The role of cryopreservation techniques in manufacturing, transport, and storage of Car-T therapy products.

IF 1 4区 生物学 Q3 BIOLOGY
Cryo letters Pub Date : 2023-05-01
M Jandova, G N Stacey, M Lanska, I Gregor, P Rozsivalova, L Bekova, Z W Duchacova, D Belada, J Radocha, P Mericka, B Fuller
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Abstract

Several clinical trials have proved the efficacy and safety of T-cells chimeric antigen receptor (CAR-T cells) in treatment of malignant lymphoma and the first products were registered in the European Union in 2018. The shelf-life of CAR-T cell products in the liquid state is short, so cryopreservation offers a significant benefit for logistics in manufacturing and patient management. Direct shipment of the cryopreserved CAR-T cell therapy products to the clinical department is feasible, nevertheless, intermediate storage in the hospital cryostorage facility gives significant advantage in planning of their administration to patients. Moreover, some manufacturers prefer transport of the starting material cryopreserved at the collection site. The cryopreservation protocol used for starting material by the authors is based on combining dimethyl sulphoxide (DMSO) with hydroxyethyl starch (HES) and slow controlled cooling in cryobags housed in metal cassettes. This achieves the mononuclear cell post-thaw viability of 98.8 ± 0.5 % and recovery of 72.8, ± 10.2 %. Transport of the starting material to the manufactures and return transport of the CAR-T therapy product is performed by authorized courier companies. Intermediate cryostorage of the final CAR-T cell therapy product is performed in a separate dry-storage liquid nitrogen container. On the day of infusion, the cryopreserved products are transported to the clinical department in a dry shipper. On the wards the product is removed from the cassette, inserted into a sterile plastic bag, thawed in a 37 degree C water bath followed by immediate intravenous administration. The authors discuss the adherence of the used technology to good manufacturing practice (GMP) principles and genetic safety assurance rules. Doi: 10.54680/fr23310110112.

冷冻保存技术在Car-T治疗产品的制造、运输和储存中的作用。
几项临床试验已经证明了T细胞嵌合抗原受体(CAR-T细胞)治疗恶性淋巴瘤的有效性和安全性,首批产品于2018年在欧盟注册。CAR-T细胞产品在液态下的保质期很短,因此冷冻保存为生产和患者管理的物流提供了显著的好处。将冷冻保存的CAR-T细胞治疗产品直接运送到临床部门是可行的,然而,在医院冷冻储存设施中的中间储存在规划患者给药方面具有显著优势。此外,一些制造商更喜欢运输在收集地点冷冻保存的起始材料。作者用于起始材料的冷冻保存方案是基于将二甲基亚砜(DMSO)与羟乙基淀粉(HES)结合,并在金属盒中的冷冻袋中缓慢控制冷却。这实现了单核细胞解冻后98.8±0.5%的生存能力和72.8±10.2%的回收率。由授权快递公司将原料运输至制造商,并将CAR-T治疗产品运回。最终CAR-T细胞治疗产品的中间冷冻储存在单独的干燥储存液氮容器中进行。输注当天,冷冻保存的产品用干燥的运输车运送到临床部门。在病房里,将产品从盒子中取出,插入无菌塑料袋,在37摄氏度的水浴中解冻,然后立即静脉注射。作者讨论了所用技术对良好生产规范(GMP)原则和遗传安全保证规则的遵守情况。Doi:10.54680/fr23310110112。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cryo letters
Cryo letters 生物-生理学
CiteScore
1.80
自引率
10.00%
发文量
50
审稿时长
1 months
期刊介绍: A bimonthly international journal for low temperature sciences, including cryobiology, cryopreservation or vitrification of cells and tissues, chemical and physical aspects of freezing and drying, and studies involving ecology of cold environments, and cold adaptation The journal publishes original research reports, authoritative reviews, technical developments and commissioned book reviews of studies of the effects produced by low temperatures on a wide variety of scientific and technical processes, or those involving low temperature techniques in the investigation of physical, chemical, biological and ecological problems.
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