决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:CRISPR Knockdown of CHIP Genes in Macrophages Drives Increased Production of Inflammatory Cytokines in CAR-T Cell Therapy.
这些结果提示,人巨噬细胞中存在CHIP突变可能加剧CAR-T治疗期间的炎症反应。
意义不明的克隆性造血(CHIP)的特征是造血干细胞中存在白血病相关基因(如 DNMT3A、TET2 和 ASXL1)的体细胞突变,并与年龄相关的克隆扩增和炎症有关。我们此前表明,携带 CHIP 的患者接受嵌合抗原受体(CAR)-T 细胞治疗后,发生临床显著细胞因子释放综合征(CRS)的风险高于无 CHIP 的患者。在此,我们研究了 CHIP 突变可能导致 CAR-T 相关毒性的机制。为了模拟 CAR-T 细胞介导的炎症反应与携带 CHIP 基因突变的巨噬细胞之间的相互作用,我们采用基于 CRISPR 的基因编辑技术,在人巨噬细胞中敲低三个关键 CHIP 相关基因(DNMT3A、TET2 和 ASXL1),每个基因使用多条 guide RNA。我们将基因编辑后的巨噬细胞与自体 CS1 和 BCMA CAR-T 细胞以及多发性骨髓瘤(MM)肿瘤细胞共培养。与未编辑的巨噬细胞相比,DNMT3A、TET2 和 ASXL1 编辑的巨噬细胞分泌显著更高水平的 CRS 特征性促炎细胞因子,包括 IL-6、MCP-1 和 IL-1(P < .05 至 .01)。这些结果表明,人巨噬细胞中 CHIP 突变的存在可能加剧 CAR-T 治疗期间的炎症反应。本研究强调 CHIP 突变可作为潜在生物标志物,用于识别发生 CRS 高风险的患者,并指导 MM CAR-T 治疗中的个性化预防性干预。
Clonal hematopoiesis of indeterminate potential (CHIP) is characterized by somatic mutations in leukemogenic genes (e.g., DNMT3A, TET2, and ASXL1) in hematopoietic stem cells and is linked to age-related clonal expansion and inflammation. We previously showed that patients with CHIP receiving chimeric antigen receptor (CAR)-T cell therapy have a higher risk of developing clinically significant cytokine release syndrome (CRS) compared to those without CHIP. Here, we investigated the mechanisms through which CHIP mutations can contribute to CAR-T-related toxicities. To model the interaction of CAR-T cell-mediated inflammatory response and macrophages harboring CHIP gene mutations, we employed CRISPR-based gene editing to knock down three key CHIP-associated genes (DNMT3A, TET2, and ASXL1) in human macrophages, using multiple guide RNAs for each. We co-cultured gene-edited macrophages with autologous CS1 and BCMA CAR-T cells and multiple myeloma (MM) tumor cells. Compared to nonedited macrophages, DNMT3A-, TET2-, and ASXL1-edited macrophages secreted significantly higher levels of pro-inflammatory cytokines characteristic of CRS, including IL-6, MCP-1, and IL-1 (P < .05 to .01). These results suggest that the presence of CHIP mutations in human macrophages may exacerbate the inflammatory response during CAR-T therapy. This study highlights CHIP mutations as potential biomarkers for identifying patients at high risk of developing CRS and for guiding personalized prophylactic interventions in MM CAR-T therapy.
MEMBER ACCOUNT
登录成功会直接打开下一页。