1.Progress in Research and Application of CAR-T Cell Therapy in T-Lymphocyte Tumors --Review.
Journal of Experimental Hematology 2023;31(6):1894-1898
T-lymphocyte tumors are a group of diseases containing various types of lymphatic system tumors, with strong heterogeneity and poor clinical outcomes. Chimeric antigen receptor T (CAR-T) cell therapy, as a new immune cell therapy, has made a breakthrough in the field of B-lymphocyte tumors. People are interested in the application prospect of this technique in the field of T-lymphocyte tumors. Some studies have shown that CAR-T cell therapy has made some progress in the treatment of T-lymphocyte tumors, and CAR-T for some targets has entered the stage of clinical trials. However, due to the characteristics of T cells, there are also many challenges. This article reviews the research and application of CAR-T cell therapy in T-lymphocyte tumors.
Humans
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T-Lymphocytes
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Receptors, Chimeric Antigen/metabolism*
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Neoplasms/metabolism*
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Immunotherapy, Adoptive/methods*
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Cell- and Tissue-Based Therapy
2.Progress in Chimeric Antigen Receptor-Modified Natural Killer Cells for Multiple Myeloma.
Wen-Jiao TANG ; Yan LI ; Yu-Huan ZHENG ; Li ZHANG ; Ting NIU
Acta Academiae Medicinae Sinicae 2023;45(2):290-297
Although the development of novel drugs has significantly improved the survival of patients with multiple myeloma (MM) over the past decades,the lack of effective therapeutic options for relapsed and refractory MM results in poor prognosis.The chimeric antigen receptor (CAR) T-cell therapy has achieved considerable progress in relapsed and refractory MM.Nevertheless,this therapy still has limitations such as cytokine release syndrome,neurotoxicity,and off-target effects.Natural killer (NK) cells,as a critical component of the innate immune system,play an essential role in tumor immunosurveillance.Therefore,CAR-modified NK (CAR-NK) cells are put forward as a therapeutic option for MM.The available studies have suggested that multiple targets can be used as specific therapeutic targets for CAR-NK cell therapy and confirmed their antitumor effects in MM cell lines and animal models.This review summarizes the anti-tumor mechanisms,biological characteristics,and dysfunction of NK cells in the MM tumor microenvironment,as well as the basic and clinical research progress of CAR-NK cells in treating MM.
Animals
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Receptors, Chimeric Antigen/metabolism*
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Multiple Myeloma/metabolism*
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Killer Cells, Natural/metabolism*
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Immunotherapy, Adoptive/methods*
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Tumor Microenvironment
3.Application of TARP luciferase reporter system in function identification of CAR-T cells.
Sixin LIANG ; Rui ZHENG ; Xiaojuan ZHAO ; Yiting ZHANG ; Pengju WANG ; Ruotong MENG ; Bo YAN ; Angang YANG
Chinese Journal of Cellular and Molecular Immunology 2023;39(5):397-403
Objective To investigate a convenient and quantitative solution to activation levels and functional characterization of CAR-T cells by inserting T cell activity-responsive promoter (TARP) nanoluciferase reporter gene system into a lentiviral plasmid containing the gene encoding the chimeric antigen receptor (CAR). Methods The recombinant plasmid was constructed by using whole gene synthesis and molecular cloning techniques. The lentivirus was packaged and was infected with human primary T lymphocytes. Flow cytometry was used to detected the positive rate of lentivirus-infected T cells. The functional characterization of CAR-T cells was identified by luciferase reporter gene system, Western blot, flow cytometry, and small animal live imaging techniques. Results The results of enzyme digestion identification and the plasmid sequencing showed that the recombinant plasmids were constructed, and flow cytometry displayed the normal preparation of CAR-T cells. This system could dynamically respond to the activation of CAR-T cells by luciferase reporter gene system. The functional assay in vitro confirmed that the system could reflect the exhaustion of CAR-T cells, and the small animal live imaging results demonstrated that the system can be used as a tracer of CAR-T cells in mice. Conclusion TARP nanoluciferase reporter gene system provides a more convenient, sensitive and quantitative method for evaluating CAR-T cells activation level, exhaustion phenotype and tracing.
Humans
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Animals
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Mice
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T-Lymphocytes
;
Cell Line, Tumor
;
Receptors, Chimeric Antigen/genetics*
;
Promoter Regions, Genetic
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Immunotherapy, Adoptive/methods*
4.Preparation of CD52-targeted chimeric antigen receptor-modified T cells and their anti-leukemia effects.
Yan LIU ; Yu LIU ; Ke Jing TANG ; Zhao Qi CHEN ; Jun Li MOU ; Ying Xi XU ; Hai Yan XING ; Zheng TIAN ; Qing RAO ; Min WANG ; Jian Xiang WANG
Chinese Journal of Hematology 2022;43(4):279-286
Objective: To construct chimeric antigen receptor (CAR) T cells targeting CD52 (CD52 CAR-T) and validate the effect of CD52 CAR-T cells on CD52-positive leukemia. Methods: A second-generation CD52-targeting CAR bearing 4-1BB costimulatory domain was ligated into a lentiviral vector through molecular cloning. Lentivirus was prepared and packaged by 293 T cells with a four-plasmid system. Fluorescein was used to label cell surface antigens to evaluate the phenotype of CD52 CAR-T cells after infection. Flow cytometry and ELISA were used to evaluate the specific cytotoxicity of CD52 CAR-T cells to CD52-positive cell lines in vitro. Results: ①A pCDH-CD52scFv-CD8α-4-1BB-CD3ζ-GFP expressing plasmid was successfully constructed and used to transduce T cells expressing a novel CD52-targeting CAR. ②On day 6, CD52-positive T cells were almost killed by CD52-targeted CAR-T post lentivirus transduction [CD52 CAR-T (4.48 ± 4.99) %, vs Vector-T (56.58±19.8) %, P=0.011]. ③T cells transduced with the CAR targeting CD52 showed low levels of apoptosis and could be expanded long-term ex vivo. ④The CD52 CAR could promote T cell differentiation into central and effector memory T cells, whereas the proportion of T cells with a CD45RA(+) effector memory phenotype were reduced. ⑤CD52 CAR-T cells could specifically kill CD52-positive HuT78-19t cells but had no killing effect on CD52-negative MOLT4-19t cells. For CD52 CAR-T cells, the percentage of residual of HuT78-19t cells was (2.66±1.60) % at an the E:T ratio of 1∶1 for 24 h, while (56.66±5.74) % of MOLT4-19t cells survived (P<0.001) . ⑥The results of a degranulation experiment confirmed that HuT78-19t cells significantly activated CD52 CAR-T cells but not MOLT4-19t cells[ (57.34±11.25) % vs (13.06± 4.23) %, P<0.001]. ⑦CD52 CAR-T cells released more cytokines when co-cultured with HuT78-19t cells than that of vector-T cells [IFN-γ: (3706±226) pg/ml, P<0.001; TNF-α: (1732±560) pg/ml, P<0.01]. Conclusions: We successfully prepared CD52 CAR-T cells with anti-leukemia effects, which might provide the foundation for further immunotherapy.
CD52 Antigen
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Cell Line, Tumor
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Humans
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Immunotherapy, Adoptive/methods*
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Lentivirus/genetics*
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Leukemia
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Receptors, Antigen, T-Cell
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Receptors, Chimeric Antigen/genetics*
5.CAR T cells redirected against tumor-specific antigen glycoforms: can low-sugar antigens guarantee a sweet success?
Pooria SAFARZADEH KOZANI ; Pouya SAFARZADEH KOZANI ; Fatemeh RAHBARIZADEH
Frontiers of Medicine 2022;16(3):322-338
Immune-based therapies have experienced a pronounced breakthrough in the past decades as they acquired multiple US Food and Drug Administration (FDA) approvals for various indications. To date, six chimeric antigen receptor T cell (CAR-T) therapies have been permitted for the treatment of certain patients with relapsed/refractory hematologic malignancies. However, several clinical trials of solid tumor CAR-T therapies were prematurely terminated, or they reported life-threatening treatment-related damages to healthy tissues. The simultaneous expression of target antigens by healthy organs and tumor cells is partly responsible for such toxicities. Alongside targeting tumor-specific antigens, targeting the aberrantly glycosylated glycoforms of tumor-associated antigens can also minimize the off-tumor effects of CAR-T therapies. Tn, T, and sialyl-Tn antigens have been reported to be involved in tumor progression and metastasis, and their expression results from the dysregulation of a series of glycosyltransferases and the endoplasmic reticulum protein chaperone, Cosmc. Moreover, these glycoforms have been associated with various types of cancers, including prostate, breast, colon, gastric, and lung cancers. Here, we discuss how underglycosylated antigens emerge and then detail the latest advances in the development of CAR-T-based immunotherapies that target some of such antigens.
Antigens, Neoplasm/chemistry*
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Biomarkers, Tumor/metabolism*
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Glycosylation
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Hematologic Neoplasms/drug therapy*
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Humans
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Immunotherapy, Adoptive/methods*
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Male
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Neoplasm Recurrence, Local/metabolism*
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Receptors, Chimeric Antigen
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T-Lymphocytes
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United States
6.Relapse after CAR-T cell therapy in B-cell malignancies: challenges and future approaches.
Tianning GU ; Meng ZHU ; He HUANG ; Yongxian HU
Journal of Zhejiang University. Science. B 2022;23(10):793-811
Chimeric antigen receptor-T (CAR-T) cell therapy, as a novel cellular immunotherapy, has dramatically reshaped the landscape of cancer treatment, especially in hematological malignancies. However, relapse is still one of the most troublesome obstacles to achieving broad clinical application. The intrinsic factors and superior adaptability of tumor cells mark a fundamental aspect of relapse. The unique biological function of CAR-T cells governed by their special CAR construction also affects treatment efficacy. Moreover, complex cross-interactions among CAR-T cells, tumor cells, and the tumor microenvironment (TME) profoundly influence clinical outcomes concerning CAR-T cell function and persistence. Therefore, in this review, based on the most recent discoveries, we focus on the challenges of relapse after CAR-T cell therapy in B-cell malignancies from the perspective of tumor cells, CAR-T cells, and the TME. We also discuss the corresponding basic and clinical approaches that may overcome the problem in the future. We aim to provide a comprehensive understanding for scientists and physicians that will help improve research and clinical practice.
Cell- and Tissue-Based Therapy
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Humans
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Immunotherapy, Adoptive/methods*
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Neoplasm Recurrence, Local/therapy*
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Neoplasms/pathology*
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Receptors, Chimeric Antigen
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T-Lymphocytes
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Tumor Microenvironment
7.Lymphatic vessels, miRNAs, and CAR T cells in tumor immunology.
Journal of Zhejiang University. Science. B 2020;21(1):1-2
This special feature contains three review articles that summarize recent advances pertaining to tumor immunobiology. Normalization of antitumor immunity through checkpoint inhibitors has achieved significant clinical success and benefited many cancer patients. However, not all cancer patients respond to these treatments, and among the responders, some may develop resistance and others may suffer autoimmunity that requires intervention. Tumor immunotherapy holds promise for further improving the survival of cancer patients, but deeper understanding of immunological networks that regulate anti- and pro-tumor immunity is needed. The review papers collected in this issue cover a few topics that may stimulate future interest in the relevant research field.
Humans
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Immunotherapy, Adoptive/methods*
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Lymphatic Vessels/physiology*
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MicroRNAs/physiology*
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Neoplasms/therapy*
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Receptors, Chimeric Antigen/immunology*
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T-Lymphocytes/immunology*
8.Current advances in chimeric antigen receptor T-cell therapy for refractory/relapsed multiple myeloma.
He HUANG ; Heng-Wei WU ; Yong-Xian HU
Journal of Zhejiang University. Science. B 2020;21(1):29-41
Multiple myeloma (MM), considered an incurable hematological malignancy, is characterized by its clonal evolution of malignant plasma cells. Although the application of autologous stem cell transplantation (ASCT) and the introduction of novel agents such as immunomodulatory drugs (IMiDs) and proteasome inhibitors (PIs) have doubled the median overall survival to eight years, relapsed and refractory diseases are still frequent events in the course of MM. To achieve a durable and deep remission, immunotherapy modalities have been developed for relapsed/refractory multiple myeloma (RRMM). Among these approaches, chimeric antigen receptor (CAR) T-cell therapy is the most promising star, based on the results of previous success in B-cell neoplasms. In this immunotherapy, autologous T cells are engineered to express an artificial receptor which targets a tumor-associated antigen and initiates the T-cell killing procedure. Tisagenlecleucel and Axicabtagene, targeting the CD19 antigen, are the two pacesetters of CAR T-cell products. They were approved by the US Food and Drug Administration (FDA) in 2017 for the treatment of acute lymphocytic leukemia (ALL) and diffuse large B-cell lymphoma (DLBCL). Their development enabled unparalleled efficacy in combating hematopoietic neoplasms. In this review article, we summarize six promising candidate antigens in MM that can be targeted by CARs and discuss some noteworthy studies of the safety profile of current CAR T-cell therapy.
ADP-ribosyl Cyclase 1/immunology*
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B-Cell Maturation Antigen/immunology*
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Humans
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Immunotherapy, Adoptive/methods*
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Multiple Myeloma/therapy*
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Receptors, Chimeric Antigen/immunology*
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Receptors, G-Protein-Coupled/immunology*
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Signaling Lymphocytic Activation Molecule Family/immunology*
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Syndecan-1/immunology*
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T-Lymphocytes/immunology*
9.High-affinity T cell receptors redirect cytokine-activated T cells (CAT) to kill cancer cells.
Synat KANG ; Yanyan LI ; Yifeng BAO ; Yi LI
Frontiers of Medicine 2019;13(1):69-82
Cytokine-activated T cells (CATs) can be easily expanded and are widely applied to cancer immunotherapy. However, the good efficacy of CATs is rarely reported in clinical applications because CATs have no or very low antigen specificity. The low-efficacy problem can be resolved using T cell antigen receptor-engineered CAT (TCR-CAT). Herein, we demonstrate that NY-ESO-1 HLA-A*02:01-specific high-affinity TCR (HAT)-transduced CATs can specifically kill cancer cells with good efficacy. With low micromolar range dissociation equilibrium constants, HAT-transduced CATs showed good specificity with no off-target killing. Furthermore, the high-affinity TCR-CATs delivered significantly better activation and cytotoxicity than the equivalent TCR-engineered T cells (TCR-Ts) in terms of interferon-γ and granzyme B production and in vitro cancer cell killing ability. TCR-CAT may be a very good alternative to the expensive TCR-T, which is considered an effective personalized cyto-immunotherapy.
Cell Line, Tumor
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Cytokines
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metabolism
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Cytotoxicity, Immunologic
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Genetic Engineering
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HLA-A2 Antigen
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metabolism
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Humans
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Immunotherapy, Adoptive
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methods
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Lymphocyte Activation
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Receptors, Antigen, T-Cell
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genetics
;
immunology
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T-Lymphocytes
;
immunology
10.Chimeric antigen receptor T cell targeting EGFRvIII for metastatic lung cancer therapy.
Zhao ZHANG ; Jun JIANG ; Xiaodong WU ; Mengyao ZHANG ; Dan LUO ; Renyu ZHANG ; Shiyou LI ; Youwen HE ; Huijie BIAN ; Zhinan CHEN
Frontiers of Medicine 2019;13(1):57-68
Lung cancer is the most common incident cancer and the leading cause of cancer death. In recent years, the development of tumor immunotherapy especially chimeric antigen receptor T (CAR-T) cell has shown a promising future. Epidermal growth factor receptor variant III (EGFRvIII) is a tumor-specific mutation expressed in various types of tumors and has been detected in non-small cell lung cancer with a mutation rate of 10%. Thus, EGFRvIII is a potential antigen for targeted lung cancer therapy. In this study, CAR vectors were constructed and transfected into virus-packaging cells. Then, activated T cells were infected with retrovirus harvested from stable virus-producing single clone cell lines. CAR expression on the surfaces of the T cells was detected by flow cytometry and Western blot. The function of CAR-T targeting EGFRvIII was then evaluated. The EGFRvIII-CAR vector was successfully constructed and confirmed by DNA sequencing. A stable virus-producing cell line was produced from a single clone by limited dilution. The culture conditions for the cell line, including cell density, temperature, and culture medium were optimized. After infection with retrovirus, CAR was expressed on more than 90% of the T cells. The proliferation of CAR-T cells were induced by cytokine and specific antigen in vitro. More importantly, EGFRvIII-CART specifically and efficiently recognized and killed A549-EGFRvIII cells with an effector/target ratio of 10:1 by expressing and releasing cytokines, including perforin, granzyme B, IFN-γ, and TNF-α. The in vivo study indicated that the metastasis of A549-EGFRvIII cells in mice were inhibited by EGFRvIII-CART cells, and the survival of the mice was significantly prolonged with no serious side effects. EGFRvIII-CART showed significantly efficient antitumor activity against lung cancer cells expressing EGFRvIII in vivo and in vitro. Therefore, CAR-T targeting EGFRvIII is a potential therapeutic strategy in preventing recurrence and metastasis of lung cancer after surgery.
Animals
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Carcinoma, Non-Small-Cell Lung
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immunology
;
therapy
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Cell Line, Tumor
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ErbB Receptors
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immunology
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metabolism
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Female
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Humans
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Immunotherapy, Adoptive
;
methods
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Lung Neoplasms
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immunology
;
therapy
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Mice
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Mice, Inbred NOD
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Receptors, Chimeric Antigen
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immunology
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T-Lymphocytes
;
immunology
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Xenograft Model Antitumor Assays

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