4.3 Article

Dysfunction in Sertoli cells participates in glucocorticoid-induced impairment of spermatogenesis

期刊

MOLECULAR REPRODUCTION AND DEVELOPMENT
卷 88, 期 6, 页码 405-415

出版社

WILEY
DOI: 10.1002/mrd.23515

关键词

corticosterone; lactate; phagocytosis; Sertoli cell; spermatogenesis

资金

  1. National Natural Science Foundation of China [31872436, 32072807]
  2. Natural Science Foundation of Jiangsu Province [BK20181323]
  3. Priority Academic Program Development of Jiangsu Higher Education Institutions

向作者/读者索取更多资源

The study found that hypercortisolism leads to decreased testosterone levels, reduced sperm count and increased abnormal sperm, as well as impaired spermatogenesis and testicular inflammation. In Sertoli cells, corticosterone treatment decreases phagocytic activity and lactate metabolism, further contributing to spermatogenesis impairment.
The effect of stress on male fertility is a widespread public health issue, but less is known about the related signaling pathway. To investigate this, we established a hypercortisolism mouse model by supplementing the drinking water with corticosterone for four weeks. In the hypercortisolism mice, the serum corticosterone was much higher than in the control, and serum testosterone was significantly decreased. Moreover, corticosterone treatment induced decrease of sperm counts and increase of teratozoospermia. Increased numbers of multinucleated giant cells and apoptotic germ cells as well as downregulated meiotic markers suggested that corticosterone induced impaired spermatogenesis. Further, upregulation of macrophage-specific marker antigen F4/80 as well as inflammation-related genes suggested that corticosterone induced inflammation in the testis. Lactate content was found to be decreased in the testis and Sertoli cells after corticosterone treatment, and lactate metabolism-related genes were downregulated. In vitro phagocytosis assays showed that the phagocytic activity in corticosterone-treated Sertoli cells was downregulated and accompanied by decreased mitochondrial membrane potential, while pyruvate dehydrogenase kinase-4 inhibitor supplementation restored this process. Taken together, our results demonstrated that dysfunctional phagocytosis capacity and lactate metabolism in Sertoli cells participates in corticosterone-induced impairment of spermatogenesis.

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