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:Augmenting TCR signal strength and ICOS costimulation results in metabolically fit and therapeutically potent human CAR Th17 cells.
Augmenting TCR signal strength and ICOS costimulation results in metabolically fit and therapeutically potent human CAR Th17 cells.
产生IL-17的抗原特异性人类T细胞在小鼠中引发强效抗肿瘤活性。
产生IL-17的抗原特异性人T细胞在小鼠中引发强效抗肿瘤活性。然而,需要对该方法进行改进以使其适用于临床。虽然激活信号强度调节CD4+ T细胞的IL-17产生,但T细胞抗原受体(TCR)和共刺激信号强度对Th17免疫的影响程度仍不清楚。我们发现,通过逐步减少αCD3/共刺激磁珠来降低TCR/共刺激信号强度,可渐进性地改变Th17表型。此外,用αCD3/可诱导共刺激分子(ICOS)磁珠刺激的Th17细胞比用αCD3/CD28磁珠刺激的Th17细胞产生更多的IL-17A、IFNγ、IL-2和IL-22。与用标准强信号强度(每T细胞三个磁珠)刺激的Th17细胞相比,用少30倍的αCD3/ICOS磁珠扩增的Th17细胞对葡萄糖依赖性更低,并倾向于以中央碳途径进行生物能量代谢,其特征是细胞内磷酸烯醇式丙酮酸(PEP)丰富。重要的是,用弱αCD3/ICOS磁珠刺激并用识别间皮素的嵌合抗原受体重定向的Th17细胞在清除人间皮瘤方面更有效。用高αCD3/ICOS磁珠产生的效果较差的CAR Th17细胞可通过过表达磷酸烯醇式丙酮酸羧激酶1(PCK1,一种PEP调节因子)来挽救。因此,Th17疗法可通过在制造过程中使用更少的激活磁珠来改进,这一发现具有成本效益且可直接转化至患者。
IL-17-producing antigen-specific human T cells elicit potent antitumor activity in mice. Yet, refinement of this approach is needed to position it for clinical use. While activation signal strength regulates IL-17 production by CD4 + T cells, the degree to which T cell antigen receptor (TCR) and costimulation signal strength influences Th17 immunity remains unknown. We discovered that decreasing TCR/costimulation signal strength by incremental reduction of αCD3/costimulation beads progressively altered Th17 phenotype. Moreover, Th17 cells stimulated with αCD3/inducible costimulator (ICOS) beads produced more IL-17A, IFNγ, IL-2, and IL-22 than those stimulated with αCD3/CD28 beads. Compared with Th17 cells stimulated with the standard, strong signal strength (three beads per T cell), Th17 cells propagated with 30-fold fewer αCD3/ICOS beads were less reliant on glucose and favored the central carbon pathway for bioenergetics, marked by abundant intracellular phosphoenolpyruvate (PEP). Importantly, Th17 cells stimulated with weak αCD3/ICOS beads and redirected with a chimeric antigen receptor that recognizes mesothelin were more effective at clearing human mesothelioma. Less effective CAR Th17 cells generated with high αCD3/ICOS beads were rescued by overexpressing phosphoenolpyruvate carboxykinase 1 (PCK1), a PEP regulator. Thus, Th17 therapy can be improved by using fewer activation beads during manufacturing, a finding that is cost effective and directly translatable to patients.
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