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Transillumination-Assisted Dissection of Specific Stages of the Mouse Seminiferous Epithelial Cycle for Downstream Immunostaining Analyses

Olotu Opeyemi; Cisneros-Montalvo Sheyla; Hobbs Robin M; La Hue M; Mäkelä Juho-Antti; Parvinen Martti; Lehtiniemi Tiina; Kotaja Noora; Toppari Jorma

Transillumination-Assisted Dissection of Specific Stages of the Mouse Seminiferous Epithelial Cycle for Downstream Immunostaining Analyses

Olotu Opeyemi
Cisneros-Montalvo Sheyla
Hobbs Robin M
La Hue M
Mäkelä Juho-Antti
Parvinen Martti
Lehtiniemi Tiina
Kotaja Noora
Toppari Jorma
Katso/Avaa
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JOURNAL OF VISUALIZED EXPERIMENTS
doi:10.3791/61800
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2021042824012
Tiivistelmä
Spermatogenesis is a unique differentiation process that ultimately gives rise to one of the most distinct cell types of the body, the sperm. Differentiation of germ cells takes place in the cytoplasmic pockets of somatic Sertoli cells that host 4 to 5 generations of germ cells simultaneously and coordinate and synchronize their development. Therefore, the composition of germ cell types within a cross-section is constant, and these cell associations are also known as stages (I-XII) of the seminiferous epithelial cycle. Importantly, stages can also be identified from intact seminiferous tubules based on their differential light absorption/scatter characteristics revealed by transillumination, and the fact that the stages follow each other along the tubule in a numerical order. This article describes a transillumination-assisted microdissection method for the isolation of seminiferous tubule segments representing specific stages of mouse seminiferous epithelial cycle. The light absorption pattern of seminiferous tubules is first inspected under a dissection microscope, and then tubule segments representing specific stages are cut and used for downstream applications. Here we describe immunostaining protocols for stage-specific squash preparations and for intact tubule segments. This method allows a researcher to focus on biological events taking place at specific phases of spermatogenesis, thus providing a unique tool for developmental, toxicological, and cytological studies of spermatogenesis and underlying molecular mechanisms.
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