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The Importance of Being Eubiotic

机译:优生的重要性

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The human gut microbiota plays a very important part in the host’s life, being closely interconnected to its health. Upon birth, a well-balanced bacterial colonization of the infant gut has a profound impact on programming short and long term metabolic and immune homeostasis. Despite the fact that most of the causality is not yet fully understood, shift in the commensal gut microbial communities with implication to disease is often referred to as dysbiosis. Infants who tend to have a delayed and/or aberrant initial colonization with reduced microbial diversity and richness, whether induced by Caesarean section, premature delivery, or excessive use of perinatal antibiotics, could be more at risk for chronic health conditions associated with metabolic and immune disorders. Exploration of the long-term effects of this abnormal microbial number and diversity is critically needed in order to intervene early in the aberrant intestinal composition and restore numerous homeostatic systems (e.g. energy balance, glucose metabolism and immunity). Dietary manipulation of the gut microbiota through the so called ‘gut microbiota biomodulators’ (probiotics, prebiotics, synbiotics and postbiotics) represents a promising preventive avenue. This review aims to highlight factors that influence the gut microbiota soon after birth and discusses the potential gut-driven pathophysiologic pathways involved in intestinal dysbiosis and the gut microbiota-modulating effects of probiotics early in life.
机译:肠道菌群在宿主的生活中起着非常重要的作用,与宿主的健康息息相关。出生后,均衡的婴儿肠道细菌定植对短期和长期代谢和免疫稳态的编程有深远影响。尽管大多数因果关系尚未得到充分认识,但共病肠道微生物群落的变化与疾病有关,通常被称为营养不良。往往由于剖腹产,过早分娩或围产期抗生素过多而导致延迟和/或异常初始定植,微生物多样性和丰富度降低的婴儿,患代谢和免疫相关慢性病的风险更大。失调。为了尽早介入异常的肠道组成并恢复许多体内平衡系统(例如能量平衡,葡萄糖代谢和免疫力),迫切需要探索这种异常微生物数量和多样性的长期影响。通过所谓的“肠道微生物群生物调节剂”(益生菌,益生元,合生元和后生生物)对肠道微生物群进行饮食控制代表了一种有希望的预防途径。这篇综述旨在突出出生后不久会影响肠道菌群的因素,并讨论与肠道营养不良有关的潜在肠道驱动的病理生理途径以及生命早期益生菌对肠道菌群的调节作用。

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