Rattus norvegicus Spermatogenesis Colony-Forming Assays

Methods Mol Biol. 2023:2677:233-257. doi: 10.1007/978-1-0716-3259-8_14.

Abstract

Knowledge gaps persist on signaling pathways and metabolic states in germ cells sufficient to support spermatogenesis independent of a somatic environment. Consequently, methods to culture mammalian stem cells through spermatogenesis in defined systems have not been established. Lack of success at culturing mammalian stem cells through spermatogenesis in defined systems reflects an inability to experimentally recapitulate biochemical events that develop in germ cells within the testis-specific seminiferous epithelium. Complex germ and somatic cell associations that develop each seminiferous epithelial cycle support such a hypothesis, conceivably explaining why highly pure mammalian spermatogonia do not effectively develop into and through meiosis without somatic cells. Here, we outline an in vitro spermatogenesis colony-forming assay to study how differentiating spermatogonial syncytia develop from rat spermatogonial stem cell lines. Robust spermatogonial differentiation under defined culture conditions, once established, is anticipated to facilitate molecular biology studies on pre-meiotic steps in gametogenesis by providing soma-free bioassays to systematically identify spermatogenic factors that promote meiotic progression in vitro.

Keywords: Differentiation; Gametogenesis; Germline gene targeting; Germline stem cell; In vitro; Proliferation; Self-renewal; Spermatogenesis; Spermatogonial stem cell.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Cell Differentiation
  • Male
  • Mammals
  • Meiosis
  • Rats
  • Seminiferous Epithelium
  • Spermatogenesis*
  • Spermatogonia
  • Testis*