The natural flavonoid compound deguelin suppresses sperm (Sus Scrofa) functions through abnormal activation of the PI3K/AKT pathway

Deguelin is a natural flavonoid extracted from plants belonging to the Lonchocarpus, Derris, or Tephrosia genera. It inhibits AKT activity in tumors and has the potential to be used as a treatment for malignant tumors. However, the risks associated with the use of deguelin on male fertility have not...

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Veröffentlicht in:Reproductive toxicology (Elmsford, N.Y.) N.Y.), 2023-09, Vol.120, p.108426-108426, Article 108426
Hauptverfasser: Lee, Woo-Jin, Jo, Jae-Hwan, Jang, Seung-Ik, Jung, Eun-Ju, Hwang, Ju-Mi, Bae, Jeong-Won, Ha, Jae Jung, Kim, Dae-Hyun, Kwon, Woo-Sung
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Sprache:eng
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Zusammenfassung:Deguelin is a natural flavonoid extracted from plants belonging to the Lonchocarpus, Derris, or Tephrosia genera. It inhibits AKT activity in tumors and has the potential to be used as a treatment for malignant tumors. However, the risks associated with the use of deguelin on male fertility have not yet been explained in detail. Therefore, this study was conducted to investigate the effects of deguelin on sperm functions during capacitation. First, boar spermatozoa were exposed to different concentrations of deguelin (0.1, 1, 10, 50, and 100 μM). Next, sperm functional assessments, such as sperm motility, capacitation status, intracellular ATP level, and cell viability, were performed. The expression levels of PI3K/AKT-related proteins and the phosphorylation of their tyrosine residues were also evaluated by western blotting. No significant difference was observed in cell viability; however, deguelin considerably decreased sperm motility and motion kinematics in a dose-dependent manner. Although no significant difference was observed in the capacitation status, acrosome reaction decreased at high concentrations of deguelin (50 and 100 μM). Furthermore, intracellular ATP levels were significantly decreased in all deguelin treatment groups compared with those in the control group. Results of western blotting revealed that deguelin substantially diminished tyrosine phosphorylation. Interestingly, in contrast to previous studies showing that deguelin inhibits AKT activity, our results showed that it increased the expression of PI3K/AKT pathway-related proteins. Collectively, these findings indicate that deguelin exerts negative effects on sperm functions due to abnormal PI3K/AKT signaling activation. We believe that this is the first study to provide evidence that deguelin can regulate sperm functions independent of PI3K/AKT pathway inhibition. Furthermore, its detrimental effects on male fertility should be considered while developing or using deguelin as a therapeutic agent. [Display omitted] •Deguelin decreased sperm motility, intracellular ATP, and acrosome reaction.•Deguelin exerted detrimental effects on the PI3K/AKT pathway of sperm.•Changes in the PI3K/AKT pathway caused an alteration of tyrosine phosphorylation.•Male reproductive toxicity should be considered when using deguelin.
ISSN:0890-6238
1873-1708
DOI:10.1016/j.reprotox.2023.108426