Biotherapy Division, Macopharma, Mouvaux, France.
Transfusion. 2019 Mar;59(3):1069-1079. doi: 10.1111/trf.15205. Epub 2019 Feb 21.
Human platelet lysate (hPL) represents a powerful medium supplement for human mesenchymal stromal cell (hMSC) expansion. The recently published general chapters of the Pharmacopeia require the addition of a step of viral inactivation during the production process of such raw biological material used for cell-based medicinal products.
The ability of gamma irradiation to inactivate viruses from a panel representative of the virus diversity was evaluated. The impact of gamma irradiation on hPL composition and efficiency as a supplement for hMSC culture was evaluated.
An efficient inactivation of all the viruses tested was demonstrated, with the minimum reduction factors obtained being superior to 4.5 log for human immunodeficiency virus (HIV) and hepatitis A virus (HAV) and superior to 5 log for bovine viral diarrhea virus (BVDV), pseudorabies virus (PRV) and porcine parvovirus (PPV). The gamma irradiation did not affect the content in interesting biochemical factors for cell culture or in growth factors (GF), except to basic fibroblast GF (bFGF) whereas it highly impacted the contents in the factors involved in the coagulation cascade. Finally, gamma irradiated hPL remained as efficient as non-irradiated hPL for the proliferation, clonogenic potential, differentiation potential, and immunosuppressive properties of hMSCs.
The feasibility of using gamma irradiation to efficiently inactivate viruses in hPL while maintaining its optimal efficacy as a supplement for hMSC expansion was demonstrated. Such an inactivated hPL represents a very attractive raw material for the efficient production of safe cellular therapy products.
人血小板裂解液(hPL)是一种强大的人基质间充质干细胞(hMSC)扩增培养基补充剂。最近出版的《药典》通用章节要求在用于细胞治疗产品的此类原始生物材料的生产过程中增加病毒灭活步骤。
评估伽马射线对代表性病毒多样性的病毒灭活能力。评估伽马射线对 hPL 成分和作为 hMSC 培养补充剂的效率的影响。
证明了所有测试病毒的有效灭活,获得的最小减少因子对于人类免疫缺陷病毒(HIV)和甲型肝炎病毒(HAV)均优于 4.5 log,对于牛病毒性腹泻病毒(BVDV)、伪狂犬病病毒(PRV)和猪细小病毒(PPV)则优于 5 log。伽马射线辐照不会影响细胞培养中有趣的生化因素或生长因子(GF)的含量,除了碱性成纤维细胞 GF(bFGF),而它对凝血级联中涉及的因子含量有很大影响。最后,伽马辐照的 hPL 保持与非辐照的 hPL 一样高效,用于 hMSC 的增殖、克隆形成潜力、分化潜力和免疫抑制特性。
证明了使用伽马射线有效地灭活 hPL 中的病毒,同时保持其作为 hMSC 扩增补充剂的最佳功效的可行性。这种灭活的 hPL 代表了用于高效生产安全细胞治疗产品的极具吸引力的原材料。