Consensus guidelines for the detection of immunogenic cell death

被引:663
作者
Kepp, Oliver [1 ,2 ,3 ,4 ]
Senovilla, Laura [2 ,3 ,4 ,5 ]
Vitale, Ilio [6 ]
Vacchelli, Erika [1 ,2 ]
Adjemian, Sandy [1 ,2 ,7 ]
Agostinis, Patrizia [8 ]
Apetoh, Lionel [9 ,10 ,11 ]
Aranda, Fernando [1 ,2 ]
Barnaba, Vincenzo [12 ,13 ]
Bloy, Norma [1 ,2 ]
Bracci, Laura [14 ]
Breckpot, Karine [15 ]
Brough, David [16 ]
Buque, Aitziber [1 ,2 ]
Castro, Maria G. [17 ]
Cirone, Mara [18 ]
Colombo, Maria I. [19 ]
Cremer, Isabelle [2 ,20 ,21 ]
Demaria, Sandra [22 ]
Dini, Luciana [23 ]
Eliopoulos, Aristides G. [24 ,25 ]
Faggioni, Alberto [18 ]
Formenti, Silvia C. [26 ,27 ]
Fucikova, Jitka [28 ,29 ,30 ]
Gabriele, Lucia [14 ]
Gaipl, Udo S. [31 ]
Galon, Jerome [2 ,20 ,32 ,33 ]
Garg, Abhishek [8 ]
Ghiringhelli, Francois [9 ,10 ,11 ]
Giese, Nathalia A. [34 ]
Guo, Zong Sheng [35 ]
Hemminki, Akseli [36 ]
Herrmann, Martin [37 ]
Hodge, James W. [38 ]
Holdenrieder, Stefan [39 ]
Honeychurch, Jamie [40 ]
Hu, Hong-Min [41 ,42 ]
Huang, Xing [1 ,2 ,3 ,4 ]
Illidge, Tim M. [40 ]
Kono, Koji [43 ,44 ]
Korbelik, Mladen [45 ]
Krysko, Dmitri V. [46 ,47 ]
Loi, Sherene [48 ,49 ]
Lowenstein, Pedro R. [17 ]
Lugli, Enrico [50 ,51 ]
Ma, Yuting [1 ,2 ]
Madeo, Frank [52 ]
Manfredi, Angelo A. [53 ,54 ]
Martins, Isabelle [55 ,56 ]
Mavilio, Domenico [50 ,51 ]
机构
[1] Ctr Rech Cordeliers, Ligue Natl Canc, Equipe 11, Paris, France
[2] INSERM, U1138, Paris, France
[3] Metabol Platform, Villejuif, France
[4] Cell Biol Platform, Villejuif, France
[5] INSERM, U1015, Villejuif, France
[6] Regina Elena Inst Canc Res, Rome, Italy
[7] Univ Sao Paulo, Inst Biomed Sci, Dept Immunol, Mol Cell Biol Lab, Sao Paulo, Brazil
[8] Univ Leuven, Dept Cellular & Mol Med, Cell Death Res & Therapy, Leuven, Belgium
[9] INSERM, UMR866, Dijon, France
[10] Ctr Georges Francois Leclerc, Dijon, France
[11] Univ Bourgogne, Dijon, France
[12] Univ Roma La Sapienza, Dept Internal Med & Med Sci, I-00185 Rome, Italy
[13] Fdn Cenci Bolognetti, Ist Pasteur, Rome, Italy
[14] Ist Super Sanita, Dept Hematol Oncol & Mol Med, I-00161 Rome, Italy
[15] Free Univ Brussels, Dept Biomed Sci Med Sch, Lab Mol & Cellular Therapy, Jette, Belgium
[16] Univ Manchester, Fac Life Sci, Manchester, Lancs, England
[17] Univ Michigan, Sch Med, Dept Neurosurg & Cell & Dev Biol, Ann Arbor, MI 48109 USA
[18] Univ Roma La Sapienza, Dept Expt Med, I-00185 Rome, Italy
[19] Univ Nacl Cuyo, Inst Histol & Embriol IHEM, Fac Ciencias Med, CONICET,Lab Biol Celular & Mol, RA-5500 Mendoza, Argentina
[20] Univ Paris 06, Paris, France
[21] Ctr Rech Cordeliers, Equipe 13, Paris, France
[22] NYU, Sch Med, Dept Pathol, New York, NY USA
[23] Univ Salento, Dept Biol & Environm Sci & Technol DiSTeBA, Lecce, Italy
[24] Univ Crete, Sch Med, Div Basic Sci, Mol & Cellular Biol Lab, Iraklion, Greece
[25] Fdn Res & Technol Hellas, Inst Mol Biol & Biotechnol, Iraklion, Greece
[26] NYU, Sch Med, Dept Radiat Oncol, New York, NY USA
[27] Langone Med Ctr, New York, NY USA
[28] Charles Univ Prague, Fac Med 2, Dept Immunol, Prague, Czech Republic
[29] Charles Univ Prague, Univ Hosp Motol, Prague, Czech Republic
[30] Sotio, Prague, Czech Republic
[31] Univ Erlangen Nurnberg, Univ Hosp Erlangen, Dept Radiat Oncol, D-91054 Erlangen, Germany
[32] Univ Paris 05, Univ Paris Descartes, Sorbonne Paris Cite, Paris, France
[33] Ctr Rech Cordeliers, Lab Integrat Canc Immunol, Paris, France
[34] Univ Heidelberg Hosp, European Pancreas Ctr, Dept Surg, Heidelberg, Germany
[35] Univ Pittsburgh, Dept Surg, Pittsburgh, PA USA
[36] Univ Helsinki, Transplantat Lab, Canc Gene Therapy Grp, Haartman Inst, Helsinki, Finland
[37] Univ Erlangen Nurnberg, Dept Internal Med 3, D-91054 Erlangen, Germany
[38] NCI, Tumor Immunol & Biol Lab, Ctr Canc Res, NIH, Bethesda, MD 20892 USA
[39] Univ Hosp Bonn, Inst Clin Chem & Clin Pharmacol, Bonn, Germany
[40] Univ Manchester, Manchester Acad Hlth Sci Ctr, Inst Canc Studies, Fac Med & Human Sci, Manchester, Lancs, England
[41] Southeast Univ, Affiliated Hosp 2, Canc Res & Biotherapy Ctr, Nanjing, Jiangsu, Peoples R China
[42] Providence Portland Med Ctr, Earle A Chiles Res Inst, Lab Canc Immunobiol, Portland, OR USA
[43] Natl Univ Singapore, Dept Surg, Singapore 117548, Singapore
[44] Natl Univ Singapore, Canc Sci Inst Singapore, Singapore 117548, Singapore
[45] British Columbia Canc Agcy, Vancouver, BC V5Z 4E6, Canada
[46] VIB Inflammat Res Ctr, Ghent, Belgium
[47] Univ Ghent, Dept Biomed Mol Biol, B-9000 Ghent, Belgium
[48] Peter MacCallum Canc Ctr, Div Canc Med, East Melbourne, Vic, Australia
[49] Peter MacCallum Canc Ctr, Div Res, East Melbourne, Vic, Australia
[50] Humanitas Clin & Res Ctr, Unit Clin & Expt Immunol, Milan, Italy
基金
欧洲研究理事会;
关键词
ATP release; autophagy; calreticulin; endoplasmic reticulum stress; HMGB1; immunotherapy; MITOCHONDRIAL-MEMBRANE PERMEABILIZATION; HEAT-SHOCK PROTEINS; FLOW-CYTOMETRIC DETECTION; FIND-ME SIGNAL; IMMUNE-RESPONSES; APOPTOTIC CELLS; CALRETICULIN EXPOSURE; TUMOR-CELLS; ATP RELEASE; MOLECULAR-PATTERN;
D O I
10.4161/21624011.2014.955691
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Apoptotic cells have long been considered as intrinsically tolerogenic or unable to elicit immune responses specific for dead cell-associated antigens. However, multiple stimuli can trigger a functionally peculiar type of apoptotic demise that does not go unnoticed by the adaptive arm of the immune system, which we named "immunogenic cell death" (ICD). ICD is preceded or accompanied by the emission of a series of immunostimulatory damage-associated molecular patterns (DAMPs) in a precise spatiotemporal configuration. Several anticancer agents that have been successfully employed in the clinic for decades, including various chemotherapeutics and radiotherapy, can elicit ICD. Moreover, defects in the components that underlie the capacity of the immune system to perceive cell death as immunogenic negatively influence disease outcome among cancer patients treated with ICD inducers. Thus, ICD has profound clinical and therapeutic implications. Unfortunately, the gold-standard approach to detect ICD relies on vaccination experiments involving immunocompetent murine models and syngeneic cancer cells, an approach that is incompatible with large screening campaigns. Here, we outline strategies conceived to detect surrogate markers of ICD in vitro and to screen large chemical libraries for putative ICD inducers, based on a high-content, high-throughput platform that we recently developed. Such a platform allows for the detection of multiple DAMPs, like cell surface-exposed calreticulin, extracellular ATP and high mobility group box 1 (HMGB1), and/or the processes that underlie their emission, such as endoplasmic reticulum stress, autophagy and necrotic plasma membrane permeabilization. We surmise that this technology will facilitate the development of next-generation anticancer regimens, which kill malignant cells and simultaneously convert them into a cancer-specific therapeutic vaccine.
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页数:19
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