Human and animal intestinal commensals and probiotics vs modern challenges of biosafety: problems and prospects.

Q3 Veterinary Archives of Razi Institute Pub Date : 2024-02-01 DOI:10.32592/ARI.2024.79.1.28
V M Chernov, O A Chernova, M V Trushin
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Abstract

The appearance of an array of data on the study of the intestinal microbiota in Metazoa has significantly expanded our understanding of the role of commensals in the control of a wide range of physiological functions in higher organisms in norm and pathology. In the intestine, where the microbial load significantly exceeds the number of microorganisms of other ecosystems, the components of the intestinal microbiota are a constant source of stimuli that induce activation of the host immune system. The introduction into practice of biomedical research of innovative high-resolution methods, including   multi-omics technologies, has brought data that change our understanding of intestinal commensals, including probiotics with GRAS status, widely used in medicine, agriculture and biotechnology. The ability of these bacteria to induce negative processes in the host body that are beneficial for bacterial proliferation and expansion revealed a clear lack of our knowledge about the logic of their life and the mechanisms of interaction with eukaryotic cells. This determines the urgent need for comprehensive research of probiotics and the development of standardization of their safety assessment. Apriori's confidence in the exceptional benefit of the bacteria widely used in medicine, agriculture and biotechnology has determined the seriously omission in our control system today - the lack of standardization of studies for the safety assessment of bacteria with GRAS status . The moment has come when it became clear that this gap should be promptly filled and that only exact understanding the molecular base of interacting the microbes with eukaryotic cells can provide the foundation for effective practical developments in controlling the evolution of bacterial virulence and probiotic safety strategy, as well as the competent use of genetic technologies for monitoring the environment and managing infectious processes, thus avoiding the dramatic consequences of large-scale interventions in the micro and macro worlds.

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人类和动物肠道共生菌和益生菌与生物安全的现代挑战:问题与前景。
关于研究元古宙肠道微生物群的一系列数据的出现,极大地扩展了我们对共生生物在控制高等生物正常和病理的各种生理功能中的作用的认识。在肠道中,微生物的数量大大超过其他生态系统中微生物的数量,肠道微生物群的组成成分是诱导激活宿主免疫系统的持续刺激源。在生物医学研究实践中引入创新的高分辨率方法,包括多组学技术,带来的数据改变了我们对肠道共生菌的认识,包括在医学、农业和生物技术中广泛使用的具有 GRAS 地位的益生菌。这些细菌能够诱导宿主体内有利于细菌增殖和扩张的负面过程,这表明我们对它们的生命逻辑以及与真核细胞的相互作用机制明显缺乏了解。这就决定了迫切需要对益生菌进行全面研究,并制定益生菌安全评估的标准。Apriori 对广泛应用于医药、农业和生物技术领域的益生菌的特殊益处充满信心,这也决定了我们今天的控制系统中存在着严重的疏漏--缺乏对具有 GRAS 地位的益生菌进行安全评估的标准化研究。现在,我们已经清楚地认识到,应该尽快填补这一空白,只有准确了解微生物与真核细胞相互作用的分子基础,才能为有效控制细菌毒力的进化和益生菌安全战略的实际发展奠定基础,才能有效利用基因技术监测环境和管理感染过程,从而避免在微观和宏观世界进行大规模干预所造成的严重后果。
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来源期刊
Archives of Razi Institute
Archives of Razi Institute Veterinary-Veterinary (all)
CiteScore
1.50
自引率
0.00%
发文量
108
审稿时长
12 weeks
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