Proanthocyanidins Alleviate T-2 Toxin-Induced Toxicity in Yak (Bos grunniens) Sertoli Cells by Alleviating Oxidative Stress and Modulating Mitochondrial Biogenesis

  • Antioxidants (Basel). 2026 Apr 25;15(5):547. doi: 10.3390/antiox15050547.
Huai Zhang  1  2 Dongju Liu  1 Linwen Ding  1 Fuchao Zhang  1  3 Jianmei Mao  4 Wanzhong He  4 Qilin Zhuoma  4 Honghong He  1 Wei Fu  1 Daoliang Lan  1 Shi Yin  1
Affiliations
  • 1. College of Animal and Veterinary Sciences, Southwest Minzu University, Chengdu 610041, China.
  • 2. Jiajiang County Agriculture and Rural Bureau, Leshan 614100, China.
  • 3. Jingyan County Agriculture and Rural Bureau, Leshan 614100, China.
  • 4. Diqing Tibetan Autonomous Prefecture Productivity Promotion Center, Diqing 674400, China.
Abstract

T-2 toxin, a mycotoxin produced by the genus Fusarium, is widely prevalent in agricultural products and livestock feed, posing substantial health risks to livestock and humans. This toxin induces oxidative stress in testicular Sertoli cells, disrupts testicular architecture, and compromises spermatogenesis. Despite its widespread presence in contaminated feeds, effective therapeutic strategies to counteract T-2 toxin-induced reproductive toxicity in Sertoli cells remain elusive. This study evaluated the protective efficacy and molecular mechanisms of proanthocyanidins (PCs), a phytochemical with antioxidant properties, against T-2 toxin-induced damage in yak (Bos grunniens) Sertoli cells. The findings revealed that T-2 toxin markedly reduced the viability of yak Sertoli cells and stimulated the production of Reactive Oxygen Species (ROS). Treatment with 10 μg/mL PCs significantly enhanced cell viability, decreased Apoptosis, and preserved cellular functions. Furthermore, PCs reduced ROS levels in yak Sertoli cells exposed to T-2 toxin and improved antioxidant capacity by upregulating the nuclear factor erythroid derived 2-like (NRF2)/heme oxygenase-1 (HO-1) signaling pathway. Additionally, PCs inhibited mitochondria-mediated Apoptosis, diminished the occurrence of malformed mitochondria, and enhanced the Sirtuin 1 (SIRT1)/Peroxisome Proliferator-activated Receptor gamma coactivator 1 alpha (PGC-1α) signaling pathway associated with mitochondrial biogenesis in yak Sertoli cells exposed to T-2 toxin. This study provides novel insights into the prevention and treatment of T-2 toxin-induced reproductive damage in yaks and underscores the potential application of PCs in this context.

Keywords
Sertoli cell; T-2 toxin; mitochondrial; oxidative stress; proanthocyanidins.
Products