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August 6, 2020Phytotherapy Research32 citationsOpen Access

Saponins derived from the stems and leaves of Panax ginseng attenuate scrotal heat‐induced spermatogenic damage via inhibiting the MAPK mediated oxidative stress and apoptosis in mice

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WLWei LiuJLJing LengJHJingang Hou

Structured PICO

Does GSLS attenuate scrotal heat-induced spermatogenic damage in mice?

P
Population
Mice subjected to a single scrotal heat treatment at 43°C for 18 min
I
Intervention
Saponins derived from the stems and leaves of Panax ginseng (GSLS) 150 or 300 mg/kg administered intragastrically for 14 days
C
Comparator
Scrotal heat treatment without GSLS (implied control)
O
Outcome
Testicular injury and dysfunction (histology, serum testosterone, oxidative stress markers, and apoptosis markers)surrogate

GSLS protects against heat stress-induced testicular dysfunction in mice by inhibiting oxidative stress and apoptosis via the MAPK signaling pathway.

Abstract

Heat stress (HS) reaction is a stress response caused by adverse conditions. Currently, the incidence of reproductive malignancies particularly in males has been constantly increasing. This work investigated the effects of saponins derived from the stems and leaves of Panax ginseng (GSLS) on testicular injury induced by scrotal hyperthermia in mice. GSLS (150, 300 mg/kg) were administered intragastrically to mice for 14 days, then exposed to a single scrotal heat treatment at 43°C for 18 min on seventh day. HS induced a significant loss of multinucleate giant cells, desquamation of germ cells in destructive seminiferous tubules. Moreover, HS reduced the serum testosterone, testicular tissue superoxide dismutase activity and glutathione (GSH) content, while significantly enhanced the production of malondialdehyde (p < .05). GSLS exhibited the protective potential against HS-induced injury not only by modulating Bcl-2 family and caspase protease family, but also by suppressing the protein levels of heme oxygenase-1 (HO-1), heat shock protein 70 (HSP70), hypoxia inducible factor-1α (HIF-1α) and activation of Mitogen-activated protein kinase (MAPK) signaling pathways (p < .05). In conclusion, we clearly demonstrated that GSLS exhibited a significant protective effect against HS-induced testicular dysfunction, mainly the inhibition of oxidative stress associated apoptosis partly via regulation of the MAPK signaling pathway.

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Cite This Study

Liu et al. (2020) studied this question.

synapsesocial.com/papers/6a8734d0385344fed8cb9051https://doi.org/10.1002/ptr.6801
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