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研究笔记:挖掘鸡胚盘细胞的潜力,开创家禽科学与生物技术新领域——胚胎干细胞的建立及其向雪旺细胞样细胞谱系的分化能力

Research note: Harnessing the potential of chicken blastodermal cells as a new frontier in poultry science and biotechnology - Establishment of embryonic stem cells and their differentiability towards Schwann cell-like cell lineages.

作者信息

Duda Małgorzata, Maciak Patrycja, Tylko Grzegorz, Wartalski Kamil, Trzcińska Monika, Romek Marek, Samiec Marcin

机构信息

Department of Endocrinology, Faculty of Biology, Institute of Zoology and Biomedical Research, Jagiellonian University in Krakow, Krakow 30-387, Poland.

Department of Cell Biology and Imaging, Faculty of Biology, Institute of Zoology and Biomedical Research, Jagiellonian University in Krakow, Krakow 30-387, Poland.

出版信息

Poult Sci. 2025 Feb;104(2):104701. doi: 10.1016/j.psj.2024.104701. Epub 2024 Dec 19.

Abstract

The nervous system's regenerative potential has sparked interest in exploring novel approaches to generate Schwann cell-like cells (SC-LCs) from chicken blastoderm (B)-derived embryonic stem cells (B-ESCs). This study investigates the hypothesis that specific growth factors, when used during ex-ovo culture, can induce the differentiation of chicken B-ESCs into cells resembling Schwann cells (SCs). Blastodermal cells (BCs) were isolated from in vivo-fertilized eggs at stage X followed by 14-d proliferative culture (PRC) of B-ESCs and subsequent 14-d glial/neurolemmogenic differentiation culture (DFC). Western blot and immunofluorescence analyses were applied to identify ESC-related markers and SC-specific proteins. Ultimately, slender or triangular cells resembling early SCs, designated as SC-LCs, were generated. Pluripotency-related markers OCT4, SOX2, SSEA-4 and TRA-1-60 were detected in B-ESCs, while SC-specific markers such as GFAP and S-100β were identified in neurolemmogenically differentiated B-ESC derivatives (SC-LCs). The current study demonstrates, for the first time, the successful differentiation of chicken B-ESCs into SC-LCs through ex-ovo sequential culture. After PRC termination, B-ESCs exhibited pluripotent characteristics as shown by the presence of OCT4, SOX2, SSEA-4 and TRA-1-60 markers. Subsequent DFC led to the acquisition of SC-like morphology by B-ESCs, confirmed by the expression of SC-specific markers GFAP and S-100β in the resulting SC-LCs. These findings highlight the potential of B-ESCs as a valuable source for propagating SC-LCs, with implications for regenerative medicine and neural/glial tissue engineering applications. Further research exploring the functional attributes of B-ESC-derived SC-LCs is required to elucidate their therapeutic potential in nerve reconstruction/repair.

摘要

神经系统的再生潜力激发了人们探索从鸡胚盘(B)来源的胚胎干细胞(B-ESCs)生成雪旺细胞样细胞(SC-LCs)的新方法的兴趣。本研究探讨了这样一种假说:在体外培养过程中使用特定生长因子可诱导鸡B-ESCs分化为类似雪旺细胞(SCs)的细胞。从X期体内受精的鸡蛋中分离胚盘细胞(BCs),随后对B-ESCs进行14天的增殖培养(PRC),接着进行14天的神经胶质/神经膜生成分化培养(DFC)。应用蛋白质免疫印迹和免疫荧光分析来鉴定ESC相关标志物和SC特异性蛋白。最终,生成了类似早期SCs的细长或三角形细胞,命名为SC-LCs。在B-ESCs中检测到多能性相关标志物OCT4、SOX2、SSEA-4和TRA-1-60,而在神经膜生成分化的B-ESC衍生物(SC-LCs)中鉴定出了SC特异性标志物如GFAP和S-100β。本研究首次证明通过体外顺序培养成功地将鸡B-ESCs分化为SC-LCs。PRC结束后,B-ESCs表现出多能性特征,如OCT4、SOX2、SSEA-4和TRA-1-60标志物的存在。随后的DFC使B-ESCs获得了类似SC的形态,这通过所得SC-LCs中SC特异性标志物GFAP和S-100β的表达得到证实。这些发现突出了B-ESCs作为扩增SC-LCs的宝贵来源的潜力,对再生医学和神经/胶质组织工程应用具有重要意义。需要进一步研究探索B-ESC来源的SC-LCs的功能特性,以阐明它们在神经重建/修复中的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4f3/11729637/ea0e35bb11f5/gr1.jpg

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