Department of Stem Cell and Regenerative Biotechnology, Institute of Advanced Regenerative Science, Konkuk University, Seoul 05029, Korea.
Int J Mol Sci. 2021 Jan 15;22(2):823. doi: 10.3390/ijms22020823.
Mechanistic understanding of germ cell formation at a genome-scale level can aid in developing novel therapeutic strategies for infertility. Germ cell formation is a complex process that is regulated by various mechanisms, including epigenetic regulation, germ cell-specific gene transcription, and meiosis. Gonads contain a limited number of germ cells at various stages of differentiation. Hence, genome-scale analysis of germ cells at the single-cell level is challenging. Conventional genome-scale approaches cannot delineate the landscape of genomic, transcriptomic, and epigenomic diversity or heterogeneity in the differentiating germ cells of gonads. Recent advances in single-cell genomic techniques along with single-cell isolation methods, such as microfluidics and fluorescence-activated cell sorting, have helped elucidate the mechanisms underlying germ cell development and reproductive disorders in humans. In this review, the history of single-cell transcriptomic analysis and their technical advantages over the conventional methods have been discussed. Additionally, recent applications of single-cell transcriptomic analysis for analyzing germ cells have been summarized.
在基因组水平上对生殖细胞形成的机制的理解可以帮助开发治疗不孕不育的新的治疗策略。生殖细胞的形成是一个复杂的过程,受到多种机制的调节,包括表观遗传调控、生殖细胞特异性基因转录和减数分裂。性腺中含有处于不同分化阶段的有限数量的生殖细胞。因此,在单细胞水平上对生殖细胞进行全基因组规模的分析具有挑战性。传统的全基因组方法无法描绘基因组、转录组和表观基因组在性腺分化生殖细胞中的多样性或异质性。单细胞基因组技术的最新进展以及单细胞分离方法,如微流控和荧光激活细胞分选,有助于阐明人类生殖细胞发育和生殖障碍的机制。在这篇综述中,讨论了单细胞转录组分析的历史及其相对于传统方法的技术优势。此外,还总结了单细胞转录组分析在分析生殖细胞方面的最新应用。