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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Early Signs of Gut Microbiome Aging: Biomarkers of Inflammation, Metabolism, and Macromolecular Damage in Young Adulthood
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Early Signs of Gut Microbiome Aging: Biomarkers of Inflammation, Metabolism, and Macromolecular Damage in Young Adulthood

机译:肠道微生物组老化的早期迹象:年轻成年期炎症,新陈代谢和大分子损伤的生物标志物

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Emerging links between gut microbiota and diseases of aging point to possible shared immune, metabolic, and cellular damage mechanisms, operating long before diseases manifest. We conducted 16S rRNA sequencing of fecal samples collected from a subsample (n = 668) of Add Health Wave V, a nationally representative longitudinal study of adults aged 32-42. An overlapping subsample (n = 345) included whole-blood RNA-seq. We examined associations between fecal taxonomic abundances and dried blood spot-based markers of lipid and glucose homeostasis and C-reactive protein (measured in Wave IV), as well as gene expression markers of inflammation, cellular damage, immune cell composition, and transcriptomic age (measured in Wave V), using Bayesian hierarchical models adjusted for potential confounders. We additionally estimated a co-abundance network between inflammation-related genes and bacterial taxa using penalized Gaussian graphical models. Strong and consistent microbiota associations emerged for HbA1c, glucose, C-reactive protein, and principal components of genes upregulated in inflammation, DNA repair, and reactive oxygen species, with Streptococcus infantis, Pseudomonas spp., and Peptoniphilus as major players for each. This pattern was largely echoed (though attenuated) for immunological cell composition gene sets, and only Serratia varied meaningfully by transcriptomic age. Network co-abundance indicated relationships between Prevotella sp., Bacteroides sp., and Ruminococcus sp. and gut immune/metabolic regulatory activity, and Ruminococcus sp, Dialister, and Butyrivibrio crossotus with balance between Th1 and Th2 inflammation. In conclusion, many common associations between microbiota and major physiologic aging mechanisms are evident in early-mid adulthood and suggest avenues for early detection and prevention of accelerated aging.
机译:肠道微生物肿瘤与老化点疾病之间的新兴联系,以可能的共用免疫,代谢和细胞损伤机制,在疾病表现前长时间运行。我们进行了16S rRNA测序来自Add Health V的子样本(n = 668)的粪便样本,该研究是32-42岁的全国代表性的纵向研究。重叠的子样本(n = 345)包括全血RNA-SEQ。我们检查了粪便分类物质丰富和干燥血液点血液点稳态和C反应蛋白的干燥血液点状物质(在波IV中测量)的关联,以及炎症的基因表达标志物,细胞损伤,免疫细胞组合物和转录组合(在Wave V)中测量,使用贝叶斯分层模型调整潜在混杂。我们估计使用惩罚的高斯图形模型估计炎症相关基因和细菌分类群之间的共同丰富网络。 HBA1C,葡萄糖,C-反应性蛋白质和基因的主要成分具有强大且一致的微生物群关联,其在炎症,DNA修复和活性氧物质中上调,具有链球菌,假霉菌SPP,以及PEPTONIPHILUS作为各大球员。对于免疫细胞组合物基因集,这种模式大大回显(虽然衰减),并且仅通过转录组年龄才有含义变化的Serratia。网络共同丰富显示Pvotellla Sp之间的关系。,Bacteroides sp。和喇叭杆菌sp。和肠道免疫/代谢调节活动,以及致尖端,拨号和抑制抑制性与TH1和TH2炎症之间的平衡。总之,微生物群和主要生理衰老机制之间的许多常见关联在早期的成年期明显明显,并提出了早期检测和预防加速老化的途径。

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