在lps诱导的附睾炎中,质子分泌细胞是炎症和精子功能障碍的驱动因素。

IF 5.1 Q2 CELL BIOLOGY
A A S Da Silva, F Barrachina, M C Avenatti, M L Elizagaray, I Bastepe, E Sasso-Cerri, M A Battistone
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引用次数: 0

摘要

各种器官中的质子分泌细胞,如肾脏和附睾,调节pH平衡,维持细胞稳态,并支持关键的生理过程。最近,这些特化细胞已成为粘膜免疫的关键贡献者,协调免疫激活。附睾炎是一种严重影响男性生育能力的炎症性疾病,通常是由于缺乏诊断和治疗。本研究探讨了区域特异性附睾质子分泌透明细胞(CCs)在lps诱导的小鼠附睾炎中形成免疫反应的作用。我们发现,在LPS的作用下,CCs迅速转变为促炎表型,其特征是细胞因子和趋化因子的上调,以及与精子成熟有关的基因的下调。cc的形态学变化,包括附睾不同节段的顶端气泡增加和形状改变,表明它们在免疫应答中起积极作用。此外,单核吞噬细胞(MPs)在LPS刺激后减少了其在附睾近端发光的投射。这种细菌抗原引发附睾远端树突状细胞迁移和中性粒细胞浸润。这些免疫景观的改变导致了上皮损伤和精子成熟受损,正如在附睾注射LPS后精子活力下降所证明的那样。我们的研究结果表明,质子分泌细胞是附睾的免疫守门人,启动免疫反应并破坏精子成熟。本研究增强了对上皮免疫调节的理解,将有助于为附睾炎和男性不育开发新的诊断和治疗策略。此外,对cc介导的免疫反应的了解可以为男性避孕新方法的开发提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proton-Secreting Cells as Drivers of Inflammation and Sperm Dysfunction in LPS-Induced Epididymitis.

Proton-secreting cells in various organs, such as the kidney and epididymis, regulate pH balance, maintain cellular homeostasis, and support key physiological processes. More recently, these specialized cells have emerged as key contributors to mucosal immunity, orchestrating immune activation. Epididymitis is an inflammatory condition that significantly impacts male fertility, often due to a lack of diagnosis and treatment. This study investigates the role of region-specific epididymal proton-secreting clear cells (CCs) in shaping immune responses during LPS-induced epididymitis in mice. We found that in response to lipopolysaccharide (LPS), CCs rapidly shifted to a proinflammatory phenotype, marked by the upregulation of cytokines and chemokines, alongside the downregulation of genes involved in sperm maturation. Morphological changes in CCs, including increased apical blebs and altered shape across different epididymal segments, suggest their active role in immune responses. Moreover, mononuclear phagocytes reduced their luminal-reaching projections in the proximal epididymis after the LPS challenge. This bacterial antigen triggered dendritic cell migration and neutrophil infiltration in the distal epididymis. These immune landscape alterations contributed to epithelial damage and impaired sperm maturation, as evidenced by decreased sperm motility following LPS intravasal-epididymal injection. Our findings indicate that proton-secreting cells are immune gatekeepers in the epididymis, initiating immune responses and disrupting sperm maturation. This research enhances the understanding of epithelial immunoregulation and will help to develop novel diagnostic and therapeutic strategies for epididymitis and male infertility. Furthermore, insights into CC-mediated immune responses could inform the development of new approaches for male contraception.

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来源期刊
CiteScore
5.70
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