Immunogenic ferroptosis and where to find it?

被引:96
作者
Demuynck, Robin [1 ,2 ]
Efimova, Iuliia [1 ,2 ]
Naessens, Faye [1 ]
Krysko, Dmitri, V [1 ,2 ,3 ,4 ]
机构
[1] Univ Ghent, Dept Human Struct & Repair, Cell Death Invest & Therapy Lab, Ghent, Belgium
[2] Canc Res Inst Ghent, Ghent, Belgium
[3] IM Sechenov First Moscow State Med Univ, Dept Pathophysiol, Moscow, Russia
[4] Natl Res Lobachevsky State Univ Nizhny Novgorod, Inst Biol & Biomed, Niznij Novgorod, Russia
基金
俄罗斯科学基金会;
关键词
tumor microenvironment; phagocytosis; immunotherapy; immunomodulation; immunogenicity; vaccine; ERASTIN-INDUCED FERROPTOSIS; NECK-CANCER CELLS; CISPLATIN-RESISTANT HEAD; APOPTOTIC CELLS; ANTICANCER CHEMOTHERAPY; CALRETICULIN EXPOSURE; REGULATES FERROPTOSIS; NECROTIC CELLS; DEATH; INHIBITION;
D O I
10.1136/jitc-2021-003430
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Ferroptosis is a recently discovered form of regulated cell death that is morphologically, genetically, and biochemically distinct from apoptosis and necroptosis, and its potential use in anticancer therapy is emerging. The strong immunogenicity of (early) ferroptotic cancer cells broadens the current concept of immunogenic cell death and opens up new possibilities for cancer treatment. In particular, induction of immunogenic ferroptosis could be beneficial for patients with cancers resistant to apoptosis and necroptosis. However, ferroptotic cancer cells may be a rich source of oxidized lipids, which contribute to decreased phagocytosis and antigen cross-presentation by dendritic cells and thus may favor tumor evasion. This could explain the non-immunogenicity of late ferroptotic cells. Besides the presence of lactate in the tumor microenvironment, acidification and hypoxia are essential factors promoting ferroptosis resistance and affecting its immunogenicity. Here, we critically discuss the crucial mediators controlling the immunogenicity of ferroptosis that modulate the induction of antitumor immunity. We emphasize that it will be necessary to also identify the tolerogenic (ie, immunosuppressive) nature of ferroptosis, which can lead to tumor evasion.
引用
收藏
页数:18
相关论文
共 153 条
[1]   The intrinsic immunogenic properties of cancer cell lines, immunogenic cell death, and how these influence host antitumor immune responses [J].
Aaes, Tania Love ;
Vandenabeele, Peter .
CELL DEATH AND DIFFERENTIATION, 2021, 28 (03) :843-860
[2]   Immunodominant AH1 Antigen-Deficient Necroptotic, but Not Apoptotic, Murine Cancer Cells Induce Antitumor Protection [J].
Aaes, Tania Love ;
Verschuere, Hanne ;
Kaczmarek, Agnieszka ;
Heyndrickx, Liesbeth ;
Wiernicki, Bartosz ;
Delrue, Iris ;
De Craene, Bram ;
Taminau, Joachim ;
Delvaeye, Tinneke ;
Bertrand, Mathieu J. M. ;
Declercq, Wim ;
Berx, Geert ;
Krysko, Dmitri, V ;
Adjemian, Sandy ;
Vandenabeele, Peter .
JOURNAL OF IMMUNOLOGY, 2020, 204 (04) :775-787
[3]   Vaccination with Necroptotic Cancer Cells Induces Efficient Anti-tumor Immunity [J].
Aaes, Tania Love ;
Kaczmarek, Agnieszka ;
Delvaeye, Tinneke ;
De Craene, Bram ;
De Koker, Stefaan ;
Heyndrickx, Liesbeth ;
Delrue, Iris ;
Taminau, Joachim ;
Wiernicki, Bartosz ;
De Groote, Philippe ;
Garg, Abhishek D. ;
Leybaert, Luc ;
Grooten, Johan ;
Bertrand, Mathieu J. M. ;
Agostinis, Patrizia ;
Berx, Geert ;
Declercq, Wim ;
Vandenabeele, Peter ;
Krysko, Dmitri V. .
CELL REPORTS, 2016, 15 (02) :274-287
[4]   IFN-γ from lymphocytes induces PD-L1 expression and promotes progression of ovarian cancer [J].
Abiko, K. ;
Matsumura, N. ;
Hamanishi, J. ;
Horikawa, N. ;
Murakami, R. ;
Yamaguchi, K. ;
Yoshioka, Y. ;
Baba, T. ;
Konishi, I. ;
Mandai, M. .
BRITISH JOURNAL OF CANCER, 2015, 112 (09) :1501-1509
[5]   Modeling the effects of lipid peroxidation during ferroptosis on membrane properties [J].
Agmon, Eran ;
Solon, Jerome ;
Bassereau, Patricia ;
Stockwell, Brent R. .
SCIENTIFIC REPORTS, 2018, 8
[6]   The acidic tumor microenvironment drives a stem-like phenotype in melanoma cells [J].
Andreucci, Elena ;
Peppicelli, Silvia ;
Ruzzolini, Jessica ;
Bianchini, Francesca ;
Biagioni, Alessio ;
Papucci, Laura ;
Magnelli, Lucia ;
Mazzanti, Benedetta ;
Stecca, Barbara ;
Calorini, Lido .
JOURNAL OF MOLECULAR MEDICINE-JMM, 2020, 98 (10) :1431-1446
[7]   Ferroptosis at the crossroads of cancer-acquired drug resistance and immune evasion [J].
Angeli, Jose Pedro Friedmann ;
Krysko, Dmitri, V ;
Conrad, Marcus .
NATURE REVIEWS CANCER, 2019, 19 (07) :405-414
[8]   Inactivation of the ferroptosis regulator Gpx4 triggers acute renal failure in mice [J].
Angeli, Jose Pedro Friedmann ;
Schneider, Manuela ;
Proneth, Bettina ;
Tyurina, Yulia Y. ;
Tyurin, Vladimir A. ;
Hammond, Victoria J. ;
Herbach, Nadja ;
Aichler, Michaela ;
Walch, Axel ;
Eggenhofer, Elke ;
Basavarajappa, Devaraj ;
Radmark, Olof ;
Kobayashi, Sho ;
Seibt, Tobias ;
Beck, Heike ;
Neff, Frauke ;
Esposito, Irene ;
Wanke, Ruediger ;
Foerster, Heidi ;
Yefremova, Olena ;
Heinrichmeyer, Marc ;
Bornkamm, Georg W. ;
Geissler, Edward K. ;
Thomas, Stephen B. ;
Stockwell, Brent R. ;
O'Donnell, Valerie B. ;
Kagan, Valerian E. ;
Schick, Joel A. ;
Conrad, Marcus .
NATURE CELL BIOLOGY, 2014, 16 (12) :1180-U120
[9]   Resolving the paradox of ferroptotic cell death: Ferrostatin-1 binds to 15LOX/PEBP1 complex, suppresses generation of peroxidized ETE-PE, and protects against ferroptosis [J].
Anthonymuthu, Tamil S. ;
Tyurina, Yulia Y. ;
Sun, Wan-Yang ;
Mikulska-Ruminska, Karolina ;
Shrivastava, Indira H. ;
Tyurin, Vladimir A. ;
Cinemre, Fatma B. ;
Dar, Haider H. ;
VanDemark, Andrew P. ;
Holman, Theodore R. ;
Sadovsky, Yoel ;
Stockwell, Brent R. ;
He, Rong-Rong ;
Bahar, Ivet ;
Bayir, Hulya ;
Kagan, Valerian E. .
REDOX BIOLOGY, 2021, 38
[10]   The interaction between HMGB1 and TLR4 dictates the outcome of anticancer chemotherapy and radiotherapy [J].
Apetoh, Lionel ;
Ghiringhelli, Francois ;
Tesniere, Antoine ;
Criollo, Alfredo ;
Ortiz, Carla ;
Lidereau, Rosette ;
Mariette, Christophe ;
Chaput, Nathalie ;
Mira, Jean-Paul ;
Delaloge, Suzette ;
Andre, Fabrice ;
Tursz, Thomas ;
Kroemer, Guido ;
Zitvogel, Laurence .
IMMUNOLOGICAL REVIEWS, 2007, 220 :47-59