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永冻土微生物对体外单核细胞分化的影响。

The Influence of Permafrost Microorganisms on Monocytes Differentiation In Vitro.

机构信息

Federal Research Center Tyumen Research Center, Siberian Division of the Russian Academy of Sciences, Tyumen, Russia.

Tyumen State Medical University, Ministry of Health of the Russian Federation, Tyumen, Russia.

出版信息

Bull Exp Biol Med. 2023 Jul;175(3):362-366. doi: 10.1007/s10517-023-05868-1. Epub 2023 Aug 10.

Abstract

Metabolites of fossil microorganisms of dispersed watered rocks that have passed into a frozen state (Bacillus sp. strains 2/09 and 9/08, Bacillus megaterium 8-75) can modulate the differentiation activity of human peripheral blood monocytes into phenotypically different subpopulations when cultured in vitro for 7 days. This effect is largely determined by the type of metabolites that depends on the temperature of their production: cold (collected after bacterium culturing at 5°C), medium (at 22°C), and warm temperature (at 37°C). All three types of metabolites had a weak negative influence on the level of classical (CD14CD16) monocytes and stimulated the differentiation of intermediate (CD14CD16) and non-classical (CD14CD16) monocytes. The monocytes differentiation into the subpopulation of intermediate (CD14CD16) was stimulated to a greater extent by medium-temperature metabolites of the strain 8/75 and into the subpopulation of non-classical (CD14CD16) monocytes by warm metabolites of the strains 8/75 and 2/09 throughout culturing of mononuclear cells (days 1, 3, 7). Bearing in mind the anti-infection activity of intermediate and non-classical monocytes, we can consider strains 8/75 Bacillus megaterium and 2/09 Bacillus sp. promising for their in-depth testing.

摘要

分散水成岩中已进入冷冻状态的微生物化石代谢产物(2/09 株和 9/08 株芽孢杆菌、8-75 巨大芽孢杆菌),在体外培养 7 天时,可调节人外周血单核细胞的分化活性,使其分化为表型不同的亚群。这种作用在很大程度上取决于代谢产物的类型,这取决于它们产生的温度:冷(在 5°C 下培养细菌后收集)、中温(在 22°C)和暖温(在 37°C)。这三种代谢产物都对经典(CD14CD16)单核细胞的水平有微弱的负影响,并刺激中间(CD14CD16)和非经典(CD14CD16)单核细胞的分化。中间(CD14CD16)单核细胞的分化亚群,在菌株 8/75 的中温代谢产物的刺激下,而非经典(CD14CD16)单核细胞的分化亚群,在菌株 8/75 和 2/09 的暖温代谢产物的刺激下,在单核细胞培养的第 1、3、7 天,均被强烈刺激。考虑到中间和非经典单核细胞的抗感染活性,我们可以认为 8/75 株巨大芽孢杆菌和 2/09 株芽孢杆菌具有很大的潜力,值得进一步深入研究。

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