Zeng Shuang, Chen Chen, Zhang Liuwei, Liu Xiaosheng, Qian Ming, Cui Hongyan, Wang Jingyun, Chen Qixian, Peng Xiaojun
School of Bioengineering, Dalian University of Technology, 2 Linggong Road, Hi-tech Zone, Dalian, 116024, China.
State Key Laboratory of Fine Chemicals, Dalian University of Technology, 2 Linggong Road, Hi-tech Zone, Dalian, 116024, China.
Bioact Mater. 2022 Aug 2;25:580-593. doi: 10.1016/j.bioactmat.2022.07.016. eCollection 2023 Jul.
Pyroptosis, a unique lytic programmed cell death, inspired tempting implications as potent anti-tumor strategy in pertinent to its potentials in stimulating anti-tumor immunity for eradication of primary tumors and metastasis. Nonetheless, rare therapeutics have been reported to successfully stimulate pyroptosis. In view of the intimate participation of reactive oxygen species (ROS) in stimulating pyroptosis, we attempted to devise a spectrum of well-defined subcellular organelle (including mitochondria, lysosomes and endoplasmic reticulum)-targeting photosensitizers with the aim of precisely localizing ROS (produced from photosensitizers) at the subcellular compartments and explore their potentials in urging pyroptosis and immunogenic cell death (ICD). The subsequent investigations revealed varied degrees of pyroptosis upon photodynamic therapy (PDT) towards cancerous cells, as supported by not only observation of the distinctive morphological and mechanistic characteristics of pyroptosis, but for the first-time explicit validation from comprehensive RNA-Seq analysis. Furthermore, anti-tumor PDT could exert eradication of the primary tumors, more importantly suppressed the distant tumor and metastatic tumor growth through an abscopal effect, approving the acquirement of specific anti-tumor immunity as a consequence of pyroptosis. Hence, pyroptosis was concluded unprecedently by our proposed organelles-targeting PDT strategy and explicitly delineated with molecular insights into its occurrence and the consequent ICD.
细胞焦亡是一种独特的溶解性程序性细胞死亡,鉴于其在刺激抗肿瘤免疫以根除原发性肿瘤和转移方面的潜力,作为一种有效的抗肿瘤策略引发了诱人的启示。然而,据报道很少有治疗方法能成功刺激细胞焦亡。鉴于活性氧(ROS)在刺激细胞焦亡中密切参与,我们试图设计一系列明确的亚细胞器(包括线粒体、溶酶体和内质网)靶向光敏剂,目的是将(由光敏剂产生的)ROS精确地定位在亚细胞区室,并探索它们在促进细胞焦亡和免疫原性细胞死亡(ICD)方面的潜力。随后的研究表明,光动力疗法(PDT)对癌细胞有不同程度的细胞焦亡作用,这不仅得到了细胞焦亡独特形态和机制特征观察结果的支持,而且首次通过全面的RNA测序分析得到了明确验证。此外,抗肿瘤PDT可以根除原发性肿瘤,更重要的是通过远隔效应抑制远处肿瘤和转移性肿瘤的生长,这证明了细胞焦亡导致获得特异性抗肿瘤免疫。因此,我们提出的细胞器靶向PDT策略前所未有地证实了细胞焦亡,并通过对其发生及随后的ICD的分子洞察进行了明确描述。