The First 1000 Days: Assembly of the Neonatal Microbiome and Its Impact on Health Outcomes.

Joann Romano-Keeler, Jun Sun
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Abstract

Early life microbial colonization is critical for the development of the immune system, postnatal growth, and long-term health and disease. The dynamic and nascent microbiomes of children are highly individualized and are characterized by low bacterial diversity. Any disruptions in microbial colonization can contribute to shifts in normal microbial colonization that persist past the first 1000 days of life and result in intestinal dysbiosis. Here, we focus on microbiome-host interactions during fetal, newborn, and infant microbiome development. We summarize the roles of bacterial communities in fetal development and adverse health outcomes due to dysbiosis. We also discuss how internal and external factors program the microbiome's metabolic machinery as it evolves into an adult-like microbiome. Finally, we discuss the limits of current studies and future directions. Studies on the early-life microbiome will be critical for a better understanding of childhood health and diseases, as well as restorative methods for the prevention and treatment of diseases in adulthood.

Abstract Image

最初的 1000 天:新生儿微生物组的组合及其对健康结果的影响。
生命早期的微生物定植对免疫系统的发育、出生后的生长以及长期的健康和疾病至关重要。儿童的微生物组是动态的、新生的,具有高度个性化和细菌多样性低的特点。微生物定植的任何中断都会导致正常微生物定植的改变,这种改变会持续到出生后的 1000 天,并导致肠道菌群失调。在此,我们将重点关注胎儿、新生儿和婴儿微生物组发育过程中微生物组与宿主的相互作用。我们总结了细菌群落在胎儿发育和因菌群失调导致的不良健康后果中的作用。我们还讨论了当微生物组进化为类似成人的微生物组时,内部和外部因素如何对其代谢机制进行编程。最后,我们将讨论当前研究的局限性和未来的发展方向。对生命早期微生物组的研究对于更好地了解儿童健康和疾病以及预防和治疗成年期疾病的恢复性方法至关重要。
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