Intestinal Microbiota as a Necessary Basis for Homeostasis, General Pathology, and Ageing, or Back to Elia Metchnikov

Zhdanov Ri
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引用次数: 1

Abstract

The article is aimed to overview the field of microbiota and endotoxin science and their role in the interaction with innate immune system and pathogenesis of a variety of acute and chronic diseases. The methodology for studying the LPS biological role under clinical conditions created by Russian scientists is based on the ability of LPS blood level reducing tools to increase the patient treatment efficacy. The next findings have been created and formulated: 1. The LPS and stress factors’ involvement to the induction of inflammation, general adaptation syndrome and disseminated intravascular coagulation (DIC) condition which represent starting points for the development of multiple organ failure syndrome; 2. The LPS involvement to pathogenesis of broncho-obstructive syndrome, of chronic hepatitis C, AIDS and SARS-COV-2, of atherosclerosis and acute myocardial infarction, of alimentary obesity, septic shock, and/or type 1 diabetes, of autoimmune diseases, etc.; 3. The creation of interdisciplinary definitions of inflammation and sepsis, and introduction into scientific semantics new definitions such as "Systemic Endotoxinemia" (SE) as an obligate homeostasis factor and "Endotoxin Aggression" (EA) as a pre-disease and/or universal factor of disease pathogenesis. Furthermore, it was found that some bacterial preparation have ability to strengthen the intestinal barrier, which appeared to be one of the most significant achievements of current clinical microbiology. The EA prevention and/or endotoxin elimination would become a mandatory component of the treatment and preventive medicine, including delaying aging. The finding that "inflammation as a driving forces of aging" would be considered as one of the most outstanding clinical achievements of the century. It is declared that aging represents “burning of human organism in the flame of inflammation”. It is suggested that a specific anti-endotoxin therapy could be developed to combat the pathogenesis of chronic and acute diseases. There are several approaches to reduce the LPS level in human body for health maintaining. The First International Congress "Intestinal Microbiota: Homeostasis, Inflammation, and Aging" is planned to be held in Russian Federation (not far from City-of-Kazan), from 6-8 September 2024. It may become the first worldwide discussion of the questions and problems raised here in sense of LPS-centered medicine, as well as a generalization of ideas on the role of intestinal endotoxins and stress in adaptation processes and induction of inflammation, inflammaging, and aging
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肠道微生物群是体内平衡、一般病理和衰老的必要基础,或回到Elia Metchnikov
本文综述了微生物群和内毒素科学的研究进展,以及它们与先天免疫系统的相互作用和各种急慢性疾病的发病机制。俄罗斯科学家创造的研究临床条件下LPS生物学作用的方法是基于LPS血液水平降低工具提高患者治疗效果的能力。下一个发现已经被创造和形成:1。脂多糖和应激因子参与炎症、一般适应综合征和弥散性血管内凝血(DIC)状况的诱导,这些是多器官衰竭综合征发展的起点;2. 脂多糖参与支气管阻塞性综合征、慢性丙型肝炎、艾滋病和SARS-COV-2、动脉粥样硬化和急性心肌梗死、消化道肥胖、感染性休克和/或1型糖尿病、自身免疫性疾病等发病机制;3.创建炎症和败血症的跨学科定义,并在科学语义中引入新的定义,如“系统性内毒素血症”(SE)作为专性体内平衡因子和“内毒素攻击”(EA)作为疾病发病前和/或疾病发病机制的普遍因素。此外,我们还发现一些细菌制剂具有增强肠道屏障的能力,这似乎是当前临床微生物学最重要的成就之一。EA预防和/或内毒素消除将成为治疗和预防医学的强制性组成部分,包括延缓衰老。“炎症是衰老的驱动力”这一发现将被视为本世纪最杰出的临床成就之一。有人宣称,衰老代表着“人体有机体在炎症的火焰中燃烧”。建议开发一种特异性的抗内毒素疗法来对抗慢性和急性疾病的发病机制。有几种方法可以降低人体内的脂多糖水平以维持健康。首届“肠道微生物群:体内平衡、炎症和衰老”国际大会计划于2024年9月6日至8日在俄罗斯联邦(离喀山市不远)举行。这可能成为全球范围内第一次在以lps为中心的医学意义上讨论这里提出的问题和问题,以及对肠道内毒素和应激在适应过程和诱导炎症、炎症和衰老中的作用的观点的概括
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