Extracellular vesicles are involved in the paracrine communication between epithelial cells in different regions of the domestic cat epididymis†.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-11-11 DOI:10.1093/biolre/ioae129
Danielle M Sosnicki, Alexander J Travis, Pierre Comizzoli
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Abstract

Sperm maturation depends on exposure to microenvironments within the different segments of the epididymis, but mechanisms underlying how these microenvironments are produced or maintained are not well understood. We hypothesized that epididymal extracellular vesicles could play a role in the process of maintaining microenvironments in different regions of the epididymis. Specifically, we tested whether the extracellular vesicles from different regions of the epididymis can ensure paracrine communication between cells in different segments. Domestic cat tissues were used to develop a reproducible in vitro culture system for corpus epididymis explants that were then exposed to extracellular vesicles collected from upstream (i.e., caput) segments. Impacts of different culture or exposure conditions were compared by analyzing the morphology, apoptosis, transcriptional activity, and gene expression in the explants. Here, we report the development of the first in vitro culture system for epididymal tissue explants in the domestic cat model. Using this system, we found that extracellular vesicles from the caput segment have a significant effect on the transcriptional profile of tissue from the corpus segment (1233 differentially expressed genes due to extracellular vesicle supplementation). Of note, expressions of genes associated with regulation of epithelial cell differentiation and cytokine signaling in the epididymis were influenced by the presence of extracellular vesicles. Together, our findings comprise the first report in any species of paracrine control of segmental gene regulation by epididymal extracellular vesicles. These results contribute to a better understanding of epididymis biology and could lead to strategies to enhance or suppress male fertility.

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细胞外囊泡参与了家猫附睾不同区域上皮细胞之间的旁分泌通讯。
精子的成熟有赖于附睾不同区段内特定微环境的暴露,但这些微环境是如何产生或维持的相关机制却不甚明了。我们假设附睾细胞外囊泡(EVs)可能在附睾不同区域微环境的维持过程中发挥作用。具体来说,我们测试了来自附睾不同区域的EVs是否可以作为不同节段细胞之间的一种旁分泌性交流形式。我们利用家猫组织开发了一种可重复的体外培养系统,用于将附睾海绵体外植体暴露于从上游(即睾头)节段收集的EVs。通过分析外植体的形态、凋亡、转录活性和基因表达,比较了不同培养或暴露条件的影响。在此,我们报告了首个以家猫为模型的附睾组织外植体体外培养系统的开发情况。利用该系统,我们发现来自绒毛段的 EV 对来自冠状段组织的转录谱有显著影响(EV 补充导致 1233 个差异表达基因)。值得注意的是,附睾中与上皮细胞分化调控和细胞因子信号转导相关的基因的表达受到EVs存在的调控。总之,我们的研究结果是在任何物种中首次报道附睾EV对节段基因调控的旁分泌控制。这些结果有助于人们更好地了解附睾生物学,并可能带来提高或抑制男性生育能力的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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