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Microbiota transplantation: concept, methodology and strategy for its modernization 被引量:90
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作者 Faming Zhang Bota Cui +3 位作者 Xingxiang He Yuqiang Nie Kaichun Wu Daiming Fan 《Protein & Cell》 SCIE CAS CSCD 2018年第5期462-473,共12页
Fecal microbiota transplantation (FMT) has become a research focus of biomedicine and clinical medicine in recent years. The clinical response from FMT for different diseases provided evidence for microbiota-host in... Fecal microbiota transplantation (FMT) has become a research focus of biomedicine and clinical medicine in recent years. The clinical response from FMT for different diseases provided evidence for microbiota-host interactions associated with various disorders, including Clostridium difficile infection, inflammatory bowel disease, diabetes mellitus, cancer, liver cirrhosis, gut- brain disease and others. To discuss the experiences of using microbes to treat human diseases from ancient China to current era should be important in moving standardized FMT forward and achieving a better future. Here, we review the changing concept of microbiota transplantation from FMT to selective microbiota transplantation, methodology development of FMT and step- up FMT strategy based on literature and state experts' perspectives. 展开更多
关键词 selective microbiota transplantation microbiome BACTERIA Clostridium difficile inflammatorybowel disease step-up fecal microbiota transplantationperspectives
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Interaction between the gut microbiome and mucosal immune system 被引量:81
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作者 Na Shi Na Li +1 位作者 Xinwang Duan Haitao Niu 《Military Medical Research》 SCIE CAS 2017年第3期170-177,共8页
The gut microbiota, the largest symbiotic ecosystem with the host, has been shown to play important roles in maintaining intestinal homeostasis. Dysbiosis of the gut microbiome is caused by the imbalance between the c... The gut microbiota, the largest symbiotic ecosystem with the host, has been shown to play important roles in maintaining intestinal homeostasis. Dysbiosis of the gut microbiome is caused by the imbalance between the commensal and pathogenic microbiomes. The commensal microbiome regulates the maturation of the mucosal immune system, while the pathogenic microbiome causes immunity dysfunction, resulting in disease development.The gut mucosal immune system, which consists of lymph nodes, lamina propria and epithelial cells, constitutes a protective barrier for the integrity of the intestinal tract. The composition of the gut microbiota is under the surveillance of the normal mucosal immune system. Inflammation, which is caused by abnormal immune responses,influences the balance of the gut microbiome, resulting in intestinal diseases. In this review, we briefly outlined the interaction between the gut microbiota and the immune system and provided a reference for future studies. 展开更多
关键词 microbiome IMMUNITY INFLAMMATION
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Gut Microbiota-brain Axis 被引量:76
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作者 Hong-Xing Wang Yu-Ping Wang 《Chinese Medical Journal》 SCIE CAS CSCD 2016年第19期2373-2380,共8页
Objective:To systematically review the updated information about the gut microbiota-brain axis.Data Sources:All articles about gut microbiota-brain axis published up to July 18,2016,were identified through a literat... Objective:To systematically review the updated information about the gut microbiota-brain axis.Data Sources:All articles about gut microbiota-brain axis published up to July 18,2016,were identified through a literature search on PubMed,ScienceDirect,and Web of Science,with the keywords of"gut microbiota","gut-brain axis",and "neuroscience".Study Selection:All relevant articles on gut microbiota and gut-brain axis were included and carefully reviewed,with no limitation of study design.Results:It is well-recognized that gut microbiota affects the brain&#39;s physiological,behavioral,and cognitive functions although its precise mechanism has not yet been fully understood.Gut microbiota-brain axis may include gut microbiota and their metabolic products,enteric nervous system,sympathetic and parasympathetic branches within the autonomic nervous system,neural-immune system,neuroendocrine system,and central nervous system.Moreover,there may be five communication routes between gut microbiota and brain,including the gut-brain&#39;s neural network,neuroendocrine-hypothalamic-pituitary-adrenal axis,gut immune system,some neurotransmitters and neural regulators synthesized by gut bacteria,and barrier paths including intestinal mucosal barrier and blood-brain barrier.The microbiome is used to define the composition and functional characteristics of gut microbiota,and metagenomics is an appropriate technique to characterize gut microbiota.Conclusions:Gut microbiota-brain axis refers to a bidirectional information network between the gut microbiota and the brain,which may provide a new way to protect the brain in the near future. 展开更多
关键词 Gut Microbiota Gut Microbiota-brain Axis METAGENOMICS microbiome
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Hepatic macrophages in homeostasis and liver diseases: from pathogenesis to novel therapeutic strategies 被引量:56
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作者 Cynthia Ju Frank Tacke 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2016年第3期316-327,共12页
Macrophages represent a major cell type of innate immunity and have emerged as a critical player and therapeutic target in many chronic inflammatory diseases. Hepatic macrophages consist of Kupffer cells, which are or... Macrophages represent a major cell type of innate immunity and have emerged as a critical player and therapeutic target in many chronic inflammatory diseases. Hepatic macrophages consist of Kupffer cells, which are originated from the fetal yolk-sack, and infiltrated bone marrow-derived monocytes/macrophages. Hepatic macrophages play a central role in maintaining homeostasis of the liver and in the pathogenesis of liver injury, making them an attractive therapeutic target for liver diseases. However, the various populations of hepatic macrophages display different phenotypes and exert distinct functions. Thus, more research is required to better understand these cells to guide the development of macrophage-based therapeutic interventions. This review article will summarize the current knowledge on the origins and composition of hepatic macrophages, their functions in maintaining hepatic homeostasis, and their involvement in both promoting and resolving liver inflammation, injury, and fibrosis. Finally, the current strategies being developed to target hepatic macrophages for the treatment of liver diseases will be reviewed. 展开更多
关键词 macrophage CHEMOKINE liver fibrosis MONOCYTE microbiome
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中国传统发酵食品微生物组研究进展 被引量:58
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作者 任聪 杜海 徐岩 《微生物学报》 CAS CSCD 北大核心 2017年第6期885-898,共14页
传统发酵食品风味独特、营养丰富,多采用自然接种方式进行生产,部分类型的生产技艺已具有数千年的历史。近年来应用新技术手段对传统发酵食品发酵过程进行的研究表明,传统发酵食品微生物组具有丰富的科学内涵和重要的应用价值。本文就... 传统发酵食品风味独特、营养丰富,多采用自然接种方式进行生产,部分类型的生产技艺已具有数千年的历史。近年来应用新技术手段对传统发酵食品发酵过程进行的研究表明,传统发酵食品微生物组具有丰富的科学内涵和重要的应用价值。本文就我国传统发酵食品微生物组的基本特征、研究进展和发展方向进行了简要的评述。 展开更多
关键词 中国传统发酵食品 微生物组 微生物菌群 定向控制
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The role of the gut microbiome and its metabolites in metabolic diseases 被引量:58
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作者 Jiayu Wu Kai Wang +2 位作者 Xuemei Wang Yanli Pang Changtao Jiang 《Protein & Cell》 SCIE CAS CSCD 2021年第5期360-373,共14页
It is well known that an unhealthy lifestyle is a major risk factor for metabolic diseases,while in recent years,accumulating evidence has demonstrated that the gut microbiome and its metabolites also play a crucial r... It is well known that an unhealthy lifestyle is a major risk factor for metabolic diseases,while in recent years,accumulating evidence has demonstrated that the gut microbiome and its metabolites also play a crucial role in the onset and development of many metabolic diseases,including obesity,type 2 diabetes,nonalcoholic fatty liver disease,cardiovascular disease and so on.Numerous microorganisms dwell in the gastrointestinal tract,which is a key interface for energy acquisition and can metabolize dietary nutrients into many bioactive substances,thus acting as a link between the gut microbiome and its host.The gut microbiome is shaped by host genetics,immune responses and dietary factors.The metabolic and immune potential of the gut microbiome determines its significance in host health and diseases.Therefore,targeting the gut microbiome and relevant metabolic pathways would be effective therapeutic treatments for many metabolic diseases in the near future.This review will summarize information about the role of the gut microbiome in organism metabolism and the relationship between gut microbiome-derived metabolites and the pathogenesis of many metabolic diseases.Furthermore,recent advances in improving metabolic diseases by regulating the gut microbiome will be discussed. 展开更多
关键词 gut microbiome METABOLISM METABOLITE immune regulation metabolic diseases
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侵袭性牙周炎、慢性牙周炎与牙周健康者龈下菌群的差异研究 被引量:52
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作者 陈斌 李丽丽 +3 位作者 张倩 刘娟 程群 闫福华 《中华口腔医学杂志》 CAS CSCD 北大核心 2020年第7期466-474,共9页
目的比较侵袭性牙周炎(aggressive periodontitis,AgP)、慢性牙周炎(chronic periodontitis,CP)与牙周健康者(periodontally healthy,PH)龈下菌群的差异,为牙周病的病因学研究及基于菌群调控的牙周病新疗法提供参考。方法按纳入标准收集... 目的比较侵袭性牙周炎(aggressive periodontitis,AgP)、慢性牙周炎(chronic periodontitis,CP)与牙周健康者(periodontally healthy,PH)龈下菌群的差异,为牙周病的病因学研究及基于菌群调控的牙周病新疗法提供参考。方法按纳入标准收集2013年12月至2014年12月在南京大学医学院附属口腔医院·南京市口腔医院牙周病科门诊就诊的AgP(AgP组)、CP(CP组)患者和PH受试者(PH组)各10例,根据X线片和口内情况初步预估取样位点后,收集各组龈下菌斑并记录各项牙周临床指数,提取龈下菌斑样本中的DNA,PCR扩增、构建DNA文库并对16S rDNA测序。最终可成功构建文库并测序者包含:8例AgP患者的18个样本,10例CP患者的31个样本和8名PH志愿者的10个样本。对各组样本的α多样性和β多样性以及菌群构成进行分析和比较,并采用Pearson相关性分析评价细菌与探诊深度的相关性。结果菌群分析显示,AgP组龈下菌群的α多样性显著低于其他两组(P<0.05)。在门水平,AgP和CP组拟杆菌门丰度[分别为(36.8±7.4)%、(37.2±6.3)%]、螺旋体门丰度[分别为(16.0±5.4)%、(11.8±3.6)%]均显著高于PH组[分别为(27.5±11.2)%、(5.2±4.4)%](P<0.05),而放线菌门和变形菌门丰度[AgP组分别为(4.2±3.3)%、(12.9±5.1)%;CP组分别为(6.1±2.6)%、(12.1±4.0)%]均显著低于PH组[分别为(19.3±13.1)%、(23.0±10.1)%](P<0.01);AgP组龈下菌群中螺旋体门和柔壁菌门的丰度[分别为(16.0±5.4)%、(1.7±1.2)%]均显著高于CP组[分别为(11.8±3.6)%、(0.7±0.6)%](P<0.05)。在属水平,AgP组龈下菌群中棒状杆菌属、放线菌属、Saccharibacterianorank、月形单胞菌属、Oribacterium的丰度显著低于CP组,而产线菌属、Lentimicrobiaceaenorank、DefluviitaleaceaeUCG011、FamilyXIunclassified的丰度显著高于CP组(P<0.05)。主坐标分析显示,各组样本存在聚类现象。线性判别分析显示,AgP组富集菌包括螺旋体科等,CP组富集菌包括拟杆菌科等。相关性分� 展开更多
关键词 慢性牙周炎 侵袭性牙周炎 龈下菌斑 微生物组
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Immunopathology of inflammatory bowel disease 被引量:48
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作者 Kori L Wallace Li-Bo Zheng +1 位作者 Yoshitake Kanazawa David Q Shih 《World Journal of Gastroenterology》 SCIE CAS 2014年第1期6-21,共16页
Inflammatory bowel disease (IBD) results from a complex series of interactions between susceptibility genes, the environment, and the immune system. The host microbiome, as well as viruses and fungi, play important ro... Inflammatory bowel disease (IBD) results from a complex series of interactions between susceptibility genes, the environment, and the immune system. The host microbiome, as well as viruses and fungi, play important roles in the development of IBD either by causing inflammation directly or indirectly through an altered immune system. New technologies have allowed researchers to be able to quantify the various components of the microbiome, which will allow for future developments in the etiology of IBD. Various components of the mucosal immune system are implicated in the pathogenesis of IBD and include intestinal epithelial cells, innate lymphoid cells, cells of the innate (macrophages/monocytes, neutrophils, and dendritic cells) and adaptive (T-cells and B-cells) immune system, and their secreted mediators (cytokines and chemokines). Either a mucosal susceptibility or defect in sampling of gut luminal antigen, possibly through the process of autophagy, leads to activation of innate immune response that may be mediated by enhanced toll-like receptor activity. The antigen presenting cells then mediate the differentiation of na&#x000ef;ve T-cells into effector T helper (Th) cells, including Th1, Th2, and Th17, which alter gut homeostasis and lead to IBD. In this review, the effects of these components in the immunopathogenesis of IBD will be discussed. 展开更多
关键词 Inflammatory bowel disease Crohn’ s disease Ulcerative colitis microbiome Autophagy T helper 17 Innate immune system Adaptive immune system Innate lymphoid cells TL1A
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Moxibustion treatment modulates the gut microbiota and immune function in a dextran sulphate sodium-induced colitis rat model 被引量:42
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作者 Qin Qi Ya-Nan Liu +6 位作者 Xiao-Ming Jin Lin-Shuang Zhang Cun Wang Chun-Hui Bao Hui-Rong Liu Huan-Gan Wu Xiao-Mei Wang 《World Journal of Gastroenterology》 SCIE CAS 2018年第28期3130-3144,共15页
AIM To investigate the effect and mechanism of moxibustion in rats with ulcerative colitis.METHODS A rat colitis model was established by administering 4% dextran sulphate sodium solution. Seventy male rats were rando... AIM To investigate the effect and mechanism of moxibustion in rats with ulcerative colitis.METHODS A rat colitis model was established by administering 4% dextran sulphate sodium solution. Seventy male rats were randomly divided into seven groups: Healthy controls(HC), ulcerative colitis model group(UC), UC with 7 d of moxibustion(UC-7), UC with 14 d of moxibustion(UC-14), UC with mesalazine gavage(UC-W), HC with 7 d of moxibustion(HC-7), HC with 14 d of moxibustion(HC-14). Moxibustion was applied to the bilateral Tianshu(ST25). Gut microbiome profiling was conducted by 16 S r RNA amplicon sequencing, and PCR and ELISA determined the expression of inflammatory cytokines in colon mucosa and serum, respectively. RESULTS Moxibustion treatment restored the colonic mucosa and decreased submucosal inflammatory cell infiltration in colitis rats. Rats treated with moxibustion and mesalazine had significantly lower levels of the dominant phyla Proteobacteria and the genera Saccharibacteria, Sphingomonas and Barnesiella than colitis rats, and they could restore the microbiome to levels similar to those observed in healthy rats. UC rats had reduced alpha diversity, which could be alleviated by moxibustion therapy, and UC-7 had a higher alpha diversity than UC-14. This finding suggests that short-term(7 d) but no longer term(14 d) moxibustion treatment may significantly affect the gut microbiome. The potential bacterial functions affected by moxibustion may be ascorbate and aldarate metabolism, and amino acid metabolism. Compared with HC group, the levels of the cytokines interleukin-12(IL-12)(P < 0.05) and IL-6, IL-17, IL-23, interferon-γ, lipopolysaccharide, Ig A, tumour necrosis factor-α and its receptors 1(TNFR1) and TNFR2(P < 0.01) were all increased, whereas anti-inflammatory cytokine IL-2 and IL-10(P < 0.01) and transforming growth factor-β(P < 0.05) were decreased in UC rats. These changes were reversed by moxibustion.CONCLUSION Our findings suggest that moxibustion exerts its therapeutic effect by repairing mucos 展开更多
关键词 ULCERATIVE COLITIS MOXIBUSTION 16S rRNA Gut microbiome Inflammatory CYTOKINE
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Helicobacter pylori in human health and disease:Mechanisms for local gastric and systemic effects 被引量:37
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作者 Denisse Bravo Anilei Hoare +2 位作者 Cristopher Soto Manuel A Valenzuela Andrew FG Quest 《World Journal of Gastroenterology》 SCIE CAS 2018年第28期3071-3089,共19页
Helicobacter pylori(H. pylori) is present in roughly 50% of the human population worldwide and infection levels reach over 70% in developing countries. The infection has classically been associated with different gast... Helicobacter pylori(H. pylori) is present in roughly 50% of the human population worldwide and infection levels reach over 70% in developing countries. The infection has classically been associated with different gastro-intestinal diseases, but also with extra gastric diseases. Despite such associations, the bacterium frequently persists in the human host without inducing disease, and it has been suggested that H. pylori may also play a beneficial role in health. To understand how H. pylori can produce such diverse effects in the human host, several studies have focused on understanding the local and systemic effects triggered by this bacterium. One of the main mechanisms by which H. pylori is thought to damage the host is by inducing local and systemic inflammation. However, more recently, studies are beginning to focus on the effects of H. pylori and its metabolism on the gastric and intestinal microbiome. The objective of this review is to discuss how H. pylori has co-evolved with humans, how H. pylori presence is associated with positive and negative effects in human health and how inflammation and/or changes in the microbiome are associated with the observed outcomes. 展开更多
关键词 HELICOBACTER PYLORI CO-EVOLUTION Extragastric diseases Inflammation microbiome
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Gut microbiome,liver immunology,and liver diseases 被引量:38
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作者 Rui Wang Ruqi Tang +3 位作者 Bo Li Xiong Ma Bernd Schnabl Herbert Tilg 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2021年第1期4-17,共14页
The gut microbiota is a complex and plastic consortium of microorganisms that are intricately connected with human physiology.The liver is a central immunological organ that is particularly enriched in innate immune c... The gut microbiota is a complex and plastic consortium of microorganisms that are intricately connected with human physiology.The liver is a central immunological organ that is particularly enriched in innate immune cells and constantly exposed to circulating nutrients and endotoxins derived from the gut microbiota.The delicate interaction between the gut and liver prevents accidental immune activation against otherwise harmless antigens.Work on the interplay between the gut microbiota and liver has assisted in understanding the pathophysiology of various liver diseases.Of immense importance is the step from high-throughput sequencing(correlation)to mechanistic studies(causality)and therapeutic intervention.Here,we review the gut microbiota,liver immunology,and the interaction between the gut and liver.In addition,the impairment in the gut-liver axis found in various liver diseases is reviewed here,with an emphasis on alcohol-associated liver disease(ALD),nonalcoholic fatty liver disease(NAFLD),and autoimmune liver disease(AILD).On the basis of growing evidence from these preclinical studies,we propose that the gut-liver axis paves the way for targeted therapeutic modalities for liver diseases. 展开更多
关键词 Gut-liver axis Alcohol liver disease Nonalcoholic fatty liver disease Autoimmune liver disease microbiome
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Structural changes of gut microbiota in Parkinson's disease and its correlation with clinical features 被引量:34
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作者 Wei Li Xiaoli Wu +5 位作者 Xu Hu Tao Wang Shan Liang Yunfeng Duan Feng Jin Bin Qin 《Science China(Life Sciences)》 SCIE CAS CSCD 2017年第11期1223-1233,共11页
The aim of this study was to compare the structure of gut microbiota in Parkinson's disease(PD) patients and healthy controls;and to explore correlations between gut microbiota and PD clinical features. We analyze... The aim of this study was to compare the structure of gut microbiota in Parkinson's disease(PD) patients and healthy controls;and to explore correlations between gut microbiota and PD clinical features. We analyzed fecal bacterial composition of 24 PD patients and 14 healthy volunteers by using 16 S rRNA sequencing. There were significant differences between PD and healthy controls, as well as among different PD stages. The putative cellulose degrading bacteria from the genera Blautia(P=0.018),Faecalibacterium(P=0.048) and Ruminococcus(P=0.019) were significantly decreased in PD compared to healthy controls.The putative pathobionts from the genera Escherichia-Shigella(P=0.038), Streptococcus(P=0.01), Proteus(P=0.022), and Enterococcus(P=0.006) were significantly increased in PD subjects. Correlation analysis indicated that disease severity and PD duration negatively correlated with the putative cellulose degraders, and positively correlated with the putative pathobionts. The results suggest that structural changes of gut microbiota in PD are characterized by the decreases of putative cellulose degraders and the increases of putative pathobionts, which may potentially reduce the production of short chain fatty acids, and produce more endotoxins and neurotoxins; and these changes is potentially associated with the development of PD pathology. 展开更多
关键词 microbiome a-synuclein gastrointestinal dysfunction gut-brain-axis 16S rRNA sequencing short chain fatty acids
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从抑病土壤到根际免疫:概念提出与发展思考 被引量:35
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作者 韦中 沈宗专 +4 位作者 杨天杰 王孝芳 李荣 徐阳春 沈其荣 《土壤学报》 CAS CSCD 北大核心 2021年第4期814-824,共11页
作物土传病害已经成为集约化农业可持续发展中的瓶颈,在粮食安全、资源高效和生态健康多目标协同发展的指导思想下,系统的绿色防控理论和技术体系构建是破解该难题的重要前提。作为植物-土壤互作的热点区域,根际栖息着较土体土壤更丰富... 作物土传病害已经成为集约化农业可持续发展中的瓶颈,在粮食安全、资源高效和生态健康多目标协同发展的指导思想下,系统的绿色防控理论和技术体系构建是破解该难题的重要前提。作为植物-土壤互作的热点区域,根际栖息着较土体土壤更丰富的微生物群落,是土传病原物入侵作物根系的必经之路。根际微生态系统中的植物、土壤、微生物组和病原物之间的交互作用必然影响着植物健康。笔者将根际微生态系统抵御土传病原物入侵的现象和能力,称之为“根际免疫”。本文重点梳理根际免疫概念形成的4个重要阶段:(1)抑病土壤概念的提出与发展;(2)抑病微生物筛选与作用机制;(3)抑病土壤核心微生物组及互作机制;(4)根际免疫概念的形成与发展思考。最后从关注根际微生态、注重学科交叉和系统揭示根际免疫机制三方面进行展望,以期为提升土壤-植物系统健康和实现农业可持续发展提供理论依据和技术支撑。 展开更多
关键词 土传病害 抑病土壤 根际 微生物组 根际免疫
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Application of metagenomics in the human gut microbiome 被引量:32
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作者 Wei-Lin Wang Shao-Yan Xu +3 位作者 Zhi-Gang Ren Liang Tao Jian-Wen Jiang Shu-Sen Zheng 《World Journal of Gastroenterology》 SCIE CAS 2015年第3期803-814,共12页
There are more than 1000 microbial species living in the complex human intestine.The gut microbial community plays an important role in protecting the host against pathogenic microbes,modulating immunity,regulating me... There are more than 1000 microbial species living in the complex human intestine.The gut microbial community plays an important role in protecting the host against pathogenic microbes,modulating immunity,regulating metabolic processes,and is even regarded as an endocrine organ.However,traditional culture methods are very limited for identifying microbes.With the application of molecular biologic technology in the field of the intestinal microbiome,especially metagenomic sequencing of the next-generation sequencing technology,progress has been made in the study of the human intestinal microbiome.Metagenomics can be used to study intestinal microbiome diversity and dysbiosis,as well as its relationship to health and disease.Moreover,functional metagenomics can identify novel functional genes,microbial pathways,antibiotic resistance genes,functional dysbiosis of the intestinal microbiome,and determine interactions and co-evolution between microbiota and host,though there are still some limitations.Metatranscriptomics,metaproteomics and metabolomics represent enormous complements to the understanding of the human gut microbiome.This review aims to demonstrate that metagenomics can be a powerful tool in studying the human gut microbiome with encouraging prospects.The limitations of metagenomics to be overcome are also discussed.Metatranscriptomics,metaproteomics and metabolomics in relation to the study of the human gut microbiome are also briefly discussed. 展开更多
关键词 HUMAN GUT microbiome Metabolomics METAGENOMICS MET
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活性污泥微生物群落宏组学研究进展 被引量:32
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作者 鞠峰 张彤 《微生物学通报》 CAS CSCD 北大核心 2019年第8期2038-2052,共15页
活性污泥是全球最常用的废水生物处理人工生态系统,微生物是驱动其污染净化能力的关键。活性污泥微生物群落所有物种与基因(简称"微生物组")的研究先后经历了"显微镜观察和纯菌培养分离"(1915)、"PCR扩增-测序... 活性污泥是全球最常用的废水生物处理人工生态系统,微生物是驱动其污染净化能力的关键。活性污泥微生物群落所有物种与基因(简称"微生物组")的研究先后经历了"显微镜观察和纯菌培养分离"(1915)、"PCR扩增-测序"(1994)和"高通量测序-宏组学分析"(2006)三个重要阶段的发展变迁。相应地,我们对活性污泥微生物组的认知经历了从最早对微型动物(如钟虫和轮虫)及其他微生物的形貌观察和纯种培养鉴定到今天对整个微生物组的全局多样性认识的飞跃。近13年来,基于高通量测序的宏组学方法被广泛应用于揭示活性污泥微生物群落组成结构和功能,我们现在充分意识到活性污泥微生物组蕴藏着大量不可培养新物种和基因多样性,驱动着各类污染物的降解与转化。目前,特异性分子标记基因的扩增子测序技术已经被广泛应用于揭示城市和工业废水处理活性污泥微生物组和典型功能种群(如硝化细菌和聚磷菌)的时空多样性和群落构建机制,进而为未来实现活性污泥微生物组功能的精准调控奠定理论基础。宏基因组学研究在群落、种群和个体基因组水平全面解析了活性污泥微生物组驱动的碳、氮、磷元素循环过程,以及有机微污染物的生物降解和转化机理。将来活性污泥微生物组学研究需要在"标准化的组学分析方法和绝对定量""高通量培养组学""高通量功能基因组学"和"多组学方法的结合及多种方法并用"4个方面取得实现精准生态基因组学所需的技术突破,以最大限度发掘活性污泥微生物组在污水处理与资源回收领域的生态学与工程学价值。 展开更多
关键词 活性污泥 微生物组 群落基因组学 群落结构 微生物功能
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The AIM2 inflammasome is a central regulator of intestinal homeostasis through the IL-18/IL-22/STAT3 pathway 被引量:29
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作者 Rojo A Ratsimandresy Mohanalaxmi Indramohan +1 位作者 Andrea Dorfleutner Christian Stehlik 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2017年第1期127-142,共16页
Inflammasomes are important for maintaining intestinal homeostasis, and dysbiosis contributes to the pathology of inflammatory bowel disease (IBD) and increases the risk for colorectal cancer, Inflammasome defects c... Inflammasomes are important for maintaining intestinal homeostasis, and dysbiosis contributes to the pathology of inflammatory bowel disease (IBD) and increases the risk for colorectal cancer, Inflammasome defects contribute to chronic intestinal inflammation and increase the susceptibility to colitis in mice, However, the inflammasome sensor absent in melanoma 2 (AIM2) protects against coiorectal cancer in an inflammasome-independent manner through DNA-dependent protein kinase and Akt pathways, Yet, the roles of the AIM2 inflammasome in IBD and the early phases of colorectal cancer remain ill-defined, Here we show that the AIM2 inflammasome has a protective role in the intestine, During steady state, Aim2 deletion results in the loss of IL-18 secretion, suppression of the IL-22 binding protein (IL-22BP) in intestinal epithelial cells and consequent loss of the STAT3-dependent antimicrobial peptides (AMPs) Reg3β and Reg3γ, which promotes dysbiosis-linked colitis, During dextran sulfate sodium-induced colitis, a dysfunctional IL-18/IL-22BP pathway in Aim2^-/- mice promotes excessive IL-22 production and elevated STAT3 activation, Aim2^-/- mice further exhibit sustained STAT3 and Akt activation during the resolution of colitis fueled by enhanced Reg3b and Reg3g expression, This self-perpetuating mechanism promotes proliferation of intestinal crypt cells and likely contributes to the recently described increase in susceptibility of Aim2^-/- mice to colorectal cancer, Collectively, our results demonstrate a central role for the AIM2 inflammasome in preventing dysbiosis and intestinal inflammation through regulation of the IL-18/IL-22BP/IL-22 and STAT3 pathway and expression of select AMPs. 展开更多
关键词 antimicrobial peptides IL-18 IL-22 IL-22BP INFLAMMASOME inflammatory bowel disease microbiome Reg3
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微生物组数据分析方法与应用 被引量:31
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作者 刘永鑫 秦媛 +1 位作者 郭晓璇 白洋 《遗传》 CAS CSCD 北大核心 2019年第9期845-862,共18页
高通量测序技术的发展衍生出一系列微生物组(microbiome)研究技术,如扩增子、宏基因组、宏转录组等,快速推动了微生物组领域的发展。微生物组数据分析涉及的基础知识、软件和数据库较多,对于同领域研究者开展学习和选择合适的分析方法... 高通量测序技术的发展衍生出一系列微生物组(microbiome)研究技术,如扩增子、宏基因组、宏转录组等,快速推动了微生物组领域的发展。微生物组数据分析涉及的基础知识、软件和数据库较多,对于同领域研究者开展学习和选择合适的分析方法具有一定困难。本文系统概述了微生物组数据分析的基本思想和基础知识,详细总结比较了扩增子和宏基因组分析中的常用软件和数据库,并对高通量数据下游分析中常用的几种方法,包括统计和可视化、网络分析、进化分析、机器学习和关联分析等,从可用性、软件选择以及应用等几个方面进行了概述。本文拟通过对当前微生物组主流分析方法的整理和总结,为同领域研究者更方便、灵活的开展数据分析,快速选择研究分析工具,高效挖掘数据背后的生物学意义提供参考,进一步推动微生物组研究在生物学领域的发展。 展开更多
关键词 微生物组 数据分析 扩增子 宏基因组 分析流程
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Drug resistance and new therapies in colorectal cancer 被引量:28
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作者 Kevin Van der Jeught Han-Chen Xu +2 位作者 Yu-Jing Li Xiong-Bin Lu Guang Ji 《World Journal of Gastroenterology》 SCIE CAS 2018年第34期3834-3848,共15页
Colorectal cancer(CRC) is often diagnosed at an advanced stage when tumor cell dissemination has taken place. Chemo-and targeted therapies provide only a limited increase of overall survival for these patients. The ma... Colorectal cancer(CRC) is often diagnosed at an advanced stage when tumor cell dissemination has taken place. Chemo-and targeted therapies provide only a limited increase of overall survival for these patients. The major reason for clinical outcome finds its origin in therapy resistance. Escape mechanisms to both chemo-and targeted therapy remain the main culprits. Here, we evaluate major resistant mechanisms and elaborate on potential new therapies. Amongst promising therapies is α-amanitin antibodydrug conjugate targeting hemizygous p53 loss. It becomes clear that a dynamic interaction with the tumor microenvironment exists and that this dictates therapeutic outcome. In addition, CRC displays a limited response to checkpoint inhibitors, as only a minority of patients with microsatellite instable high tumors is susceptible. In this review, we highlight new developments with clinical potentials to augment responses to checkpoint inhibitors. 展开更多
关键词 COLORECTAL cancer Therapy resistance Antibody-drug CONJUGATES α-amanitin Tumor MICROENVIRONMENT Immunotherapy CHECKPOINT inhibitors microbiome
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微生物群—脑—肠轴和中枢神经系统研究进展 被引量:29
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作者 朱锡群 易伟 《疑难病杂志》 CAS 2018年第7期748-752,共5页
肠道和脑通过神经、内分泌、免疫等双向交通通路组成了脑肠轴,其中一个器官的变化能够影响另一个器官。肠道微生物的组成和数量失调能影响肠神经系统和中枢神经系统,从而衍生出了微生物群—脑—肠轴。因为肠和脑互相复杂的作用,肠道共... 肠道和脑通过神经、内分泌、免疫等双向交通通路组成了脑肠轴,其中一个器官的变化能够影响另一个器官。肠道微生物的组成和数量失调能影响肠神经系统和中枢神经系统,从而衍生出了微生物群—脑—肠轴。因为肠和脑互相复杂的作用,肠道共生的微生物与各种中枢神经系统疾病也有着密切关系,如帕金森病、阿尔兹海默症、精神分裂症、多发性硬化等。文章对肠道微生物群与中枢神经系统功能及疾病相关性的研究进展进行综述。 展开更多
关键词 微生物 微生物群—脑—肠轴 中枢神经系统
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The Human Microbiota in Health and Disease 被引量:28
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作者 Baohong Wang Mingfei Yao +2 位作者 Longxian Lv Zongxin Ling Lanjuan Li 《Engineering》 SCIE EI 2017年第1期71-82,共12页
Trillions of microbes have evolved with and continue to live on and within human beings. A variety of environmental factors can affect intestinal microbial imbalance, which has a close relationship with human health a... Trillions of microbes have evolved with and continue to live on and within human beings. A variety of environmental factors can affect intestinal microbial imbalance, which has a close relationship with human health and disease. Here, we focus on the interactions between the human microbiota and the host in order to provide an overview of the microbial role in basic biological processes and in the development and progression of major human diseases such as infectious diseases, liver diseases, gastrointestinal cancers, metabolic diseases, respiratory diseases, mental or psychological diseases, and autoimmune diseases. We also review important advances in techniques associated with microbial research, such as DNA sequencing, metabonomics, and proteomics combined with computation-based bioinformatics.Current research on the human microbiota has become much more sophisticated and more comprehensive.Therefore, we propose that research should focus on the host-microbe interaction and on causeeffect mechanisms, which could pave the way to an understanding of the role of gut microbiota in health and disease, and provide new therapeutic targets and treatment approaches in clinical practice. 展开更多
关键词 microbiome HealthInfectious disease Liver diseases Gastrointestinal malignancy Metabolic disorder Microhiota technology Probiotics
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