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Published on: August 6, 2014
Morin mitigates cadmium-induced testicular impairment by stimulating testosterone secretion and germ cell
Lalrawngbawli Annie1, Vanrohlu Nicy1, Vanlal Rempuia1
1Department of Zoology, Mizoram University, Aizawl, Mizoram, India.
Abstract:
Cadmium (Cd) is one of the heavy metal pollutants present in the environment due to human intervention. It is well known that Cd causes toxicological effects on various organs, including the testes. Morin hydrate is a plant-derived bioflavonoid with antioxidant, anti-inflammatory, and anti-stress properties. Thus, the question can be raised as to whether Morin has an effect on Cd-intoxication-induced testicular impairment. Therefore, the aim of this study was to investigate the role of Morin on Cd-mediated disruption of testicular activity. Mice were divided into three groups: group 1 served as the control group, group 2 was given Cd (10 mg/kg) orally for 35 days, and group 3 was given Cd and Morin hydrate (100 mg/kg) for 35 days. To validate the in vivo findings, an in vitro study on testicular explants was also performed. The results of the in vivo study showed that Cd-intoxicated mice had testicular disorganization, reduced circulating testosterone levels, decreased sperm density, and elevated oxidative stress and sperm abnormality. The expression of the germ cell proliferation marker, germ cell nuclear acidic protein (GCNA), and adipocytokine visfatin were also downregulated. It was observed that Morin hydrate upregulated testicular visfatin and GCNA expression in Cd-intoxicated mice, along with improvement in circulating testosterone, testicular histology, and sperm parameters. Furthermore, the in vitro study showed that Cd-mediated downregulation of testicular visfatin and GCNA expression, along with the suppressed secretion of testosterone from testicular explants, was normalized by Morin treatment, whereas visfatin expression was not. Overall, these data indicate that environmental cadmium exposure impairs testicular activity through downregulation of visfatin and GCNA expression, and Morin might play a protective role against Cd-induced testicular toxicity.
Insights
Morin hydrate protects against cadmium-induced testicular toxicity by restoring testosterone levels, improving sperm quality, and normalizing key protein expressions. This study highlights Morin
Area of Science:
- Environmental Toxicology
- Reproductive Biology
- Pharmacology
Background:
- Cadmium (Cd) is an environmental heavy metal pollutant with known testicular toxicity.
- Morin hydrate, a plant bioflavonoid, possesses antioxidant and anti-inflammatory properties.
Purpose of the Study:
- To investigate the protective effects of Morin hydrate against cadmium-induced testicular impairment.
- To elucidate the role of visfatin and germ cell nuclear acidic protein (GCNA) in cadmium toxicity and Morin's effects.
Main Methods:
- In vivo study: Mice exposed to cadmium (Cd) orally for 35 days, with or without Morin hydrate treatment.
- In vitro study: Testicular explants treated with Cd and Morin hydrate.
- Assessment of testicular histology, sperm parameters, testosterone levels, oxidative stress, and visfatin/GCNA expression.
Main Results:
- Cadmium exposure caused testicular disorganization, reduced testosterone, decreased sperm density, increased oxidative stress, and abnormal sperm.
- Cadmium downregulated visfatin and GCNA expression in vivo and in vitro.
- Morin hydrate treatment improved testicular histology, sperm parameters, testosterone levels, and upregulated visfatin and GCNA expression.
Conclusions:
- Environmental cadmium exposure impairs testicular function via downregulation of visfatin and GCNA.
- Morin hydrate demonstrates a protective role against cadmium-induced testicular toxicity, potentially by modulating visfatin and GCNA pathways.

