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May 2, 2026Molecular Medicine Reports0 citationsOpen Access

Indium (III) chloride inhibits testicular Leydig cell proliferation by disrupting centrosome copy numbers

CWChia‐Yih WangPSPing-Jui SuKWKuan-Chih Wang

Key Points

  • The study aims to investigate how indium chloride (InCl3) affects Leydig cell proliferation and the underlying mechanisms.
  • In vitro exposure of Leydig cells to InCl3 to assess proliferation rates.
  • Evaluation of centrosome copy numbers and mitotic spindle formation.
  • Analysis of reactive oxygen species levels and activation of DNA-PK.
  • InCl3 significantly suppressed Leydig cell proliferation, leading to centrosome amplification.
  • InCl3 exposure increased reactive oxygen species and activated DNA-PK, contributing to genomic instability.
  • Pharmacological inhibition of autophagy reduced centrosome amplification and its effects on cell growth.

Abstract

Indium chloride (InCl3), widely used in the electronics and semiconductor industries, has recently been shown to impair testicular development and cause sperm malformations, contributing to male infertility. While testicular Leydig cells are key in testis development and testosterone biosynthesis, the effects of InCl3 on Leydig cell proliferation remain unclear. The present study demonstrated that InCl3 suppresses the proliferation of testicular Leydig cells by disrupting centrosome number regulation. As the centrosome is pivotal in organizing microtubules and forming the mitotic spindle during cell division, InCl3‑induced centrosome amplification leads to abnormal spindle formation and genomic instability. Mechanistically, InCl3 increases reactive oxygen species production, resulting in DNA damage and subsequent activation of DNA‑dependent protein kinase (DNA‑PK), which localizes to the centrosome. Inhibition or knockdown of DNA‑PK attenuated InCl3‑induced centrosome amplification. Additionally, induction of autophagy was observed upon InCl3 exposure and pharmacological inhibition of autophagy using chloroquine suppressed centrosome amplification. Overall, the present findings reveal that InCl3 inhibits Leydig cell proliferation by promoting centrosome amplification and highlights the involvement of DNA‑PK activation and autophagy in this process.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69f593f271405d493affebdbhttps://doi.org/10.3892/mmr.2026.13891
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Also Consider

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  1. 1Influences of Indium (III) Chloride on Mammalian Renal Cell (Vero) Morphology, Viability, Reactive Oxygen Species Production, and Adhesive Protein Expression2026
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  3. 3Low‐Dose Chlorothalonil Induces Testicular Injury Through Disruption of Steroidogenic Signaling in Adult Male Mice2026
  4. 4Vitamin E and genistein generate a cytoprotective effect on polychlorinated biphenyl- induced oxidative stress in testicular Leydig cells2024
  5. 5Lipid‑disrupting effects of an organochlorine mixture in Sertoli TM4 cells reveal testicular obesogen mechanisms2026