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免疫原性细胞死亡中损伤相关分子模式的分子与转化分类

Molecular and Translational Classifications of DAMPs in Immunogenic Cell Death.

作者信息

Garg Abhishek D, Galluzzi Lorenzo, Apetoh Lionel, Baert Thais, Birge Raymond B, Bravo-San Pedro José Manuel, Breckpot Karine, Brough David, Chaurio Ricardo, Cirone Mara, Coosemans An, Coulie Pierre G, De Ruysscher Dirk, Dini Luciana, de Witte Peter, Dudek-Peric Aleksandra M, Faggioni Alberto, Fucikova Jitka, Gaipl Udo S, Golab Jakub, Gougeon Marie-Lise, Hamblin Michael R, Hemminki Akseli, Herrmann Martin, Hodge James W, Kepp Oliver, Kroemer Guido, Krysko Dmitri V, Land Walter G, Madeo Frank, Manfredi Angelo A, Mattarollo Stephen R, Maueroder Christian, Merendino Nicolò, Multhoff Gabriele, Pabst Thomas, Ricci Jean-Ehrland, Riganti Chiara, Romano Erminia, Rufo Nicole, Smyth Mark J, Sonnemann Jürgen, Spisek Radek, Stagg John, Vacchelli Erika, Vandenabeele Peter, Vandenberk Lien, Van den Eynde Benoit J, Van Gool Stefaan, Velotti Francesca, Zitvogel Laurence, Agostinis Patrizia

机构信息

Cell Death Research and Therapy Laboratory, Department of Cellular Molecular Medicine, KU Leuven - University of Leuven , Leuven , Belgium.

Equipe 11 Labellisée Ligue Contre le Cancer, Centre de Recherche des Cordeliers , Paris , France ; U1138, INSERM , Paris , France ; Université Paris Descartes, Sorbonne Paris Cité , Paris , France ; Université Pierre et Marie Curie , Paris , France ; Gustave Roussy Comprehensive Cancer Institute , Villejuif , France.

出版信息

Front Immunol. 2015 Nov 20;6:588. doi: 10.3389/fimmu.2015.00588. eCollection 2015.

Abstract

The immunogenicity of malignant cells has recently been acknowledged as a critical determinant of efficacy in cancer therapy. Thus, besides developing direct immunostimulatory regimens, including dendritic cell-based vaccines, checkpoint-blocking therapies, and adoptive T-cell transfer, researchers have started to focus on the overall immunobiology of neoplastic cells. It is now clear that cancer cells can succumb to some anticancer therapies by undergoing a peculiar form of cell death that is characterized by an increased immunogenic potential, owing to the emission of the so-called "damage-associated molecular patterns" (DAMPs). The emission of DAMPs and other immunostimulatory factors by cells succumbing to immunogenic cell death (ICD) favors the establishment of a productive interface with the immune system. This results in the elicitation of tumor-targeting immune responses associated with the elimination of residual, treatment-resistant cancer cells, as well as with the establishment of immunological memory. Although ICD has been characterized with increased precision since its discovery, several questions remain to be addressed. Here, we summarize and tabulate the main molecular, immunological, preclinical, and clinical aspects of ICD, in an attempt to capture the essence of this phenomenon, and identify future challenges for this rapidly expanding field of investigation.

摘要

恶性细胞的免疫原性最近已被公认为癌症治疗疗效的关键决定因素。因此,除了开发直接的免疫刺激方案,包括基于树突状细胞的疫苗、检查点阻断疗法和过继性T细胞转移外,研究人员已开始关注肿瘤细胞的整体免疫生物学。现在很清楚,癌细胞可通过经历一种特殊形式的细胞死亡而对某些抗癌疗法产生反应,这种细胞死亡的特征是由于所谓的“损伤相关分子模式”(DAMPs)的释放而具有增强的免疫原性潜力。死于免疫原性细胞死亡(ICD)的细胞释放DAMPs和其他免疫刺激因子,有利于与免疫系统建立有效的界面。这导致引发与消除残留的、对治疗有抗性的癌细胞以及建立免疫记忆相关的肿瘤靶向免疫反应。尽管自发现以来,ICD已得到更精确的表征,但仍有几个问题有待解决。在此,我们总结并列表展示ICD的主要分子、免疫、临床前和临床方面,试图抓住这一现象的本质,并确定这一迅速扩展的研究领域未来的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb92/4653610/0e669de67293/fimmu-06-00588-g001.jpg

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