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脂多糖灌注乳区相邻的乳腺区乳汁分泌不足与免疫基因的转录变化有关。

Hypogalactia in mammary quarters adjacent to lipopolysaccharide-infused quarters is associated with transcriptional changes in immune genes.

机构信息

Division of Animal Sciences, University of Missouri, Columbia 65211.

Department of Animal and Veterinary Sciences, University of Vermont, Burlington 05405.

出版信息

J Dairy Sci. 2021 Aug;104(8):9276-9286. doi: 10.3168/jds.2020-20048. Epub 2021 May 28.

Abstract

Infusion of lipopolysaccharides (LPS) into a mammary gland can provoke inflammatory responses and impair lactation in both the infused gland and neighboring glands. To gain insight into the mechanisms controlling the spatiotemporal response to localized mastitis in lactating dairy cows, we performed RNA sequencing on mammary tissue from quarters infused with LPS, neighboring quarters in the same animals, and control quarters from untreated animals at 3 and 12 h postinfusion. Differences in gene expression were annotated to Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways. Comparing mammary transcriptomes from all 3 treatments revealed 3,088 and 1,644 differentially expressed (DE) genes at 3 and 12 h, respectively. Of these genes, >95% were DE only in LPS-infused quarters and represented classical responses to LPS: inflammation, apoptosis, tissue remodeling, and altered cell signaling and metabolism. Although relatively few genes were DE in neighboring quarters (56 at 3 h; 74 at 12 h), these represented several common pathways. At 3 h, tumor necrosis factor (TNF), nuclear factor-κB, and nucleotide-binding and oligomerization domain (NOD)-like receptor signaling pathways were identified by the upregulation of anti-inflammatory (NFKBIA, TNFAIP3) and cell adhesion molecule (VCAM1, ICAM1) genes in neighboring glands. Additionally, at 12 h, several genes linked to 1-carbon and serine metabolism were upregulated. Some responses were also regulated over time. The proinflammatory response in LPS-infused glands diminished between 3 and 12 h, indicating tight control over transcription to re-establish homeostasis. In contrast, 2 glucocorticoid-responsive genes, FKBP5 and ZBTB16, were among the top DE genes upregulated in neighboring quarters at both time points, indicating potential regulation by glucocorticoids. We conclude that a transient, systemic immune response was sufficient to disrupt lactation in neighboring glands. This response may be mediated directly by proinflammatory factors from the LPS-infused gland or indirectly by secondary factors released in response to systemic inflammatory signals.

摘要

向乳腺中注入脂多糖(LPS)会引发受注乳房产乳组织和相邻组织的炎症反应并损害泌乳功能。为了深入了解控制泌乳奶牛局灶性乳腺炎的时空反应的机制,我们对 LPS 注乳的乳房产乳组织、同一动物的相邻乳房产乳组织和未处理对照乳房产乳组织进行了 RNA 测序,在注乳后 3 小时和 12 小时进行分析。将基因表达差异注释到京都基因与基因组百科全书(KEGG)通路中。比较所有 3 种处理方式的乳腺转录组,分别在 3 小时和 12 小时发现 3088 个和 1644 个差异表达(DE)基因。这些基因中,超过 95%的基因仅在 LPS 注乳乳房产乳组织中 DE,代表了 LPS 的经典反应:炎症、细胞凋亡、组织重塑以及改变的细胞信号和代谢。虽然在相邻乳房产乳组织中 DE 的基因相对较少(3 小时时为 56 个,12 小时时为 74 个),但这些基因代表了几个常见通路。在 3 小时时,通过上调相邻腺体中抗炎基因(NFKBIA、TNFAIP3)和细胞黏附分子(VCAM1、ICAM1),鉴定出肿瘤坏死因子(TNF)、核因子-κB 和核苷酸结合寡聚化结构域(NOD)样受体信号通路。此外,在 12 小时时,一些与 1 碳和丝氨酸代谢相关的基因上调。一些反应也随时间进行了调控。在 LPS 注乳乳房产乳组织中,促炎反应在 3 小时至 12 小时之间减弱,表明转录受到严密调控以重新建立平衡。相反,在两个时间点,糖皮质激素反应基因 FKBP5 和 ZBTB16 是上调的顶级 DE 基因之一,表明其可能受到糖皮质激素的调节。我们得出的结论是,短暂的全身免疫反应足以破坏相邻乳房产乳组织的泌乳功能。这种反应可能直接由 LPS 注乳乳房产乳组织中的促炎因子介导,也可能间接由对全身炎症信号的反应中释放的次级因子介导。

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