Decreasing a-synuclein aggregation by methanolic extract of Centella asiatica in zebrafish Parkinson

来源 :Asian Pacific Journal of Tropical Biomedicine | 被引量 : 0次 | 上传用户:chinagirlxin
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Objective: To observe the effects of Centella asiatica(C. asiatica) methanolic extract on a-synuclein aggregation and its expression in rotenone-exposed zebra fish.Methods: Zebra fish(Danio rerio) were exposed to 5 m g/L rotenone for 28 days and coincubated with 2.5, 5.0 and 10.0 m g/mL of C. asiatica methanolic extract. The medium was changed every 48 h for maintain the concentration of rotenone and extract. After 28 days zebra fish were sacrificed on the ice block and protein was isolated from zebra fish brain for ELISA of dopamine and Western blotting of a-synuclein. Immunohistochemistry was conducted to observe the a-synuclein expressions from histopathological preparation of zebra fish brain. The head were soaked in 10% formaline for less than 24 h and embedded onto paraffin block, then sliced for immunohistochemistry using anti a-synuclein antibody. We also measured zebra fish motility for 5 min in each week.Results: C. asiatica has important bioactive compounds such as asiaticoside that has antiin flammatory and antioxidant properties. It may inhibit cascade reaction due to oxidative stress induced by rotenone. Decreasing reactive oxygen species proposed probability of radical attack to a-synuclein protein that caused aggregation and increase of its expression.The motility of zebra fish was also maintained in C. asiatica groups due to the increasing dopamine level in rotenone-induced zebra fish. High level of reactive oxygen species inactivated enzyme for dopamine synthesis such as tyrosine hydroxylase, and oxidized dopamine itself. Oxidized dopamine increased a-synuclein aggregation. Thus, the dopamine level decreased in rotenone-induced zebra fish, but C. asiatica increased dopamine level.Conclusions: C. asiatica has a potential to be developed as an anti-Parkinson’s disease treatment due to its capability for minimized the sign of Parkinson’s such as a-synuclein aggregation and expression, increasing motility and dopamine as well. Objective: To observe the effects of Centella asiatica (C. asiatica) methanolic extract on a-synuclein aggregation and its expression in rotenone-exposed zebra fish. Methods: Zebra fish (Danio rerio) were exposed to 5 mg / L rotenone for 28 days and coincubated with 2.5, 5.0 and 10.0 mg / mL of C. asiatica methanolic extract. The medium was changed every 48 h for maintain the concentration of rotenone and extract. After 28 days zebra fish were sacrificed on the ice block and protein was isolated from zebra fish brain for ELISA of dopamine and Western blotting of a-synuclein. Immunohistochemistry was conducted to observe the a-synuclein expressions from histopathological preparation of zebra fish brain. The head were soaked in 10% formaline for less than 24 h and embedded onto paraffin block, then sliced ​​for immunohistochemistry using anti a-synuclein antibody. We also measured zebra fish motility for 5 min in each week. Results: C. asiatica has important bioactive compounds such as asiaticos ide that has antiinflammatory and antioxidant properties. It may inhibit cascade reaction due to oxidative stress induced by rotenone. Decreasing reactive oxygen species proposed probability of radical attack to a-synuclein protein that caused aggregation and increase of its expression. motility of zebra fish was also maintained in C. asiatica groups due to the increasing dopamine level in rotenone-induced zebra fish. High level of reactive oxygen species inactivated enzyme for dopamine synthesis such as tyrosine hydroxylase, and oxidized dopamine itself. Oxidized dopamine increased a-synuclein aggregation. As dopamine level decreased in rotenone-induced zebra fish, but C. asiatica increased dopamine level. Conclusions: C. asiatica has a potential to be developed as an anti-Parkinson’s disease treatment due to its capability for minimized the sign of Parkinson’s such as a-synuclein aggregation and expression, increasing motility and dopamine as well.
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