CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Efficacy and safety of humanized CD19 CAR-T as a salvage therapy for recurrent CNSL of B-ALL following murine CD19 CAR-T cell therapy.
Efficacy and safety of humanized CD19 CAR-T as a salvage therapy for recurrent CNSL of B-ALL following murine CD19 CAR-T cell therapy.
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本研究旨在比较人源化CD19嵌合抗原受体(CAR)-T细胞疗法与鼠源CD19 CAR-T 细胞疗法在复发性B急性淋巴细胞白血病(B-ALL)中的差异。一名患有B-ALL(BCR/ABL+)4年的62岁男性患者被诊断为复发性中枢神经系统白血病(CNSL)。在经过多个疗程的高剂量甲氨蝶呤联合鞘内化疗后,该患者接受了鼠源CD19 CAR-T 疗法并达到完全缓解(CR)。该患者在鼠源CD19 CAR-T 疗法后15个月再次被诊断为复发性CNSL,因此被纳入人源化CD19 CAR-T 疗法。随后,本研究旨在体外和小鼠体内比较鼠源与人源化CD19 CAR-T 细胞对Nalm-6细胞的作用。
该患者最初经鼠源CD19 CAR-T 疗法达到CR,伴有1级细胞因子释放综合征(CRS)和1级CAR-T 细胞相关脑病综合征(CRES)。该患者随后经人源化CD19 CAR-T 疗法再次达到CR,伴有1级CRS和2级CRES。人源化CD19 CAR-T 疗法在外周血、骨髓和脑脊液(CSF)中输注后7天的CD19 CAR-T 细胞峰值水平高于鼠源CD19 CAR-T 疗法。人源化CD19 CAR-T 疗法在外周血和CSF中的细胞因子水平高于鼠源CD19 CAR-T 疗法。在体外,人源化CD19 CAR-T 细胞对Nalm-6细胞的细胞毒性高于鼠源CD19 CAR-T 细胞。在Nalm-6 BALB/c小鼠中,鼠源CD19 CAR-T 组小鼠的中位生存时间为35天,而人源化CD19 CAR-T 组为43天。
总之,人源化CD19 CAR-T 细胞疗法的疗效优于鼠源CD19 CAR-T 疗法,可作为鼠源CD19 CAR-T 疗法治疗后复发B-ALL的挽救性治疗。
The present study aimed to compare the differences between the humanized CD19 chimeric antigen receptor (CAR)-T cell therapy and the murine CD19 CAR-T therapy in recurrent B-acute lymphoblastic leukemia (B-ALL). A 62-year-old male patient who had B-ALL (BCR/ABL + ) for 4 years was diagnosed with relapsed central nervous system leukemia (CNSL). After several courses of high dose methotrexate combined with intrathecal chemotherapy, the patient received murine CD19 CAR-T therapy and achieved complete response (CR). The patient was diagnosed with relapsed CNSL again 15 months after his murine CD19 CAR-T therapy, and was therefore enrolled in the humanized CD19 CAR-T therapy. Subsequently, the present study aimed to compare murine and humanized CD19 CAR-T cells against Nalm-6 cells in vitro and in mice.
The patient initially achieved CR from his murine CD19 CAR-T therapy with Grade 1 cytokine-release syndrome (CRS) and Grade 1 CAR-T cell-related encephalopathy syndrome (CRES). The patient then achieved CR again from his humanized CD19 CAR-T therapy with Grade 1 CRS and Grade 2 CRES. Peak levels of CD19 CAR-T cells were higher in humanized CD19 CAR-T therapy than those in murine CD19 CAR-T therapy 7 days after infusion in the peripheral blood, in bone marrow and in cerebrospinal fluid (CSF).
The cytokine levels were higher in humanized CD19 CAR-T therapy than those in murine CD19 CAR-T therapy in the peripheral blood and in CSF. The cytotoxicity to Nalm-6 cells was higher in humanized CD19 CAR-T cells than that in murine CD19 CAR-T cells in vitro. In Nalm-6 BALB/c mice, the median survival time of mice in the murine CD19 CAR-T group was 35 days, while it was 43 days in the humanized CD19 CAR-T group.
In conclusion, humanized CD19 CAR-T cell therapy had a better curative effect than that of murine CD19 CAR-T therapy, and may be used as a salvage treatment for recurrent B-ALL after treatment with murine CD19 CAR-T therapy.
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