Flow cytometry quantification of CD34+ cells and other leukocyte subpopulations in frozen-thawed blood cell suspensions: investigation of a new teflon container for cryopreservation of hematopoietic progenitor cells.

L Arseniev, L Goudeva, J G Kadar, I Südmeier, K Battmer, S Matheja, H Mitschulat, W Stangel, H Link
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引用次数: 8

Abstract

Background: Cryopreservation is the only available method for the long-time maintenance of blood cells. The present study was designed to prove: (i) the reliability of multiparameter flow cytometry (MFC) for estimation of CD34+ cells in frozen-thawed cell suspensions and (ii) the acceptability of a new teflon container for the cryopreservation of hematopoietic progenitor cells.

Materials and methods: Each of 15 ABO-compatible buffy coats (BC) were pooled, and mononuclear cells (MNC) were then separated with the Fresenius AS 104 device (n = 10). MNC harvested by apheresis were then divided into 2 portions and transferred pairwise into either the new Fresenius or into Gambro cryopreservation containers. Paired samples were frozen at controlled rates (9% DMSO final concentration) and stored at -196 degrees C in liquid nitrogen for 2 weeks. Leukocyte, MNC and differential blood counts and proportions of CD3+, CD4+, CD8+, CD14+ and CD34+ cells were assessed from the pooled BC, the apheresis products, and the frozen-thawed samples. Methyl cellulose culture assays as well as trypan blue viability staining were also carried out.

Results: The mean content of the divided apheresis products was 4.9 x 10(9) leukocytes with 86% MNC, 6.89 x 10(6) CD34+ cells, 2.1 x 10(5) granulocyte-macrophage colony-forming units (CFU-GM) and 7.1 x 10(5) erythroid burst-forming units (BFU-E). As expected, there were virtually no granulocytes after freezing in both types of container. The corresponding mean cell content was as follows: 6.3 x 10(6) CD34+ cells, 2.5 x 10(5) CFU-GM, and 8.1 x 10(5) BFU-E in Fresenius containers, and 6.1 x 10(6) CD34+ cells, 1.3 x 10(5) CFU-GM, and 7.7 x 10(5) BFU-E in Gambro containers. The mean MNC viability of the samples frozen in Fresenius was 81.5% and 82.7% in the Gambro containers. MFC was found to compare with stained smear differentials. CD34+ cell counts correlated with CFU-GM (0.69, p = 0.03) and BFU-E (0.63, p = 0.02) colony formation.

Conclusions: The study reported here revealed no significant differences between the 2 types of storage containers. The new Fresenius teflon container could thus be recommended for cryopreservation of hematopoietic progenitor cells. MFC provided reliable data on CD34+ cell content and leukocyte subset composition of the frozen-thawed cell suspension.

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流式细胞术定量测定冻融血细胞悬浮液中CD34+细胞和其他白细胞亚群:用于冷冻保存造血祖细胞的新型聚四氟乙烯容器的研究。
背景:低温保存是长期保存血细胞的唯一可行方法。本研究旨在证明:(i)多参数流式细胞术(MFC)用于估计冻融细胞悬浮液中CD34+细胞的可靠性;(ii)用于冷冻保存造血祖细胞的新型聚四氟乙烯容器的可接受性。材料和方法:将15个abo相容的灰黄膜(BC)混合,用费森尤斯AS 104装置分离单个核细胞(MNC) (n = 10)。然后将单采收获的MNC分成2份,并成对转移到新的费森尤斯或Gambro冷冻保存容器中。配对样品以控制速率(9% DMSO终浓度)冷冻,并在-196℃液氮中保存2周。白细胞、MNC和差异血细胞计数以及CD3+、CD4+、CD8+、CD14+和CD34+细胞的比例从合并的BC、分离产物和冻融样本中进行评估。同时进行了甲基纤维素培养试验和台盼蓝活力染色。结果:分离产物平均含量为4.9 × 10(9)个白细胞(86% MNC), 6.89 × 10(6)个CD34+细胞,2.1 × 10(5)个粒细胞-巨噬细胞集落形成单位(CFU-GM)和7.1 × 10(5)个红细胞爆发形成单位(BFU-E)。不出所料,在两种类型的容器中冷冻后几乎没有粒细胞。相应的平均细胞含量为:费森尤斯容器中CD34+细胞6.3 × 10(6)个,CFU-GM细胞2.5 × 10(5)个,BFU-E细胞8.1 × 10(5)个;Gambro容器中CD34+细胞6.1 × 10(6)个,CFU-GM细胞1.3 × 10(5)个,BFU-E细胞7.7 × 10(5)个。费森尤斯冷冻样品的平均MNC活力为81.5%,Gambro冷冻样品的平均MNC活力为82.7%。发现MFC与染色涂片鉴别比较。CD34+细胞计数与CFU-GM (0.69, p = 0.03)和BFU-E (0.63, p = 0.02)集落形成相关。结论:本文报道的研究显示两种类型的储存容器之间没有显著差异。因此,新的费森尤斯特氟龙容器可以推荐用于冷冻保存造血祖细胞。MFC为冻融细胞悬液的CD34+细胞含量和白细胞亚群组成提供了可靠的数据。
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