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Finding Ponce de Leon’s Pill: Challenges in Screening for Anti-Aging Molecules

机译:寻找庞塞·德·里昂的药丸:抗衰老分子筛查面临的挑战

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摘要

Aging is characterized by the progressive accumulation of degenerative changes, culminating in impaired function and increased probability of death. It is the major risk factor for many human pathologies – including cancer, type 2 diabetes, and cardiovascular and neurodegenerative diseases – and consequently exerts an enormous social and economic toll. The major goal of aging research is to develop interventions that can delay the onset of multiple age-related diseases and prolong healthy lifespan (healthspan). The observation that enhanced longevity and health can be achieved in model organisms by dietary restriction or simple genetic manipulations has prompted the hunt for chemical compounds that can increase lifespan. Most of the pathways that modulate the rate of aging in mammals have homologs in yeast, flies, and worms, suggesting that initial screening to identify such pharmacological interventions may be possible using invertebrate models. In recent years, several compounds have been identified that can extend lifespan in invertebrates, and even in rodents. Here, we summarize the strategies employed, and the progress made, in identifying compounds capable of extending lifespan in organisms ranging from invertebrates to mice and discuss the formidable challenges in translating this work to human therapies.
机译:衰老的特征是退行性变化逐渐累积,最终导致功能受损和死亡可能性增加。它是许多人类疾病的主要危险因素,包括癌症,2型糖尿病以及心血管和神经退行性疾病,因此造成了巨大的社会和经济损失。衰老研究的主要目标是开发能够延迟多种与年龄有关的疾病发作并延长健康寿命的干预措施。可以通过饮食限制或简单的基因操作在模型生物体内实现长寿和健康的提高,这一发现促使人们寻找可以延长寿命的化合物。调节哺乳动物衰老速率的大多数途径在酵母,果蝇和蠕虫中都有同源物,这表明使用无脊椎动物模型进行初步筛选以鉴定此类药理干预措施是可能的。近年来,已经确定了几种可以延长无脊椎动物甚至啮齿动物寿命的化合物。在这里,我们总结了鉴定能够延长从无脊椎动物到小鼠的生物体内寿命的化合物所采用的策略和取得的进展,并讨论了将这项工作转化为人类疗法时面临的巨大挑战。

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