Wynn Liam, Wilson Marnie Grace, Leonforte Christopher
Anthony Nolan Cell Therapy Centre, Nottingham, UK.
Cell Tissue Bank. 2023 Dec;24(4):685-691. doi: 10.1007/s10561-023-10070-8. Epub 2023 Feb 3.
The purpose of this study was to explore methods of selectively enriching CD34 + haematopoietic progenitor cells (HPC) in mononuclear cell (MNC) preparations, and to outline a procedure for cryopreservation and thawing of manufactured material. Density gradient centrifugation of umbilical cord blood was achieved using Ficoll-Paque™ media at 1.077 g/mL and 1.065 g/mL densities and Leucosep preparation tubes. Post-process samples were analysed for CD34 + and MNC content. Finally, MNCs were frozen down at a concentration of 8.5 × 10 cells/mL in CryoStor CS10 using an Asymptote VIAFreeze controlled rate freezer at a rate of - 2 °C per minute, then thawed and analysed for viability and recovery. Processing with 1.065 g/mL media selectively depleted non-HPC cell types, producing an approximately fourfold increase in CD34 + frequency (M ± 1SD = 1.4 ± 1.3%, P < 0.01) relative to the pre-process sample (M ± 1SD = 0.4 ± 0.3%), whereas 1.077 g/mL media produced only a twofold enrichment (0.7 ± 0.6, P < 0.01). This was not accompanied by any significant forfeit of CD34 + recovery (79 ± 32% vs. 78 ± 32% respectively; P = 0.87). The MNCs generated by the 1.065 g/mL procedure were of greater purity (96 ± 2%) than in the 1.077 g/mL procedure (80 ± 7%, P < 0.01). Post-thaw, MNC viability was 95 ± 1% and CD34 + viability was 98 ± 1%. Ultra-pure MNCs rich in CD34 + HPCs can be generated with a simple, inexpensive modification to Ficoll-Paque™ media. These products can be easily cryopreserved using a simple controlled rate freezing procedure.
本研究的目的是探索在单核细胞(MNC)制剂中选择性富集CD34 +造血祖细胞(HPC)的方法,并概述制成材料的冷冻保存和解冻程序。使用密度为1.077 g/mL和1.065 g/mL的Ficoll-Paque™培养基以及Leucosep制备管对脐带血进行密度梯度离心。对处理后的样品进行CD34 +和MNC含量分析。最后,使用Asymptote VIAFreeze程序降温冷冻仪,以每分钟-2°C的速率,将MNC以8.5×10细胞/mL的浓度冷冻保存在CryoStor CS10中,然后解冻并分析其活力和回收率。用1.065 g/mL培养基处理可选择性去除非HPC细胞类型,相对于处理前样品(M±1SD = 0.4±0.3%),CD34 +频率增加约四倍(M±1SD = 1.4±1.3%,P <0.01),而1.077 g/mL培养基仅产生两倍富集(0.7±0.6,P <0.01)。这并未伴随CD34 +回收率的任何显著损失(分别为79±32%和78±32%;P = 0.87)。1.065 g/mL程序产生的MNC纯度(96±2%)高于1.077 g/mL程序(80±7%,P <0.01)。解冻后,MNC活力为95±1%,CD34 +活力为98±1%。通过对Ficoll-Paque™培养基进行简单、低成本的改良,可生成富含CD34 + HPC的超纯MNC。使用简单的程序降温冷冻方法可轻松对这些产品进行冷冻保存。