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用模拟细胞内离子组成的新型冷冻液保存脐带血。

Cryopreservation of umbilical cord blood with a novel freezing solution that mimics intracellular ionic composition.

机构信息

Puget Sound Blood Center, Seattle, Washington, USA.

出版信息

Transfusion. 2012 Sep;52(9):2055-62. doi: 10.1111/j.1537-2995.2011.03547.x. Epub 2012 Feb 10.

Abstract

BACKGROUND

Cryopreservation protocols have remained relatively unchanged since the first umbilical cord blood banking program was established. This study evaluated the preservation efficacy of a novel intracellular-like cryopreservation solution (CryoStor, BioLife Solutions, Inc.), the rate of addition of two cryopreservation solutions to cord blood units (CBUs), and reduced final dimethyl sulfoxide (DMSO) concentration of 5%.

STUDY DESIGN AND METHODS

Split-sample CBUs were cryopreserved with either an in-house 20% DMSO-based cryopreservation solution or CryoStor CS10 at a rate of 1 mL/min (n = 10; i.e., slow addition) or as a bolus injection (n = 6; i.e., fast addition). Infrared images of exothermic effects of the cryopreservation solutions were monitored relative to the rate of addition. Prefreeze and postthaw colony-forming unit assays, total nucleated cells, and CD34+ cell counts were compared.

RESULTS

Maximum temperature excursions observed were less than 6°C, regardless of the rate of solution addition. Fast addition resulted in peak excursions approximately twice that of slow addition but the magnitude and duration were minimal and transient. Slow addition of CryoStor CS10 (i.e., final concentration ≤ 5% DMSO) resulted in significantly better postthaw CD34+ cell recoveries; no other metrics were significantly different. Fast addition of CryoStor resulted in similar postthaw metrics compared to slow addition of the in-house solution.

CONCLUSION

Slow and fast addition of cryopreservation solutions result in mean temperature changes of approximately 3.3 to 4.45°C. Postthaw recoveries with CryoStor were equivalent to or slightly better than with the in-house cryopreservation solution. CryoStor also provides several advantages including reduced processing time, formulation consistency, and reduced DMSO in the frozen product (≤ 5%).

摘要

背景

自第一个脐带血库项目建立以来,冷冻保存方案基本保持不变。本研究评估了一种新型细胞内样冷冻保存液(CryoStor,BioLife Solutions,Inc.)的保存效果、两种冷冻保存液添加到脐带血单位(CBU)的速率以及最终二甲亚砜(DMSO)浓度降低至 5%。

研究设计和方法

将分割样本 CBU 用 20% DMSO 基础冷冻保存液或 CryoStor CS10 以 1 毫升/分钟的速度(n = 10;即缓慢添加)或作为推注(n = 6;即快速添加)进行冷冻保存。监测冷冻保存溶液添加速度相对于放热效应的红外图像。比较预冷冻和解冻后集落形成单位测定、总核细胞和 CD34+细胞计数。

结果

无论添加速度如何,观察到的最大温度偏移都小于 6°C。快速添加导致的峰值偏移约为缓慢添加的两倍,但幅度和持续时间很小且短暂。CryoStor CS10 的缓慢添加(即最终浓度≤5%DMSO)导致解冻后 CD34+细胞的恢复明显更好;其他指标没有显著差异。与缓慢添加内部溶液相比,快速添加 CryoStor 导致解冻后相似的测量值。

结论

冷冻保存液的缓慢和快速添加导致平均温度变化约为 3.3 至 4.45°C。CryoStor 的解冻后回收率与内部冷冻保存液相当或略好。CryoStor 还具有许多优势,包括缩短处理时间、配方一致性以及冷冻产品中二甲亚砜(≤5%)含量降低。

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