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:Preparation of cryopreserved chimeric antigen receptor T cells for the locoreogional delivery to the neural axis.
Preparation of cryopreserved chimeric antigen receptor T cells for the locoreogional delivery to the neural axis.
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我们开发了一种简单的解冻/洗涤程序,用于制备 B7-H3-CAR-T 细胞,以将其局部区域递送至神经轴。
颅内局部递送嵌合抗原受体(CAR)T 细胞,是治疗中枢神经系统肿瘤的一种有吸引力的给药方式。尽管早期临床研究已积极采用颅内给药,但尚无已发表的解冻/洗涤方法可在颅内给药前去除 CAR-T 产品中的神经毒性冷冻保护剂二甲基亚砜(DMSO)。因此,本研究旨在开发并验证一种简便的解冻/洗涤流程。
研究制定如下流程:37°C 解冻产品;加入 1 倍体积、不含防腐剂的生理盐水(PFNS)平衡 5 分钟;再加入 8 倍体积 PFNS 稀释;通过洗涤步骤去除 DMSO;随后重悬于 2.0 mL PFNS 中,置于注射器内并在 20–25°C 保存。评估最终制剂(FP)的质量和安全属性,并评估解冻后 3 小时内的稳定性。稳定性指标包括 CAR-T 细胞活率、转基因表面表达和细胞毒活性。
所开发流程可将计算得到的 DMSO 百分比降至 0.025% 以下。FP 的细胞活率和回收率(相对于冷冻保存前)符合可接受标准:平均活率 85.3%(范围 83%–88%),平均总有核细胞回收率 76.5%(范围 65.4%–82.5%)。其他预设质量保证/质量控制指标,包括外观/完整性、无菌性和内毒素水平(≤1.0 EU/mL),3 个 FP 均符合要求。解冻/洗涤后 3 小时内稳定性得到确认。所有产品细胞活率均保持在 70% 以上(平均 80.0%;范围 79%–81%);与解冻后未稀释/未洗涤的对照 CAR-T 细胞相比,B7-H3 CAR-T 细胞转基因表达或细胞毒活性无显著变化。
研究开发了一种简便的解冻/洗涤流程,可制备用于神经轴局部递送的 B7-H3 CAR-T 细胞。尽管本研究聚焦 CAR-T,该方法也可方便地应用于其他冷冻保存的免疫效应细胞产品。
We developed a thaw/wash procedure that consist of product thaw at 37 C, equilibration for 5 min in 1 volume of preservative-free normal saline (PFNS), dilution with an additional 8 volumes of PFNS, removal of DMSO through a washing step, resuspension in 2.0 mL of PFNS and storage in a syringe at 20-25 C. Final formulated products (FPs) were assessed for quality and safety attributes and stability over 3 h from the completion of the thaw. Stability parameters included CAR T-cell viability, transgene surface expression and cytolytic activity.
The developed procedure reduced the calculated % of DMSO to less than 0.025%. FP cell viability and recovery (versus pre-cryopreservation) were within acceptable specifications (mean viability: 85.3%, range: 83%-88%; total nucleated cell recovery mean: 76.5%, range: 65.4%-82.5%). Other prespecified quality assurance/quality control parameters including appearance/ integrity, sterility and endotoxin level ( 1.0 EU/mL), were also met by all FPs (n = 3). Three hours' post thaw/wash stability was confirmed. All products maintained cell viability greater than 70% (mean, 80.0%; range, 79%-81%), with no significant change in transgene expression or cytolytic activity of B7-H3-CAR T cells compared with thawed not diluted/washed control CAR T cells.
We have developed a simple thaw/wash procedure to prepare B7-H3-CAR T cells for their locoregional delivery to the neural axis. While we focus here on CAR T cells, the methods could be readily adapted to other cryopreserved immune effector cell products.
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