← 返回

冷冻保存的白细胞单采物可从程控降温仪转移至较高温度超低温储存而不影响下游 CAR-T 细胞培养表现与体外功能

英文原题:Cryopreserved leukapheresis material can be transferred from controlled rate freezers to ultracold storage at warmer temperatures without affecting downstream CAR-T cell culture performance and in-vitro functionality.

查看英文原题

Cryopreserved leukapheresis material can be transferred from controlled rate freezers to ultracold storage at warmer temperatures without affecting downstream CAR-T cell culture performance and in-vitro functionality.

PubMed 2024/03/19(内容时间) Cryobiology Q2 · IF 2.6(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

嵌合抗原受体(CAR)T细胞疗法正越来越多地被采用作为血液系统恶性肿瘤和实体瘤的商业化治疗方法。随着CAR-T 疗法在全球范围内惠及更多患者,患者白细胞单采材料的冷冻保存和入库正变得至关重要,以适应国内/国际运输物流延迟并提供更大的生产灵活性。

本研究旨在确定将两种不同类型的程序降温冷冻系统——基于液氮(LN2)的和无LN2的传导冷却型——中冷冻保存的白细胞单采材料转移至超低温LN2储存冰箱(-135°C)的最佳温度范围,及其对CAR-T 细胞生产和功能的影响。所呈现的研究结果表明,对于基于LN2的程序降温冷冻机以及传导冷却程序降温冷冻机,当采用-30°C至-80°C的转移温度范围时,对CAR-T 细胞扩增、分化或下游体外功能均无显著影响。

值得注意的是,使用传导冷却程序降温冷冻机从冷冻保存的白细胞单采材料中生成的CAR-T 细胞,在某些供者中当转移温度低于-60°C时表现出次优性能,这可能是由于这些系统中低于1°C/min的降温速率以及达到最终温度所需的延长停留时间所致。这组数据表明,使用任一程序降温系统在较高温度(-30°C至-60°C之间)转移冷冻保存的白细胞单采材料具有低风险且功能恢复良好,冷冻保存的材料适合用作自体CAR-T 细胞疗法的起始材料。

展开英文摘要原文

Chimeric antigen receptor (CAR) T-cell therapies are increasingly adopted as a commercially available treatment for hematologic and solid tumor cancers. As CAR-T therapies reach more patients globally, the cryopreservation and banking of patients' leukapheresis materials is becoming imperative to accommodate intra/inter-national shipping logistical delays and provide greater manufacturing flexibility.

This study aims to determine the optimal temperature range for transferring cryopreserved leukapheresis materials from two distinct types of controlled rate freezing systems, Liquid Nitrogen (LN2)-based and LN2-free Conduction Cooling-based, to the ultracold LN2 storage freezer ( -135 C), and its impact on CAR T-cell production and functionality.

Presented findings demonstrate that there is no significant influence on CAR T-cell expansion, differentiation, or downstream in-vitro function when employing a transfer temperature range spanning from -30 C to -80 C for the LN2-based controlled rate freezers as well as for conduction cooling controlled rate freezers.

Notably, CAR T-cells generated from cryopreserved leukapheresis materials using the conduction cooling controlled rate freezer exhibited suboptimal performance in certain donors at transfer temperatures lower than -60 C, possibly due to the reduced cooling rate of lower than 1 C/min and extended dwelling time needed to reach the final temperatures within these systems.

This cohort of data suggests that there is a low risk to transfer cryopreserved leukapheresis materials at higher temperatures (between -30 C and -60 C) with good functional recovery using either controlled cooling system, and the cryopreserved materials are suitable to use as the starting material for autologous CAR T-cell therapies.

论文信息

作者
Wei J、Chaney K、Shim WJ、Chen H、Leonard G、O'Brien S、Liu Z、Jiang J
第一作者单位
Cell Therapy Technical Operations, R&D Oncology, AstraZeneca, One MedImmune Way, Gaithersburg, MD, USA.United States
通讯作者单位
Cell Therapy Technical Operations, R&D Oncology, AstraZeneca, One MedImmune Way, Gaithersburg, MD, USA. Electronic address: robert.ulrey@astrazeneca.com.United States
期刊
Cryobiology2024 Jun
原文标识
PubMed 38513998 · DOI 10.1016/j.cryobiol.2024.104889