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新的外泌体调控基因标志物参与猪颗粒细胞的黏附、迁移和增殖。

New Gene Markers of Exosomal Regulation Are Involved in Porcine Granulosa Cell Adhesion, Migration, and Proliferation.

机构信息

Department of Diagnostics and Clinical Sciences, Institute of Veterinary Medicine, Nicolaus Copernicus University in Torun, 87-100 Torun, Poland.

Department of Anatomy, Poznan University of Medical Sciences, 61-701 Poznan, Poland.

出版信息

Int J Mol Sci. 2023 Jul 24;24(14):11873. doi: 10.3390/ijms241411873.

Abstract

Exosomal regulation is intimately involved in key cellular processes, such as migration, proliferation, and adhesion. By participating in the regulation of basic mechanisms, extracellular vesicles are important in intercellular signaling and the functioning of the mammalian reproductive system. The complexity of intercellular interactions in the ovarian follicle is also based on multilevel intercellular signaling, including the mechanisms involving cadherins, integrins, and the extracellular matrix. The processes in the ovary leading to the formation of a fertilization-ready oocyte are extremely complex at the molecular level and depend on the oocyte's ongoing relationship with granulosa cells. An analysis of gene expression from material obtained from a primary in vitro culture of porcine granulosa cells was employed using microarray technology. Genes with the highest expression (LIPG, HSD3B1, CLIP4, LOX, ANKRD1, FMOD, SHAS2, TAGLN, ITGA8, MXRA5, and NEXN) and the lowest expression levels (DAPL1, HSD17B1, SNX31, FST, NEBL, CXCL10, RGS2, MAL2, IHH, and TRIB2) were selected for further analysis. The gene expression results obtained from the microarrays were validated using quantitative RT-qPCR. Exosomes may play important roles regarding intercellular signaling between granulosa cells. Therefore, exosomes may have significant applications in regenerative medicine, targeted therapy, and assisted reproduction technologies.

摘要

外泌体调节密切参与关键的细胞过程,如迁移、增殖和黏附。通过参与基本机制的调节,细胞外囊泡在细胞间信号传递和哺乳动物生殖系统的功能中起着重要作用。卵泡中细胞间相互作用的复杂性也基于多层次的细胞间信号传递,包括涉及钙黏蛋白、整合素和细胞外基质的机制。在卵巢中导致形成受精准备好的卵母细胞的过程在分子水平上极其复杂,并且依赖于卵母细胞与颗粒细胞的持续关系。使用微阵列技术分析了从猪颗粒细胞原代体外培养物中获得的材料的基因表达。选择表达水平最高(LIPG、HSD3B1、CLIP4、LOX、ANKRD1、FMOD、SHAS2、TAGLN、ITGA8、MXRA5 和 NEXN)和表达水平最低(DAPL1、HSD17B1、SNX31、FST、NEBL、CXCL10、RGS2、MAL2、IHH 和 TRIB2)的基因进行进一步分析。使用定量 RT-qPCR 验证了微阵列获得的基因表达结果。外泌体可能在颗粒细胞之间的细胞间信号传递中发挥重要作用。因此,外泌体在再生医学、靶向治疗和辅助生殖技术中可能具有重要应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fd4/10380331/8ef151f6b538/ijms-24-11873-g001.jpg

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