衰老
适体
化学
荧光寿命成像显微镜
癌细胞
癌症
癌症治疗
结合
癌变
分子成像
细胞生物学
癌症研究
生物物理学
荧光
生物化学
生物
体内
分子生物学
数学分析
量子力学
生物技术
遗传学
物理
基因
数学
作者
Linlin Wang,Jili Li,Zhihui Zhao,Yinghao Xia,Yuqi Xie,D. Hong,Yanlan Liu,Weihong Tan
标识
DOI:10.1021/acs.analchem.3c03435
摘要
Therapy-induced cellular senescence has been increasingly recognized as a key mechanism to promote various aspects of carcinogenesis in a nonautonomous manner. Thus, real-time imaging monitoring of cellular senescence during cancer therapy is imperative not only to further elucidate its roles in cancer progression but also to provide guidance for medical management of cancer. However, it has long been a challenging task due to the lack of effective imaging molecule tools with high specificity and accuracy toward cancer senescence. Herein, we report the rational design, synthesis, and evaluation of an aptamer conjugate-based ratiometric fluorescent probe for precise imaging of therapy-induced cancer senescence. Unlike traditional senescence imaging systems, our probe targets two senescence-associated markers at both cellular and subcellular dimensions, namely, aptamer-mediated membrane marker recognition for active cell targeting and lysosomal marker-triggered ratiometric fluorescence changes of two cyanine dyes for site-specific, high-contrast imaging. Moreover, such a two-channel fluorescence response is activated after a one-step reaction and at the same location, avoiding the diffusion-caused signal decay previously encountered in dual-marker activated probes, contributing to spatiotemporally specific imaging of therapy-induced cancer senescence in living cells and three-dimensional multicellular tumor spheroids. This work may offer a valuable tool for a basic understanding of cellular senescence in cancer biology and interventions.
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