多组学整合和免疫分析鉴定可能的因果网络导致子宫微生物群落失调的奶牛发展子宫炎。

IF 4.9 Q1 MICROBIOLOGY
S Casaro, J G Prim, T D Gonzalez, F Cunha, A C M Silva, H Yu, R S Bisinotto, R C Chebel, J E P Santos, C D Nelson, S J Jeon, R C Bicalho, J P Driver, Klibs N Galvão
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引用次数: 0

摘要

背景:奶牛发展子宫炎经历子宫微生物群失调,其中机会致病菌超过子宫共生菌。有效的免疫反应对维持子宫健康至关重要。尽管如此,围产期奶牛经历免疫失调,这似乎加剧了准备过度条件。本研究应用贝叶斯网络研究孕妇产前体重(BW)、体重损失、产前产后全身免疫谱和血浆代谢组、产后子宫代谢组和微生物组之间的定向相关性。结果:贝叶斯网络分析显示,孕前体重、孕前体重损失与分娩时血浆脂肪酸呈正向相关,表明体重较重的奶牛能量平衡低于体重较轻的奶牛。孕前体重、孕前全身白细胞死亡、免疫激活、全身炎症以及与孕前和分娩时氧化应激相关的代谢组学变化之间存在正向相关。免疫激活和全身性炎症的特征是循环多形核细胞(PMN)准备比例增加,分娩时b细胞激活,分娩时白细胞介素-8准备和分娩时白细胞介素-1β增加。这些免疫变化与分娩时血浆脂肪酸与产后PMN外渗呈正向相关,而产后PMN外渗与子宫代谢物与组织损伤呈正向相关。这些结果表明,过度的PMN迁移到子宫导致过度的子宫内膜损伤。上述变化与乳牛中发生子宫炎的梭杆菌、卟啉单胞菌和拟杆菌呈正向相关,表明过度的组织损伤可能破坏物理屏障或增加细菌生长的底物可用性。结论:这项工作为产前体重如何影响围产期免疫和代谢谱提供了强有力的机制假设,这可能导致子宫机会性病原体过度生长和子宫炎的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-omics integration and immune profiling identify possible causal networks leading to uterine microbiome dysbiosis in dairy cows that develop metritis.

Background: Cows that develop metritis experience dysbiosis of their uterine microbiome, where opportunistic pathogens overtake uterine commensals. An effective immune response is critical for maintaining uterine health. Nonetheless, periparturient cows experience immune dysregulation, which seems to be intensified by prepartum over-condition. Herein, Bayesian networks were applied to investigate the directional correlations between prepartum body weight (BW), BW loss, pre- and postpartum systemic immune profiling and plasma metabolome, and postpartum uterine metabolome and microbiome.

Results: The Bayesian network analysis showed a positive directional correlation between prepartum BW, prepartum BW loss, and plasma fatty acids at parturition, suggesting that heavier cows were in lower energy balance than lighter cows. There was a positive directional correlation between prepartum BW, prepartum systemic leukocyte death, immune activation, systemic inflammation, and metabolomic changes associated with oxidative stress prepartum and at parturition. Immune activation and systemic inflammation were characterized by increased proportion of circulating polymorphonuclear cells (PMN) prepartum, B-cell activation at parturition, interleukin-8 prepartum and at parturition, and interleukin-1β at parturition. These immune changes together with plasma fatty acids at parturition had a positive directional correlation with PMN extravasation postpartum, which had a positive directional correlation with uterine metabolites associated with tissue damage. These results suggest that excessive PMN migration to the uterus leads to excessive endometrial damage. The aforementioned changes had a positive directional correlation with Fusobacterium, Porphyromonas, and Bacteroides in cows that developed metritis, suggesting that excessive tissue damage may disrupt physical barriers or increase substrate availability for bacterial growth.

Conclusions: This work provides robust mechanistic hypotheses for how prepartum BW may impact peripartum immune and metabolic profiles, which may lead to uterine opportunistic pathogens overgrowth and metritis development.

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来源期刊
CiteScore
7.20
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