Literature DB >> 31444250

Clinical Efficacy and Tumor Microenvironment Influence in a Dose-Escalation Study of Anti-CD19 Chimeric Antigen Receptor T Cells in Refractory B-Cell Non-Hodgkin's Lymphoma.

Zi-Xun Yan1, Li Li1, Wen Wang2, Bin-Shen OuYang3, Shu Cheng1, Li Wang1,4, Wen Wu1, Peng-Peng Xu1, Muharrem Muftuoglu5, Ming Hao2, Su Yang2, Mu-Chen Zhang1, Zhong Zheng1, James Li2, Wei-Li Zhao6,4.   

Abstract

PURPOSE: Anti-CD19 chimeric antigen receptor (CAR) T cells represent a novel immunotherapy and are highly effective in treating relapsed/refractory B-cell non-Hodgkin's lymphoma (B-NHL). How tumor microenvironment influences clinical response to CAR T therapy remains of great interest. PATIENTS AND METHODS: A phase I, first-in-human, dose-escalation study of anti-CD19 JWCAR029 was conducted in refractory B-NHL (NCT03355859) and 10 patients received CAR T cells at an escalating dose of 2.5 × 107(n = 3), 5 × 107(n = 4), and 1 × 108(n = 3) cells. Core needle biopsy was performed on tumor samples collected from diffuse large B-cell lymphoma patients on Day -6 (1 day before lymphodepletion) and on Day 11 after CAR T-cell infusion when adequate CAR T-cell expansion was detected.
RESULTS: The overall response rate was 100%, with 6 of 9 (66.7%) evaluable patients achieving complete remission. The most common adverse events of grade 3 or higher were neutropenia (10/10, 100%), anemia (3/10, 30%), thrombocytopenia (3/10, 30%), and hypofibrinogenemia (2/10, 20%). Grade 1 cytokine release syndrome occurred in all patients and grade 3 neurotoxicity in 1 patient. The average peak levels of peripheral blood CAR T cells and cytokines were similar in 3 different dose levels, but CAR T cells were significantly higher in patients achieved complete remission on Day 29. Meanwhile, RNA sequencing identified gene expression signatures differentially enriched in complete and partial remission patients. Increased tumor-associated macrophage infiltration was negatively associated with remission status.
CONCLUSIONS: JWCAR029 was effective and safe in treating refractory B-NHL. The composition of the tumor microenvironment has a potential impact in CAR T therapy response. ©2019 American Association for Cancer Research.

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Year:  2019        PMID: 31444250     DOI: 10.1158/1078-0432.CCR-19-0101

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  24 in total

Review 1.  A giant step forward: chimeric antigen receptor T-cell therapy for lymphoma.

Authors:  Houli Zhao; Yiyun Wang; Elaine Tan Su Yin; Kui Zhao; Yongxian Hu; He Huang
Journal:  Front Med       Date:  2020-12-01       Impact factor: 4.592

Review 2.  Advances in targeted therapy for malignant lymphoma.

Authors:  Li Wang; Wei Qin; Yu-Jia Huo; Xiao Li; Qing Shi; John E J Rasko; Anne Janin; Wei-Li Zhao
Journal:  Signal Transduct Target Ther       Date:  2020-03-06

Review 3.  Chimeric antigen receptor (CAR) T-cell therapy for people with relapsed or refractory diffuse large B-cell lymphoma.

Authors:  Moritz Ernst; Annika Oeser; Burcu Besiroglu; Julia Caro-Valenzuela; Mohamed Abd El Aziz; Ina Monsef; Peter Borchmann; Lise J Estcourt; Nicole Skoetz; Marius Goldkuhle
Journal:  Cochrane Database Syst Rev       Date:  2021-09-13

Review 4.  CAR T-Cell Therapy Predictive Response Markers in Diffuse Large B-Cell Lymphoma and Therapeutic Options After CART19 Failure.

Authors:  Ana Carolina Caballero; Laura Escribà-Garcia; Carmen Alvarez-Fernández; Javier Briones
Journal:  Front Immunol       Date:  2022-07-06       Impact factor: 8.786

Review 5.  CAR T Cell Therapy in Hematological Malignancies: Implications of the Tumor Microenvironment and Biomarkers on Efficacy and Toxicity.

Authors:  Jing Yuan Tan; Muhammed Haiqal Low; Yunxin Chen; Francesca Lorraine Wei Inng Lim
Journal:  Int J Mol Sci       Date:  2022-06-22       Impact factor: 6.208

6.  Synergistic Effects of Zanubrutinib Combined With CD19 CAR-T Cells in Raji Cells in Vitro and in Vivo.

Authors:  Xiupeng Ye; Meijing Liu; Cuicui Lv; Yeqiong Li; Lan Chen; Jin Zhang; Juan Mu; Qi Deng
Journal:  Technol Cancer Res Treat       Date:  2022 Jan-Dec

Review 7.  Advances in targeted therapy for malignant lymphoma.

Authors:  Li Wang; Wei Qin; Yu-Jia Huo; Xiao Li; Qing Shi; John E J Rasko; Anne Janin; Wei-Li Zhao
Journal:  Signal Transduct Target Ther       Date:  2020-03-06

8.  Detection of engineered T cells in FFPE tissue by multiplex in situ hybridization and immunohistochemistry.

Authors:  Jocelyn H Wright; Li-Ya Huang; Stephanie Weaver; L Diego Archila; Megan S McAfee; Alexandre V Hirayama; Aude G Chapuis; Marie Bleakley; Anthony Rongvaux; Cameron J Turtle; R Savanh Chanthaphavong; Jean S Campbell; Robert H Pierce
Journal:  J Immunol Methods       Date:  2020-12-29       Impact factor: 2.303

9.  Tumor interferon signaling and suppressive myeloid cells are associated with CAR T-cell failure in large B-cell lymphoma.

Authors:  Michael D Jain; Hua Zhao; Xuefeng Wang; Reginald Atkins; Meghan Menges; Kayla Reid; Kristen Spitler; Rawan Faramand; Christina Bachmeier; Erin A Dean; Biwei Cao; Julio C Chavez; Bijal Shah; Aleksandr Lazaryan; Taiga Nishihori; Mohammed Hussaini; Ricardo J Gonzalez; John E Mullinax; Paulo C Rodriguez; Jose R Conejo-Garcia; Claudio Anasetti; Marco L Davila; Frederick L Locke
Journal:  Blood       Date:  2021-05-13       Impact factor: 25.476

10.  Anti-CD22 CAR-T Cell Therapy as a Salvage Treatment in B Cell Malignancies Refractory or Relapsed After Anti-CD19 CAR-T therapy.

Authors:  Haibo Zhu; Haobin Deng; Juan Mu; Cuicui Lyu; Yanyu Jiang; Qi Deng
Journal:  Onco Targets Ther       Date:  2021-07-02       Impact factor: 4.147

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