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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Low platelet counts and low CD4/CD8 ratios at apheresis increase the risk of CAR T-cell manufacturing failure in myeloma.
Low platelet counts and low CD4/CD8 ratios at apheresis increase the risk of CAR T-cell manufacturing failure in myeloma.
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嵌合抗原受体(CAR)T细胞(CAR-T)疗法显著改善了复发/难治性多发性骨髓瘤的治疗。然而,由于细胞生长不良导致的制备失败使得需要修改治疗策略,这对患者产生了负面影响。为识别骨髓瘤患者CAR-T 制备失败的风险因素,开展了一项全国性队列研究,分析了在日本接受idecabtagene vicleucel单采术的患者。在分析的154例患者中,13例(8.4%)经历了制备失败。
我们比较了制备失败患者(失败组)与符合规格的患者(成功组)之间的临床因素。失败组患者在诊断时17p缺失的患病率更高(38.5% vs 14.9%),更可能在单采术前6个月内接受过烷化剂治疗(53.8% vs 23.4%),且在单采术前接受过更多线数的化疗(中位数,6 vs 5)。
此外,制备失败患者的血红蛋白水平(8.6 vs 10.0 g/dL)、血小板计数(5.9 10 4 / L vs 13.8 10 4 / L)和CD4/CD8比值(0.169 vs 0.474)均显著低于制备成功的患者。多因素分析显示,单采时低血小板计数(比值比[OR],每增加10 5 / L为0.130;P = .041)或低CD4/CD8比值(OR,每翻倍为0.100;P = .003)增加了制备失败的风险。单采术前6个月内使用烷化剂与血小板计数和CD4/CD8比值降低相关。制备失败仍然是骨髓瘤患者CAR-T 治疗的障碍。避免风险因素,如烷化剂,并采用风险适应策略,可能优化骨髓瘤患者的CAR-T 治疗。
Chimeric antigen receptor (CAR) T-cell (CAR-T) therapy has significantly improved management of relapsed or refractory multiple myeloma.
However, manufacturing failure due to poor cell growth necessitates revision of treatment strategies that negatively impact patients. To identify risk factors for CAR-T manufacturing failure in patients with myeloma, a nationwide cohort study was performed, analyzing patients who underwent apheresis for idecabtagene vicleucel in Japan. Of 154 patients analyzed, 13 cases (8. 4%) experienced manufacturing failure.
We compared clinical factors between patients with manufacturing failure (failed group) and those who met specifications (successful group). Patients in the failed group had a higher prevalence of deletion 17p at diagnosis (38. 5% vs 14. 9%), were more likely to have been treated with alkylating agents within 6 months before apheresis (53. 8% vs 23. 4%), and had undergone more chemotherapy lines before apheresis (median, 6 vs 5).
Additionally, patients with manufacturing failure exhibited significantly lower hemoglobin levels (8. 6 vs 10. 0 g/dL), platelet counts (5. 9 10 4 / L vs 13. 8 10 4 / L), and CD4/CD8 ratios (0. 169 vs 0. 474) than patient with successful manufacturing. Multivariate analysis revealed that low platelet counts (odds ratio [OR], 0. 130 for every increase of 10 5 / L; P = . 041), or low CD4/CD8 ratios (OR, 0.
100 for each doubling; P = . 003) at apheresis increased the risk of manufacturing failure. Alkylating agents within 6 months before apheresis were associated with decreased platelet counts and CD4/CD8 ratios. Manufacturing failure remains an obstacle to CAR-T therapy for patients with myeloma. Avoiding risk factors, such as alkylating agents, and adopting risk-adapted strategies may optimize CAR-T therapy for patients with myeloma.
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