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乳腺炎免疫发病机制中的细胞因子相互作用与趋化因子失调:来自热带萨希瓦尔奶牛乳体细胞转录组分析的见解

Cytokine interactions and chemokine dysregulations in mastitis immunopathogenesis: insights from transcriptomic profiling of milk somatic cells in tropical Sahiwal () cows.

作者信息

Satheesan Lija, Dang Ajay Kumar, Alex Rani

机构信息

Lactation and Immuno-Physiology Laboratory, Animal Physiology Division, Indian Council of Agricultural Research (ICAR)-National Dairy Research Institute, Karnal, Haryana, India.

Division of Animal Genetics and Breeding, Indian Council of Agricultural Research (ICAR)-National Dairy Research Institute, Karnal, Haryana, India.

出版信息

Front Immunol. 2025 Mar 24;16:1554341. doi: 10.3389/fimmu.2025.1554341. eCollection 2025.

Abstract

INTRODUCTION

Bovine mastitis causes a significant loss to the dairy industry by affecting the quantity and quality of milk. Addressing this challenge, the present study will leverage advanced omics techniques for early mastitis detection in early lactating Sahiwal cows (). This was the first differential transcriptomic study investigating the alterations in gene expression in milk somatic cells during the progression of naturally occurring mastitis in indigenous Sahiwal cows.

METHODS

Cows were grouped into healthy (H), subclinical mastitis (SCM) and clinical mastitis (CM) groups by thoroughly screening them using the California Mastitis Test (CMT) and milk somatic cell counts (SCC). This was followed by detailed milk composition analysis, differential leukocyte counts (DLC), and microbiological culture.

RESULTS

The differential gene expression of milk SCs through transcriptome profiling identified 83 and 76, up-regulated and 157 and 192 down-regulated genes in CM vs H and SCM vs H groups (log2 fold change ≥1 and ≤-1, p < 0.05) respectively. Pathway analysis revealed that upregulated genes were enriched in pathways such as phagosome activity, IL-17 signalling, Th1 and Th2 cell differentiation, while downregulated genes were linked to RIG-I-like receptor signalling, NK cell cytotoxicity, and Toll-like receptor signalling and Cytokine-cytokine receptor interactions. Notably, the study underscores the roles of chemokines CCL8, CCL2, and CXCL10 in immune cell recruitment during mastitis, where their downregulation suggests impaired mammary immune defense that governs Chemokine signalling pathways. Further, the comparative analysis with the previously available milk SCs proteome data identified the downregulation of chemokines signalling pathways during mastitis.

DISCUSSION

Overall, this research enhances our understanding of mastitis pathogenesis and emphasizes that these targeted chemokines may boost mammary resilience through immunomodulation, genetic selection and genome editing or by utilising adjuvants in vaccine development that restore chemokine signalling offers a potential strategy to improve mastitis resistance in dairy cattle.

摘要

引言

牛乳腺炎会影响牛奶的产量和质量,给乳制品行业造成重大损失。为应对这一挑战,本研究将利用先进的组学技术对早期泌乳的萨希瓦尔奶牛进行乳腺炎早期检测。这是第一项关于本土萨希瓦尔奶牛自然发生乳腺炎过程中乳体细胞基因表达变化的差异转录组学研究。

方法

通过使用加利福尼亚乳腺炎检测法(CMT)和乳体细胞计数(SCC)对奶牛进行全面筛查,将其分为健康组(H)、亚临床乳腺炎组(SCM)和临床乳腺炎组(CM)。随后进行详细的乳汁成分分析、差异白细胞计数(DLC)和微生物培养。

结果

通过转录组分析乳体细胞的差异基因表达,在CM与H组以及SCM与H组中分别鉴定出83个和76个上调基因,以及157个和192个下调基因(log2倍数变化≥1且≤ -1,p < 0.05)。通路分析显示,上调基因富集于吞噬体活性、IL-17信号传导、Th1和Th2细胞分化等通路,而下调基因与RIG-I样受体信号传导、NK细胞细胞毒性、Toll样受体信号传导以及细胞因子-细胞因子受体相互作用相关。值得注意的是,该研究强调了趋化因子CCL8、CCL2和CXCL10在乳腺炎期间免疫细胞募集中的作用,它们的下调表明乳腺免疫防御受损,而乳腺免疫防御受趋化因子信号通路调控。此外,与先前可用的乳体细胞蛋白质组数据进行比较分析,确定了乳腺炎期间趋化因子信号通路的下调。

讨论

总体而言,本研究增进了我们对乳腺炎发病机制的理解,并强调这些靶向趋化因子可能通过免疫调节、基因选择和基因组编辑,或在疫苗开发中利用恢复趋化因子信号传导的佐剂来增强乳腺弹性,从而为提高奶牛乳腺炎抗性提供了一种潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef9/11973270/73d2896b788f/fimmu-16-1554341-g001.jpg

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