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From anaerobes to aerointolerant prokaryotes

机译:从Anaerobes到Aerotolerant原核生物

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An increasing number of scientists are turning to the microbiota to understand and/or explain the origin of various human metabolic or inflammatory diseases. Oxygen-intolerant bacteria represent the major population of the human intestinal microbiota. Their isolation is often difficult or even fastidious. The number of studies showing their beneficial role in human health is growing exponentially.Faecalibacterium prausnitziiandAkkermansia muciniphilaare abundantly represented in healthy intestinal microbiota and their imbalance is positively correlated with inflammatory diseases and metabolic disorders (obesity, diabetes, cancers). Their use as probiotics presents very promising results in restoring the balance of microbial flora but also in the treatment of certain pathological conditions. The Christensenellaceae family has recently emerged as a hereditary taxon and studies have shown that its abundance is positively correlated with leanness and controls obesity in recipient mice. Here, we report the different culture strategies and techniques used for their isolation; the role of antioxidants in the survival of these oxygen-sensitive species in clinical sample and their maintenance in culture isolates.
机译:越来越多的科学家正在转向微生物,以了解和/或解释各种人类代谢或炎症疾病的起源。氧 - 不宽容细菌代表人肠道微生物群的主要人群。他们的孤立往往是困难甚至挑剔的。显示其在人类健康中的有益作用的研究数量正在呈指数增长。帕蒽醌在健康肠道微生物群中大量代表的帕蒽尼替氏菌,与其不平衡呈正相关(肥胖,糖尿病,癌症)与炎症性疾病正相关。它们作为益生菌的用途呈现出恢复微生物菌群的平衡而且在某些病理条件的治疗中呈现非常有前途的结果。克里斯滕群岛家族最近被出现为遗传分类,研究表明,其丰富与瘦弱和控制受体小鼠的肥胖是肯定的。在这里,我们报告了用于其孤立的不同文化策略和技术;抗氧化剂在临床样本中这些氧敏感物种的存活中的作用及其在培养物中的维持。

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