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Updated: Apr 2, 2026

Isolation of Sertoli Cells and Peritubular Cells from Rat Testes
Published on: February 8, 2016
Implications of Sertoli cell induced germ cell apoptosis to testicular pathology
Caitlin J Murphy1, John H Richburg1
1Center for Molecular and Cellular Toxicology; College of Pharmacy; The University of Texas at Austin ; Austin, TX USA.
Abstract:
After exposure to toxicants, degenerating germ cells represents the most common testicular histopathological alteration, regardless of the mechanism of toxicity. Therefore, deciphering the primary toxicant cellular target and mechanism of action can be extremely difficult. However, most testicular toxicants display a cell-specific and a stage-specific pattern of damage, which is the best evidence for identifying the primary cellular target (i.e. germ cell, Sertoli cell, peritubular myoid cell, or Leydig cell). Some toxicant-induced Sertoli cell injury presents with germ cell apoptosis occurring primarily in spermatocytes in rats in stages XI-XIV, I and II. Although some toxicants result in spermatid degeneration and apoptosis, it is still unclear if spermatid apoptosis is a result of Sertoli cell-selective apoptosis or a direct effect of toxicants on spermatids, therefore if this is seen as the earliest change, one cannot infer the mechanism of apoptosis. This review summarizes some of the distinguishing features of Sertoli cell-induced germ cell apoptosis and the associated mechanisms of cell death to provide the toxicologist observing similar cell death, with evidence about a potential mode of action.
Insights
Identifying the primary target of testicular toxicants is challenging. This review highlights Sertoli cell injury patterns to help toxicologists understand germ cell apoptosis mechanisms.
Area of Science:
- Reproductive Toxicology
- Histopathology
- Cell Biology
Background:
- Testicular toxicants often cause germ cell degeneration, complicating the identification of primary cellular targets and mechanisms.
- Cell- and stage-specific damage patterns are crucial for pinpointing the initial site of toxicant action within the testis.
Approach:
- This review examines characteristic features of Sertoli cell-induced germ cell apoptosis.
- It synthesizes information on associated cell death mechanisms.
Key Points:
- Sertoli cell injury can lead to germ cell apoptosis, particularly affecting spermatocytes at specific stages (XI-XIV, I, II).
- The cause of spermatid apoptosis (Sertoli cell-dependent vs. direct toxicant effect) remains ambiguous, hindering mechanistic inference if observed as an early event.
Conclusions:
- Understanding Sertoli cell-specific damage patterns aids in elucidating toxicant-induced germ cell apoptosis.
- This review provides toxicologists with evidence to infer potential mechanisms of action based on observed cell death patterns.
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