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Sirtuin

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白藜芦醇与Sirtuin通路:从小梁网到长寿

白藜芦醇与Sirtuin通路:从小梁网到长寿

白藜芦醇在青光眼中的前景:眼部细胞与全身衰老 白藜芦醇是一种多酚类化合物,常被誉为“限制热量摄入的模拟物”和SIRT1激活剂,具有抗氧化和抗炎作用。早期研究表明,白藜芦醇能增强从酵母到哺乳动物等生物的抗压能力并延长其寿命(pmc.ncbi.nlm.nih.gov)。在细胞和动物模型中,白藜芦醇激活与...

烟酰胺和NAD+提升在青光眼神经保护和健康衰老中的应用

烟酰胺和NAD+提升在青光眼神经保护和健康衰老中的应用

引言 青光眼是一种慢性神经退行性眼病,其特征是尽管眼内压(IOP)得到控制,视网膜神经节细胞(RGCs)仍会死亡并伴随进行性视野丧失。最近研究强调,RGCs具有极高的代谢需求(长的无髓鞘轴突、持续放电),并处于“代谢悬崖”边缘,这使得它们易受年龄相关的能量不足和线粒体功能障碍的影响(pmc.ncbi...

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sirtuin

Sirtuins are a family of proteins found in many organisms, from bacteria to humans. They act mainly as enzymes that remove certain chemical groups from other proteins, which changes how those proteins behave. Most sirtuins need a molecule called NAD+ to work, linking their activity to a cell's energy status. By modifying proteins, sirtuins influence gene activity, DNA repair, metabolism, and how cells respond to stress. Researchers became interested in sirtuins because they seem to play a role in how animals age and how long they live. They help cells cope with low energy, protect DNA, and keep mitochondria—the cell’s power plants—working efficiently. This makes them relevant to conditions like metabolic diseases, neurodegeneration, inflammation, and age-related decline. Scientists are studying how changing sirtuin activity might treat disease or mimic some benefits of calorie restriction. A number of experimental drugs and naturally occurring compounds can influence sirtuins, but translating those findings into safe, effective therapies is still a challenge. Understanding sirtuins helps explain how metabolism, environment, and genetics interact to influence health over a lifetime.