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1.
布拉酵母对炎症性肠病的治疗作用   总被引:1,自引:0,他引:1       下载免费PDF全文
炎症性肠病包括溃疡性结肠炎和克罗恩病, 其病因与发病机制尚未完全明确。大量研究表明, 肠道微生物在炎症性肠病的发生、发展中发挥重要作用。布拉酵母是一种有益于人体健康的肠道微生物, 研究发现能有效改善炎症性肠病症状, 可能与其抑制肠道致病菌、增强肠屏障功能、调节肠道黏膜免疫反应等有关。  相似文献   

2.
炎症性肠病(IBD)是一种病因尚不明确的非特异性肠道炎症性疾病。越来越多的证据表明肠道菌群失调与IBD的发生发展密切相关。粪菌移植是通过各种方式将健康捐赠者的粪便菌群移植入患者消化道内,旨在重建患者肠道菌群从而达到对肠道内外疾病治疗的目的。肠道微生物稳态及失调在疾病发生发展中发挥作用,其中包括炎症性肠病(IBD)。越来越多的研究报道了FMT在IBD中的治疗作用,现主要阐述粪菌移植在儿童IBD中的应用。  相似文献   

3.
周林妍  李岩 《微生物学通报》2020,47(5):1600-1606
炎症性肠病(inflammatoryboweldisease,IBD)是一种肠道慢性炎症性疾病,其发病机制尚不清楚。然而,IBD的发病率不断上升给患者及其家属带来了巨大的经济负担,需要找到积极有效的治疗方法来帮助患者。最新的观点认为,宿主和肠道微生物之间的平衡被打破会触发遗传易感个体的免疫炎症反应。肠道菌群失调在炎症性肠病的发病及发展过程中起着重要的作用。临床研究发现,IBD患者肠道菌群失调程度不同,而联合应用益生菌可以改善这些患者的症状。越来越多的研究者密切关注肠道菌群与IBD的关系,并进行了深入的基础和临床研究。本文从肠道菌群对IBD的生理影响以及益生菌和粪便细菌移植等方面进行综述。  相似文献   

4.
聚集在人体肠道的菌群对维持机体正常的生理功能具有重要作用,肠道菌群的失调会导致复发性艰难梭菌感染及炎症性肠病等疾病。粪菌移植是将健康供者肠道内的功能菌群转移到患病个体的肠道内,重建患者的肠道微生态环境,从而达到治疗的目的。研究发现,粪菌移植在治疗复发性艰难梭菌感染方面表现出较高的治愈率,同时对炎症性肠病有积极的疗效。益生菌是一类能发挥健康作用的活性微生物,当机体摄入足够数量的益生菌,益生菌能在宿主肠道内定植,可以恢复并维持宿主肠道菌群的平衡。益生菌可作为预防复发性艰难梭菌感染的辅助治疗,同时在缓解炎症性肠病方面也有较好的效果。  相似文献   

5.
炎症性肠病(Inflammatory Bowel Diseases,IBD),是一组病因未明的累及胃肠道的慢性炎症性疾病,一般指克罗恩病(Crohn’sdisease,CD)和溃疡性结肠炎(ulcerative colitis,UC)。目前认为它是由多种因素相互作用所致的一种自身免疫性疾病,主要包括免疫、环境以及遗传等因素,其中免疫在IBD的发生过程中起着极其重要的作用。以往研究认为与T辅助细胞(T Helper cells)Th1或Th2细胞反应的增强或减弱有关。然而最近研究发现一类新细胞亚群,称为Th17细胞,与之相关的细胞因子可导致包括肠道在内的多脏器病变。Th17细胞分化过程中又需要IL-23的参与,因此IL-23/Th17细胞在炎症性肠病患者肠道内过度表达可以解释肠组织损伤的新途径,并为制定新的治疗策略提出依据。本文就IL-23/Th17轴在炎症性肠病中的作用的研究进展作一综述。  相似文献   

6.
炎症性肠病(IBD)是一种非特异性肠道炎症性疾病,其病因和发病机制尚不完全明确。肠道菌群作为一个非常复杂的微生态系统,在IBD的患病机制中扮演着非常重要的角色。本研究就肠道微生态系统、肠道菌群与IBD发病的关系以及肠道菌群调控对IBD的作用的最新进展进行综述。  相似文献   

7.
人类的肠道菌群种类及数量众多,目前被认为是人体的一个特殊器官。肠道菌群在维持肠道的正常生理功能和机体免疫功能方面发挥了重要作用,肠道微生态失衡与炎症性肠病、代谢综合征、肝病、心血管疾病、精神疾病、关节炎等多种肠内外疾病密切相关,纠正肠道微生态失衡将有助于上述疾病的治疗。粪菌移植(fecal microbiota transplantation,FMT)是指将健康人粪便中的功能菌群移植到患者胃肠道内,重建具有正常功能的肠道菌群,以达到治疗肠道和肠道外疾病的目的。目前报道FMT已应用于艰难梭菌感染、炎症性肠病、肠易激综合征、代谢综合征等多种疾病的治疗中。本文就FMT的临床应用现状作一综述。  相似文献   

8.
抑郁症是一种与炎症反应、神经免疫关系密切的神经精神疾病。微生物,尤其是肠道菌群,则与人类免疫调节机制形成、感染和炎症反应息息相关。研究已证实,肠道菌群在炎症性肠病、哮喘等自身免疫性疾病的发生发展过程中起了相当大的作用。这些探讨非感染性疾病与微生物的关系的研究和理论形成了卫生学假说,亦即"老朋友"假说。目前,很多研究正在运用卫生学假说的观念,探索肠道菌群与抑郁症发生、发展、预防和治疗之间的联系,并取得了一些进展。本文重点就肠道菌群失调是否能够促进抑郁症发生及其可能机制做一综述。  相似文献   

9.
帕金森症是一种多发于中老年期的、慢性的、进行性的、可致残的神经系统退行性疾病。近年来许多研究发现帕金森症患者的胃肠道症状往往早于运动症状数年出现并在早期帕金森症患者的肠神经系统内发现病理组织学改变,提示肠道可能是帕金森病理早期发生的位置。肠道微生物作为与人体共生的最大微生物群落,不仅影响宿主的营养吸收和能量代谢,促进免疫系统发育和调节肠黏膜免疫系统,促进和抑制炎症反应,还可以通过肠—脑轴影响中枢神经系统,还可能是导致神经系统退行性病变发生的原因之一。目前已有研究发现帕金森症患者的肠道微生物与健康对照之间差异有统计学意义,提示从改善肠道微生物的角度入手,通过益生菌干预来恢复肠道微生态的平衡可能成为治疗帕金森症的一种新方法。  相似文献   

10.
炎症性肠病(inflammatory bowel disease,IBD)是一组病因未明的以慢性胃肠道炎症为特征的疾病,包括克罗恩病(Crohn's disease,CD)和溃疡性结肠炎(ulcerative colitis,UC)。细胞因子在IBD肠道炎症反应和黏膜免疫反应中起重要作用,目前已成为研究IBD发病机制的热点,本文就其在IBD中的作用作一综述。  相似文献   

11.
Inflammatory bowel disease (IBD), most commonly ulcerative colitis (UC) and Crohn’s disease (CD), is a chronic inflammation of the gastrointestinal tract. Patients affected with IBD experience symptoms including abdominal pain, persistent diarrhea, rectal bleeding, and weight loss. There is no cure for IBD; thus treatments typically focus on preventing complications, inducing and maintaining remission, and improving quality of life. During IBD, dysregulation of the intestinal immune system leads to increased production of pro-inflammatory cytokines, such as TNF-α and IL-6, and recruitment of activated immune cells to the intestine, causing tissue damage and perpetuating the inflammatory response. Recent biological therapies targeting specific inflammatory cytokines or pathways, in particular TNF-α, have shown promise, but not all patients respond to treatment, and some individuals become intolerant to treatment over time. Dietary peptides and amino acids (AAs) have been shown to modulate intestinal immune functions and influence inflammatory responses, and may be useful as alternative or ancillary treatments in IBD. This review focuses on dietary interventions for IBD treatment, in particular the role of dietary peptides and AAs in reducing inflammation, oxidative stress, and apoptosis in the gut, as well as recent advances in the cellular mechanisms responsible for their anti-inflammatory activity.  相似文献   

12.
Inflammatory bowel disease (IBD) is a general term to describe inflammatory diseases of the gastrointestinal tract such as Crohn's disease and ulcerative colitis. IBD affects approximately 1 in 200 individuals and exerts a significant health and quality of life burden on patients. Surgical intervention can be curative in ulcerative colitis but there is currently no cure for Crohn's disease. Since this is the case, and the fact that patients are often diagnosed at a young age, IBD exerts a significant financial burden on the health care system, and society as a whole.The underlying pathology of IBD is complex and involves a combination of genetic, environmental and microbial factors. Regardless of the underlying causes of the condition, this disease is universally characterized by disruption to the protective epithelial barrier separating the intestinal lumen above from the mucosal immune system below. Once this barrier becomes compromised a sequence of events ensues, that can occur in repetitive cycles to ensure long-term and serious damage to the gut.The role of hypoxia and hypoxia-dependent signalling pathways are increasingly appreciated to play a role in the physiology and pathophysiology of the intestine. The intestinal epithelium normally exists in a state of physiological hypoxia, with additional tissue hypoxia a feature of active inflammatory disease. Furthermore, recent pre-clinical animal studies have clearly supported the rationale for pharmacologically manipulating the oxygen-sensitive hypoxia-inducible factor (HIF) pathway in models of IBD. Thus, this review will discuss the contribution of hypoxia sensitive pathways in the pathology of IBD. Finally we will discuss the emerging evidence for manipulation of hypoxia-sensitive pathways in the treatment of IBD.  相似文献   

13.
Inflammatory bowel disease (IBD), as a representative inflammatory disease, currently has multiple effective treatment options available and new therapeutic strategies are being actively explored to further increase the treatment options for patients with IBD. Furthermore, biologic agents and small molecule drugs developed for ulcerative colitis (UC) and Crohn's disease (CD) have evolved toward fewer side effects and more accurate targeting. Novel inhibitors that target cytokines (such as IL-12/23 inhibitors, PDE4 inhibitors), integrins (such as integrin inhibitors), cytokine signaling pathways (such as JAK inhibitors, SMAD7 blocker) and cell signaling receptors (such as S1P receptor modulator) have become the preferred treatment choice for many IBD patients. Conventional therapies such as 5-aminosalicylic acid, corticosteroids, immunomodulators and anti-tumor necrosis factor agents continue to demonstrate therapeutic efficacy, particularly in combination with drug therapy. This review integrates research from chemical, biological and adjuvant therapies to evaluate current and future IBD therapies, highlighting the mechanism of action of each therapy and emphasizing the potential of development prospects.  相似文献   

14.
F Xie  S Sun  A Xu  S Zheng  M Xue  P Wu  J H Zeng  L Bai 《Cell death & disease》2014,5(1):e1006
Advanced oxidation protein products (AOPPs), a novel protein marker of oxidative damage, have been confirmed to accumulate in patients with inflammatory bowel disease (IBD), as well as those with diabetes and chronic kidney disease. However, the role of AOPPs in the intestinal epithelium remains unclear. This study was designed to investigate whether AOPPs have an effect on intestinal epithelial cell (IEC) death and intestinal injury. Immortalized rat intestinal epithelial (IEC-6) cells and normal Sprague Dawley rats were treated with AOPP-albumin prepared by incubation of rat serum albumin (RSA) with hypochlorous acid. Epithelial cell death, nicotinamide adenine dinucleotide phosphate (NADPH) oxidase subunit activity, reactive oxygen species (ROS) generation, apoptosis-related protein expression, and c-jun N-terminal kinase (JNK) phosphorylation were detected both in vivo and in vitro. In addition, we measured AOPPs deposition and IEC death in 23 subjects with Crohn''s disease (CD). Extracellular AOPP-RSA accumulation induced apoptosis in IEC-6 cultures. The triggering effect of AOPPs was mainly mediated by a redox-dependent pathway, including NADPH oxidase-derived ROS generation, JNK phosphorylation, and poly (ADP-ribose) polymerase-1 (PARP-1) activation. Chronic AOPP-RSA administration to normal rats resulted in AOPPs deposition in the villous epithelial cells and in inflammatory cells in the lamina propria. These changes were companied with IEC death, inflammatory cellular infiltration, and intestinal injury. Both cell death and intestinal injury were ameliorated by chronic treatment with apocynin. Furthermore, AOPPs deposition was also observed in IECs and inflammatory cells in the lamina propria of patients with CD. The high immunoreactive score of AOPPs showed increased apoptosis. Our results demonstrate that AOPPs trigger IEC death and intestinal tissue injury via a redox-mediated pathway. These data suggest that AOPPs may represent a novel pathogenic factor that contributes to IBD progression. Targeting AOPP-induced cellular mechanisms might emerge as a promising therapeutic option for patients with IBD.  相似文献   

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炎症性肠病(IBD)是一种慢性非特异性肠道炎性疾病,其病因未明,有终生复发倾向,重症者迁延不愈。早期治疗以药物为主,部分重症患者后期需要手术干预。近年来,间充质干细胞(MSCs)由于具有多向分化潜能、免疫调节及组织修复功能已被广泛应用于IBD治疗的临床前基础研究中,具有一定理论基础。在已开展的MSCs治疗IBD的临床试验中,尚未有严重并发症的报道。虽然目前MSCs治疗不是IBD的标准治疗方案,但今后可能会成为一种新的治疗选择,特别是对于难治性或合并肛瘘的IBD患者。本文就MSCs的概况及其在IBD治疗的作用机制和应用前景作一综述。  相似文献   

18.
炎症性肠病(inflammatory bowel disease,IBD)是一种原因不明的慢性非特异性肠道炎性疾病,主要包括溃疡性结肠炎(ulcerative colitis,UC)、克罗恩病(Crohn′s disease,CD)和未定型的炎症性肠病(IBD-unclassified,IBDU)。随着对肠道微生物与IBD关系认识的不断加深,许多研究发现肠道菌群的生态失调在IBD的发病中起着重要作用。益生菌在儿童IBD治疗中具有良好前景,但仍缺乏有效的证据来确证益生菌疗效,并指导临床对益生菌的种类和剂量等进行选择。现有研究表明,益生菌对儿童IBD的治疗具有特异性,在诱导和维持UC缓解效果明显,但在诱导CD缓解、维持CD缓解和预防术后并发症及复发方面效果并不理想。  相似文献   

19.
Abnormalities of the intestinal microbiota are implicated in the pathogenesis of Crohn''s disease (CD) and ulcerative colitis (UC), two spectra of inflammatory bowel disease (IBD). However, the high complexity and low inter-individual overlap of intestinal microbial composition are formidable barriers to identifying microbial taxa representing this dysbiosis. These difficulties might be overcome by an ecologic analytic strategy to identify modules of interacting bacteria (rather than individual bacteria) as quantitative reproducible features of microbial composition in normal and IBD mucosa. We sequenced 16S ribosomal RNA genes from 179 endoscopic lavage samples from different intestinal regions in 64 subjects (32 controls, 16 CD and 16 UC patients in clinical remission). CD and UC patients showed a reduction in phylogenetic diversity and shifts in microbial composition, comparable to previous studies using conventional mucosal biopsies. Analysis of weighted co-occurrence network revealed 5 microbial modules. These modules were unprecedented, as they were detectable in all individuals, and their composition and abundance was recapitulated in an independent, biopsy-based mucosal dataset 2 modules were associated with healthy, CD, or UC disease states. Imputed metagenome analysis indicated that these modules displayed distinct metabolic functionality, specifically the enrichment of oxidative response and glycan metabolism pathways relevant to host-pathogen interaction in the disease-associated modules. The highly preserved microbial modules accurately classified IBD status of individual patients during disease quiescence, suggesting that microbial dysbiosis in IBD may be an underlying disorder independent of disease activity. Microbial modules thus provide an integrative view of microbial ecology relevant to IBD.  相似文献   

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