Tumor microenvironment and CAR-T cell immunotherapy in B-cell lymphoma

被引:9
作者
Cai, Fengqing [1 ]
Zhang, Junfeng [1 ]
Gao, Hui [1 ]
Shen, Hongqiang [1 ,2 ,3 ]
机构
[1] Zhejiang Univ, Childrens Hosp, Natl Clin Res Ctr Child Hlth, Dept Clin Lab,Sch Med, Hangzhou, Peoples R China
[2] Zhejiang Univ, Childrens Hosp, Natl Clin Res Ctr Child Hlth, Dept Hematol Oncol,Sch Med, Hangzhou, Peoples R China
[3] Zhejiang Univ, Joint Res Ctr Immune Landscape & Precis Med Childr, Binjiang Inst, Hangzhou, Peoples R China
关键词
B-cell lymphoma; CAR-T cell; resistance; strategies; tumor microenvironment (TME); CO-STIMULATION; CANCER; ACTIVATION; DIFFERENTIATION; DISRUPTION; EXPRESSION; THERAPY; HODGKIN;
D O I
10.1111/ejh.14103
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Chimeric receptor antigen T cell (CAR-T cell) therapy has demonstrated effectiveness and therapeutic potential in the immunotherapy of hematological malignancies, representing a promising breakthrough in cancer treatment. Despite the efficacy of CAR-T cell therapy in B-cell lymphoma, response variability, resistance, and side effects remain persistent challenges. The tumor microenvironment (TME) plays an intricate role in CAR-T cell therapy of B-cell lymphoma. The TME is a complex and dynamic environment that includes various cell types, cytokines, and extracellular matrix components, all of which can influence CAR-T cell function and behavior. This review discusses the design principles of CAR-T cells, TME in B-cell lymphoma, and the mechanisms by which TME influences CAR-T cell function. We discuss emerging strategies aimed at modulating the TME, targeting immunosuppressive cells, overcoming inhibitory signaling, and improving CAR-T cell infiltration and persistence. Therefore, these processes enhance the efficacy of CAR-T cell therapy and improve patient outcomes in B-cell lymphoma. Further research will be needed to investigate the molecular and cellular events that occur post-infusion, including changes in TME composition, immune cell interactions, cytokine signaling, and potential resistance mechanisms. Understanding these processes will contribute to the development of more effective CAR-T cell therapies and strategies to mitigate treatment-related toxicities.
引用
收藏
页码:223 / 235
页数:13
相关论文
共 124 条
[1]   Structural Determinants of Chimeric Antigen Receptor Design [J].
Abdo, Luiza ;
Aragao, Emmanuel Arthur ;
Bonamino, Martin Hernan .
CRITICAL REVIEWS IN IMMUNOLOGY, 2021, 41 (01) :89-104
[2]   Anti-CD19 CAR T-Cell Therapy for B-Cell Non-Hodgkin Lymphoma [J].
Abramson, Jeremy S. .
TRANSFUSION MEDICINE REVIEWS, 2020, 34 (01) :29-33
[3]   IL-7 and CCL19 expression in CAR-T cells improves immune cell infiltration and CAR-T cell survival in the tumor [J].
Adachi, Keishi ;
Kano, Yosuke ;
Nagai, Tomohiko ;
Okuyama, Namiko ;
Sakoda, Yukimi ;
Tamada, Koji .
NATURE BIOTECHNOLOGY, 2018, 36 (04) :346-+
[4]   CAR T cell therapy as a promising approach in cancer immunotherapy: challenges and opportunities [J].
Akhoundi, Maryam ;
Mohammadi, Mahsa ;
Sahraei, Seyedeh Saeideh ;
Sheykhhasan, Mohsen ;
Fayazi, Nashmin .
CELLULAR ONCOLOGY, 2021, 44 (03) :495-523
[5]   CAR T-cells and macrophages in large B-cell lymphoma: impact on toxicity and efficacy [J].
Al Zaki, Ajlan ;
McCurry, Dustin ;
Strati, Paolo .
LEUKEMIA & LYMPHOMA, 2023, 64 (04) :808-815
[6]   Preparing for CAR T cell therapy: patient selection, bridging therapies and lymphodepletion [J].
Amini, Leila ;
Silbert, Sara K. ;
Maude, Shannon L. ;
Nastoupil, Loretta J. ;
Ramos, Carlos A. ;
Brentjens, Renier J. ;
Sauter, Craig S. ;
Shah, Nirali N. ;
Abou-El-Enein, Mohamed .
NATURE REVIEWS CLINICAL ONCOLOGY, 2022, 19 (05) :342-355
[7]   Advances in CAR-T Cell Genetic Engineering Strategies to Overcome Hurdles in Solid Tumors Treatment [J].
Andrea, Alain E. ;
Chiron, Andrada ;
Mallah, Sarah ;
Bessoles, Stephanie ;
Sarrabayrouse, Guillaume ;
Hacein-Bey-Abina, Salima .
FRONTIERS IN IMMUNOLOGY, 2022, 13
[8]   Tumor-activated lymph node fibroblasts suppress T cell function in diffuse large B cell lymphoma [J].
Apollonio, Benedetta ;
Spada, Filomena ;
Petrov, Nedyalko ;
Cozzetto, Domenico ;
Papazoglou, Despoina ;
Jarvis, Peter ;
Kannambath, Shichina ;
Terranova-Barberio, Manuela ;
Amini, Rose-Marie ;
Enblad, Gunilla ;
Graham, Charlotte ;
Benjamin, Reuben ;
Phillips, Elisabeth ;
Ellis, Richard ;
Nuamah, Rosamond ;
Saqi, Mansoor ;
Calado, Dinis P. ;
Rosenquist, Richard ;
Sutton, Lesley A. ;
Salisbury, Jon ;
Zacharioudakis, Georgios ;
Vardi, Anna ;
Hagner, Patrick R. ;
Gandhi, Anita K. ;
Bacac, Marina ;
Claus, Christina ;
Umana, Pablo ;
Jarrett, Ruth F. ;
Klein, Christian ;
Deutsch, Alexander ;
Ramsay, Alan G. .
JOURNAL OF CLINICAL INVESTIGATION, 2023, 133 (13)
[9]   Immune cell constitution in the tumor microenvironment predicts the outcome in diffuse large B-cell lymphoma [J].
Autio, Matias ;
Leivonen, Suvi-Katri ;
Brueck, Oscar ;
Mustjoki, Satu ;
Jorgensen, Judit Meszaros ;
Karjalainen-Lindsberg, Marja-Liisa ;
Beiske, Klaus ;
Holte, Harald ;
Pellinen, Teijo ;
Leppa, Sirpa .
HAEMATOLOGICA, 2021, 106 (03) :718-729
[10]   Engineered Cytokine Signaling to Improve CAR T Cell Effector Function [J].
Bell, Matthew ;
Gottschalk, Stephen .
FRONTIERS IN IMMUNOLOGY, 2021, 12