Qing Liu +4 位作者 Chengcheng Zhang jianxin zhao Hao Zhang Wei Chen Qixiao Zhai 《Food Science and Human Wellness》 SCIE CSCD 2023年第5期1526-1537,共12页
Akkermansia muciniphila, one of the most promising next-generation probiotics, was reported to exhibit beneficial modulatory effects on the gut barrier. However, the strain-specific and underlying regulatory mechanism... Akkermansia muciniphila, one of the most promising next-generation probiotics, was reported to exhibit beneficial modulatory effects on the gut barrier. However, the strain-specific and underlying regulatory mechanisms of this species on gut barrier function were not well studied. Therefore, this study evaluated the protective effect of A. muciniphila strains on the intestinal barrier and investigated the mode of action and material basis of this modulatory effect. We first confirmed the strain-specific effects of A. muciniphila on intestinal barrier regulation and found that this phenomenon may be explained by the different abilities of strains to affect tight junction protein expression in enterocytes. Comparative genomic analysis proved that the ability of A. muciniphila to regulate the intestinal barrier was exerted in part by the functional genes(such as COG0438, COG0463, and COG2244)related to the synthesis of cellular surface proteins. The role of these surface proteins in intestinal barrier regulation was further verified by strain-comparative experiments in animal and cell models and surface protein removal trials. This study confirmed the different effects of A. muciniphila strains on gut barrier modulation and provided molecular and genetic targets for the screening of A. muciniphila strains with superior protection against gut barrier dysfunction. 展开更多
关键词 Akkermansia muciniphila Intestinal barrier Strain specificity Comparative genomics Bacterial surface components
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