研究概要
基于衰老的抗癌疗法的成功依赖于其抗增殖能力以及触发抗肿瘤免疫应答的能力。
中文摘要
基于细胞衰老的抗癌治疗效果取决于其抑制增殖能力和诱导抗肿瘤免疫反应的能力。基因毒性药物诱导的衰老可提高多发性骨髓瘤(MM)细胞NK细胞活化配体表达,增强NK识别和效应功能。衰老细胞形态改变,并依环境获得不同功能,可分泌大量衰老相关分泌表型(SASP)分子,影响邻近细胞。外泌体近期也被视为SASP成分,可调节多种细胞功能;其中外泌体miRNA可能影响多种癌症特征。本研究显示,多柔比星处理MM细胞后,外泌体中miR-433富集,进而诱导旁观者细胞衰老。邻近MM细胞的衰老不依赖p53和p21,而与CDK6下调相关。值得注意的是,miR-433依赖的衰老并未上调MM细胞活化配体。研究结果提示,富含miR-433的外泌体可增强多柔比星诱导的细胞衰老。
展开英文摘要原文
The success of senescence-based anticancer therapies relies on their anti-proliferative power and on their ability to trigger anti-tumor immune responses. Indeed, genotoxic drug-induced senescence increases the expression of NK cell-activating ligands on multiple myeloma (MM) cells, boosting NK cell recognition and effector functions. Senescent cells undergo morphological change and context-dependent functional diversification, acquiring the ability to secrete a vast pool of molecules termed the senescence-associated secretory phenotype (SASP), which affects neighboring cells. Recently, exosomes have been recognized as SASP factors, contributing to modulating a variety of cell functions. In particular, evidence suggests a key role for exosomal microRNAs in influencing many hallmarks of cancer. Herein, we demonstrate that doxorubicin treatment of MM cells leads to the enrichment of miR-433 into exosomes, which in turn induces bystander senescence. Our analysis reveals that the establishment of the senescent phenotype on neighboring MM cells is p53- and p21-independent and is related to CDK-6 down-regulation. Notably, miR-433-dependent senescence does not induce the up-regulation of activating ligands on MM cells. Altogether, our findings highlight the possibility of miR-433-enriched exosomes to reinforce doxorubicin-mediated cellular senescence.
论文信息
- 作者
- Vulpis E、Cuollo L、Borrelli C、Antonangeli F、Masuelli L、Cippitelli M、Fionda C、Caracciolo G
- 单位
- Department of Molecular Medicine, Sapienza University of Rome, Laboratory Affiliated to Istituto Pasteur Italia-Fondazione Cenci Bolognetti, Viale Regina Elena 291, 00161 Rome, Italy.Italy
- 期刊
- International journal of molecular sciences2023 Apr 6