Detecting cellular senescence in vivo: Imagining imaging better

Zachary M. Rabinowitz, Lina Cui
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Abstract

Methods to detect cellular senescence have become increasingly important, even more so in living animals and humans. This cellular state has been found to play fundamental roles in physiological processes as well as functioning detrimentally toward the advent or progression of pathological conditions. Importantly, the study of senescence involvement in these processes in vivo cannot be done without living‐friendly technologies enabling senescence detection. Furthermore, senotherapies or therapies that selectively kill senescent cells have emerged as a new therapeutic strategy for aging and age‐related diseases such as atherosclerosis, cancer, and neurodegenerative disorders and require tools to evaluate their use in vivo. As of now, our in vivo senescence detection toolkit includes genetically engineered reporter mouse models and small molecule imaging probes. Herein, we will focus on the detection of senescence in vivo, including a summary of its challenges, current detection methods and strategies, and a perspective on overcoming the current obstacles.
在体内检测细胞衰老:更好地想象成像
检测细胞衰老的方法变得越来越重要,在活体动物和人类中更是如此。这种细胞状态已被发现在生理过程中发挥基本作用,以及对病理条件的出现或进展起不利作用。重要的是,如果没有对生命友好的衰老检测技术,就无法在体内进行衰老参与这些过程的研究。此外,选择性杀死衰老细胞的疗法已经成为治疗衰老和年龄相关疾病(如动脉粥样硬化、癌症和神经退行性疾病)的新策略,需要工具来评估其在体内的应用。到目前为止,我们的体内衰老检测工具包包括基因工程报告小鼠模型和小分子成像探针。在此,我们将重点关注体内衰老的检测,包括总结其挑战,当前的检测方法和策略,以及克服当前障碍的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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