Advanced Science (Jun 2024)

Gut‐Derived Exosomes Mediate the Microbiota Dysbiosis‐Induced Spermatogenesis Impairment by Targeting Meioc in Mice

  • Tong Chen,
  • Boqi Zhang,
  • Guitian He,
  • Nan Wang,
  • Maosheng Cao,
  • Caomeihui Shen,
  • Xue Chen,
  • Lu Chen,
  • Kening Liu,
  • Yuxin Luo,
  • Yiqiu huang,
  • Chenfeng Yuan,
  • Xu Zhou,
  • Chunjin Li

DOI
https://doi.org/10.1002/advs.202310110
Journal volume & issue
Vol. 11, no. 22
pp. n/a – n/a

Abstract

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Abstract Diseases like obesity and intestinal inflammation diseases are accompanied by dysbiosis of the gut microbiota (DSGM), which leads to various complications, including systemic metabolic disorders. DSGM reportedly impairs the fertility of male mice; however, the regulatory mechanism is unclear. Exosomes are molecular mediators of intercellular communication, but the regulation of spermatogenesis by non‐reproductive tissue‐originated exosomes remains unknown. The present study shows that DSGM altered the miRNA expression profile of mouse circulating exosomes and impaired spermatogenesis. Moreover, the single‐cell sequencing results indicate that circulating exosomes from mice with DSGM impaired spermatogenesis, while circulating exosomes from wild mice improved spermatogenesis by promoting meiosis. Further study demonstrates that DSGM leads to abnormal upregulation of miR‐211‐5p in gut‐derived circulating exosomes, which inhibited the expression of meiosis‐specific with coiled‐coil domain (Meioc) in the testes and impaired spermatogenesis by disturbing meiosis process. In summary, this study defines the important role of gut‐derived exosomes in connecting the “gut‐testis” axis.

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