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优化处理方法以提高从冷冻保存的脐带组织碎片中分离人多能间充质基质细胞的成功率。

Optimisation of processing methods to improve success in the derivation of human multipotent mesenchymal stromal cells from cryopreserved umbilical cord tissue fragments.

机构信息

Servei de Teràpia Cel·lular, Banc de Sang i Teixits, Edifici Dr. Frederic Duran i Jordà, Passeig Taulat, 116, 08005, Barcelona, Spain.

Servei de Teràpia Cel·lular, Banc de Sang i Teixits, Edifici Dr. Frederic Duran i Jordà, Passeig Taulat, 116, 08005, Barcelona, Spain.

出版信息

Cryobiology. 2022 Oct;108:34-41. doi: 10.1016/j.cryobiol.2022.08.002. Epub 2022 Aug 28.

Abstract

Wharton's Jelly (WJ)-derived Mesenchymal Stromal Cells (MSC) are currently in the spotlight for the development of innovative MSC-based therapies due to their ease of sourcing, high proliferation capacity and improved immunopotency over MSC from other tissue sources. However, the short time window for derivation from donated fresh umbilical cord (UC) tissue fragments does not allow to consider biological features of the donor beyond serological safety testing. This limits the scope of MSC banking to rapid, prospective derivation of MSC, WJ lines without considering biological and genetic characteristics of the donor that may influence their suitability for clinical use (e.g. HLA type, inherited gene variants). In the present study, we describe a simple, efficient and reproducible approach for the cryopreservation of UC tissue fragments, compatible with established workflows in existing public frameworks for cord blood and tissue collection while guaranteeing pharmaceutical grade of starting materials for further processing under GMP standards. Herein we demonstrated the feasibility of time and cost-saving methods for cryopreservation of unprocessed UC tissue fragments directly at reception of the donated tissues using 10% MeSO-based cryosolution and a commercial clinical-grade defined cryopreservation medium (Cryostor®), showing the preservation of all Critical Quality Attributes in terms of identity, potency and kinetic parameters. In summary, our study provides evidence that cryopreservation of large unprocessed UC tissue fragments (5-13.5 cm) supports subsequent progenitor cell isolation and derivation of MSC,WJ, preserving their viability, identity, proliferation rates and potency.

摘要

人脐带 Wharton 胶(WJ)来源间充质基质细胞(MSC)因其易于取材、高增殖能力以及相对于其他组织来源的 MSC 具有更高的免疫原性而成为创新性 MSC 为基础的治疗方法开发的焦点。然而,从捐赠的新鲜脐带(UC)组织片段中进行衍生的时间窗口很短,这使得人们无法考虑供体的生物学特征,而不仅仅是血清学安全测试。这限制了 MSC 库的范围,仅限于快速、前瞻性地衍生 MSC,WJ 系,而不考虑可能影响其临床适用性的供体的生物学和遗传特征(例如 HLA 类型、遗传基因突变)。在本研究中,我们描述了一种简单、高效且可重复的方法,用于冷冻保存 UC 组织片段,该方法与现有的脐带血和组织收集公共框架中已建立的工作流程兼容,同时保证了起始材料的制药级质量,以便在 GMP 标准下进一步加工。在此,我们证明了使用 10% MeSO 基冷冻溶液和商业临床级定义的冷冻保存培养基(Cryostor®)直接在接收捐赠组织时对未处理的 UC 组织片段进行冷冻保存的省时、省钱方法的可行性,证明了所有关键质量属性(身份、效力和动力学参数)的保存。总之,我们的研究表明,对未处理的大 UC 组织片段(5-13.5cm)进行冷冻保存可支持随后的祖细胞分离和 MSC、WJ 的衍生,同时保持其活力、身份、增殖率和效力。

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