通过 T3 将小鼠胚胎成纤维细胞重编程为诱导多能干细胞。

Q4 Biochemistry, Genetics and Molecular Biology Methods in molecular biology Pub Date : 2025-01-01 DOI:10.1007/978-1-0716-4252-8_8
Ana Montero-Pedrazuela, Silvia Constanza Contreras-Jurado
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引用次数: 0

摘要

体细胞可以通过一种叫做重编程的技术转化为诱导多能干细胞(iPSC)。这一过程包括通过逆转录病毒上清液向细胞引入山中因子(Oct4、Sox2、Klf4和c-Myc)。本章概述了使用三碘-L-甲硫氨酸(T3)激素对小鼠胚胎成纤维细胞(MEFs)进行重编程的方案,以提高 iPSCs 的生成。报告还介绍了如何通过对碱性磷酸酶活性进行菌落染色来分析这些iPSC,碱性磷酸酶是识别多能胚胎干细胞的标准标记。要进一步研究 iPSC,必须对单个菌落进行筛选和扩增,并通过使用定量实时 PCR 分析基因表达谱来测量多能性基因的内源性表达,从而检验多能性。将 T3 整合到重编程方法中可能会大大改善功能性 iPSCs 的生产。这一进展将为细胞可塑性、疾病建模和再生疗法的研究开辟新的途径。
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Mouse Embryonic Fibroblasts Reprogramming to Induced Pluripotent Stem Cells by T3.

Somatic cells can be transformed into induced pluripotent stem cells (iPSCs) using a technique called reprogramming. This process involves introducing Yamanaka factors (Oct4, Sox2, Klf4, and c-Myc) to the cells through retroviral supernatants. This chapter outlines a protocol for reprogramming mouse embryonic fibroblasts (MEFs) using the hormone triiodo-L-thyronine (T3) to enhance the generation of iPSCs. It also describes how to analyze these iPSCs by colony staining for alkaline phosphatase activity, a standard marker for identifying pluripotent embryonic stem cells. To further study iPSCs, individual colonies must be selected and expanded, and pluripotency is examined by analyzing gene expression profiles using quantitative real-time PCR to measure the endogenous expression of pluripotency genes. Integrating T3 into reprogramming methods may significantly improve the production of functional iPSCs. This advancement could open new avenues for research in cell plasticity, disease modeling, and regenerative therapies.

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来源期刊
Methods in molecular biology
Methods in molecular biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
2.00
自引率
0.00%
发文量
3536
期刊介绍: For over 20 years, biological scientists have come to rely on the research protocols and methodologies in the critically acclaimed Methods in Molecular Biology series. The series was the first to introduce the step-by-step protocols approach that has become the standard in all biomedical protocol publishing. Each protocol is provided in readily-reproducible step-by-step fashion, opening with an introductory overview, a list of the materials and reagents needed to complete the experiment, and followed by a detailed procedure that is supported with a helpful notes section offering tips and tricks of the trade as well as troubleshooting advice.
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