葡萄糖诺 Galactan 通过促进NRF2的核转移来抑制衰老
Zhenhua Liang1, Qi Tang2, Haiyang Liang3
1Cardiovascular Medical Science Center, Department of Cell Biology, the Key Laboratory of Neural and Vascular Biology, Ministry of Education, The Key Laboratory of Vascular Biology of Hebei Province, Hebei Medical University, Shijiazhuang 050017, China.
International journal of biological macromolecules
|February 17, 2025
概括
来自Pleurotus geesteranus的一种新型葡萄糖甲酸 (PGP) 在小鼠中显著延长了健康寿命. 通过促进NRF2核转位,PGP减少衰老细胞并改善健康寿命.
科学领域:
- 生物遗传学 生物遗传学
- 分子生物学分子生物学
- 自然产品 自然产品
背景情况:
- 多糖提供一种低细胞毒性的方法来改善健康.
- 细胞衰老有助于与年龄相关的衰退和器官功能障碍.
研究的目的:
- 为了研究从Pleurotus geesteranus中获得的葡萄糖甲酸 (PGP) 的健康延长潜力.
- 阐明PGP影响细胞衰老的机制.
主要方法:
- 向自然衰老和治疗诱导衰老 (TIS) 的小鼠模型施用PGP.
- 在体外研究中,使用在氧化应激下的人类细胞系来诱导衰老.
- 对衰老细胞标记物,器官健康,代谢功能和氧化损伤的分析.
- 对NRF2通路激活的评估.
主要成果:
- 在自然衰老的小鼠中,PGP治疗减少了衰老细胞的积累,并缓解了与衰老相关的参数.
- 在TIS小鼠中,PGP减弱了衰老,改善了器官健康和代谢功能.
- 在体外,PGP促进了NRF2的核转移,减少了氧化应激诱导的衰老.
结论:
- 来自Pleurotus geesteranus的PGP在小鼠模型中显示出显著的健康延伸.
- PGP可以缓解细胞衰老和相关病理,可能是通过NRF2通路激活.
- PGP代表了一种有希望的自然化合物,用于针对衰老和衰老的干预措施.
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