Meng Qi, Ding Binbin, Ma Ping'an, Lin Jun
State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, China.
School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei, 230026, China.
Small Methods. 2023 May;7(5):e2201406. doi: 10.1002/smtd.202201406. Epub 2023 Jan 27.
Programmed cell death (PCD, mainly including apoptosis, necrosis, ferroptosis, pyroptosis, and autophagy) and immunogenic cell death (ICD), as important cell death mechanisms, are widely reported in cancer therapy, and understanding the relationship between the two is significant for clinical tumor treatments. Considering that vast nanodrugs are developed to induce tumor PCD and ICD simultaneously, in this review, the interrelationship between PCD and ICD is described using nanomedicines as examples. First, an overview of PCD patterns and focus on the morphological differences and interconnections among them are provided. Then the interrelationship between apoptosis and ICD in terms of endoplasmic reticulum stress is described by introducing various cancer treatments and the recent developments of nanomedicines with inducible immunogenicity. Next, the crosstalk between non-apoptotic (including necrosis, ferroptosis, pyroptosis, and autophagy) signaling pathways and ICD is introduced and their relationship through various nanomedicines as examples is further illustrated. Finally, the relationship between PCD and ICD and its application prospects in the development of new ICD nanomaterials are summarized. This review is believed to deepen the understanding of the relationship between PCD and ICD, extend the biomedical applications of various nanodrugs, and promote the progress of clinical tumor therapy.
程序性细胞死亡(PCD,主要包括凋亡、坏死、铁死亡、焦亡和自噬)和免疫原性细胞死亡(ICD)作为重要的细胞死亡机制,在癌症治疗中被广泛报道,了解两者之间的关系对临床肿瘤治疗具有重要意义。鉴于大量纳米药物被开发用于同时诱导肿瘤PCD和ICD,在本综述中,以纳米药物为例描述了PCD和ICD之间的相互关系。首先,提供了PCD模式的概述,并重点介绍了它们之间的形态学差异和相互联系。然后,通过介绍各种癌症治疗方法以及具有可诱导免疫原性的纳米药物的最新进展,描述了内质网应激方面凋亡与ICD之间的相互关系。接下来,介绍了非凋亡(包括坏死、铁死亡、焦亡和自噬)信号通路与ICD之间的相互作用,并以各种纳米药物为例进一步说明了它们之间的关系。最后,总结了PCD和ICD之间的关系及其在新型ICD纳米材料开发中的应用前景。本综述有望加深对PCD和ICD之间关系的理解,扩展各种纳米药物的生物医学应用,并促进临床肿瘤治疗的进展。