首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Trillium tschonoskii maxim saponin mitigates D-galactose-induced brain aging of rats through rescuing dysfunctional autophagy mediated by Rhebm-TOR signal pathway
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Trillium tschonoskii maxim saponin mitigates D-galactose-induced brain aging of rats through rescuing dysfunctional autophagy mediated by Rhebm-TOR signal pathway

机译:Trillium Tschonoskii maxim saponin通过借用由Rheb-tor信号通路介导的功能障碍自噬拯救功能障碍自噬 - 大鼠的D-半乳糖诱导的大鼠脑老化

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During the expansion of aging population, the study correlated with brain aging is one of the important research topics. Developing novel and effective strategies for delaying brain aging is highly desired. Brain aging is characteristics of impaired cognitive capacity due to dysfunctional autophagy regulated by Rheb-mTOR signal pathway in hippocampal tissues. In the present study, we have established a rat model with brain aging through subcutaneous injection of D-galactose (D-gal). Upon the intervention of Trillium tschonoskii Maxim (TTM) saponin, one of bioactive components from local natural herbs in China, the learning and memory capacity of D-gal-induced aging rats was evaluated through Morris water maze test, and the regulation of Rheb-mTOR signal pathway and functional status of autophagy in hippocampal tissues of D-gal-induced aging rats was explored by Western blot. TTM saponin revealed an obvious function to improve learning and memory capacity of D-galinduced aging rats through up-regulating Rheb and down-regulating mTOR, thereby rescuing dysfunctional autophagy to execute anti-aging role. Meanwhile, this study confirmed the function of TTM saponin for preventing and treating brain aging, and provided a reference for the development and utilization of natural products in health promotion and aging-associated disease treatment.
机译:在衰老人群扩张期间,研究与脑老化相关的是重要的研究主题之一。强烈希望延迟延迟脑老化的新颖和有效策略。由于海马组织中的rheb-mtor信号途径调节功能障碍自噬引起的认知能力受损的脑老化特征。在本研究中,我们通过皮下注射D-半乳糖(D-GAL)建立了具有脑老化的大鼠模型。在Tschonoskii Maxim(TTM)皂苷的干预后,通过Morris水迷宫试验评估了来自中国局部天然草本植物的生物活性组分之一,D-GAL诱导的老年大鼠的学习和记忆能力,以及RHEB的调节通过Western印迹探讨了D-GAL诱导的老年大鼠的海马组织中自噬的MTOR信号途径和功能状态。 TTM Saponin揭示了一种明显的功能,可通过上调RhEB和下调MTOR来改善D- GAL诱导的老化大鼠的学习和记忆能力,从而抵抗功能障碍自噬能量以执行抗衰老作用。同时,本研究证实了TTM Saponin用于预防和治疗脑老化的功能,并为健康促进和衰老相关疾病治疗中天然产物的开发和利用提供了参考。

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