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Processing and cryopreservation of placental/umbilical cord blood for unrelated bone marrow reconstitution.

机译:胎盘/脐带血的处理和冷冻保存,用于无关的骨髓重建。

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摘要

Clinical evidence of hematopoietic restoration with placental/umbilical cord blood (PCB) grafts indicates that PCB can be a useful source of hematopoietic stem cells for routine bone marrow reconstitution. In the unrelated setting, human leukocyte antigen (HLA)-matched donors must be obtained for candidate patients and, hence, large panels of frozen HLA-typed PCB units must be established. The large volume of unprocessed units, consisting mostly of red blood cells, plasma, and cryopreservation medium, poses a serious difficulty in this effort because storage space in liquid nitrogen is limited and costly. We report here that almost all the hematopoietic colony-forming cells present in PCB units can be recovered in a uniform volume of 20 ml by using rouleaux formation induced by hydroxyethyl starch and centrifugation to reduce the bulk of erythrocytes and plasma and, thus, concentrate leukocytes. This method multiples the number of units that can be stored in the same freezer space as much as 10-fold depending on the format of the storage system. We have also investigated the proportion of functional stem/progenitor cells initially present that are actually available to the recipient when thawed cryopreserved PCB units are infused. Progenitor cell viability is measurably decreased when thawed cells, still suspended in hypertonic cryopreservative solutions, are rapidly mixed with large volumes of isotonic solutions or plasma. The osmotic damage inflicted by the severe solute concentration gradient, however, can be averted by a simple 2-fold dilution after thawing, providing almost total recovery of viable hematopoietic progenitor cells.
机译:用胎盘/脐带血(PCB)移植物进行造血修复的临床证据表明,PCB可以作为常规骨髓重建的有用的造血干细胞来源。在无关的情况下,必须为候选患者获得与人白细胞抗原(HLA)匹配的供体,因此,必须建立大量的冷冻HLA型PCB单元。大量未经处理的单元(主要由红细胞,血浆和冷冻保存介质组成)在这项工作中造成了严重困难,因为液氮中的存储空间有限且价格昂贵。我们在这里报告说,通过使用羟乙基淀粉诱导的匀浆形成并离心以减少红细胞和血浆的体积,从而浓缩白细胞,可以将PCB单元中存在的几乎所有造血集落形成细胞以20 ml的均匀体积回收。 。根据存储系统的格式,此方法可以将可存储在同一冰箱空间中的单元数增加10倍。我们还研究了最初注入的功能性干/祖细胞的比例,当融化的冷冻保存的PCB单元被注入时,受体实际可用。当仍然悬浮在高渗低温保存溶液中的融化细胞与大量等渗溶液或血浆快速混合时,祖细胞的活力会明显降低。但是,解冻后通过简单的2倍稀释即可避免由严重的溶质浓度梯度造成的渗透破坏,从而几乎完全恢复了可行的造血祖细胞。

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