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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Flow cytometric characterization of viable meiotic and postmeiotic cells by Hoechst 33342 in mouse spermatogenesis
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Flow cytometric characterization of viable meiotic and postmeiotic cells by Hoechst 33342 in mouse spermatogenesis

机译:Hoechst 33342在小鼠精子发生过程中对活的减数分裂和减数分裂细胞的流式细胞仪表征

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Background: Spermatogenesis in adult is a complex stepwise process leading to terminally differentiated spermatozoa. The cellular heterogeneity of testis renders complex the studies on molecular aspects of this differentiation process. Analysis of the regulation of adult spermatogenesis would undoubtedly benefit from the development of techniques to characterize each germinal differentiation step.Methods: Hoechst 33342 staining of mouse testicular cells allows characterization of an enriched population in germinal stem cell and sperritatogonia, called side population. In this study, we examined the definition of the various germinal populations stained by Hoechst 33342, notably meiotic and postmeiotic cells.Results: Preleptotene spermatocytes, spermatocyte I, spermatocyte II, and round and elongated spermatids were discriminated by Hoechst 33342 staining. In addition, we associated differentiation of spermatocyte I through leptotene to diplotene with changes in Hoechst 33342 red fluorescence pattern.Conclusions: Hoechst 33342 staining of viable germinal cells constitutes a valuable tool to study normal and impaired mouse adult spermatogenesis or to isolate viable cells from various differentiation stages for studies of molecular mechanisms regulating spermatogenesis. (c) 2005 Wiley-Liss, Inc.
机译:背景:成人的精子发生是一个复杂的逐步过程,导致终末分化的精子。睾丸的细胞异质性使得对该分化过程的分子方面的研究变得复杂。对成年精子发生调控的分析无疑将受益于表征每个生发分化步骤的技术的发展。方法:对小鼠睾丸细胞进行Hoechst 33342染色可表征生发干细胞和精原细胞中富集的群体,称为侧群。在这项研究中,我们检查了用Hoechst 33342染色的各种生发种群的定义,特别是减数分裂和减数分裂后的细胞的结果。结果:Hoechst 33342染色区分了前瘦素的精母细胞,I的精子,II的精子以及圆的和细长的精子。此外,我们将精子细胞I通过瘦素分化为二烯戊烯与Hoechst 33342红色荧光图样的改变相关。结论:Hoechst 33342活的生殖细胞染色是研究正常和受损小鼠成年精子发生或从各种细胞中分离活细胞的有价值的工具分化阶段研究调节精子发生的分子机制。 (c)2005 Wiley-Liss,Inc.

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