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开发一种流动标准,以实现微流控装置中储存的红细胞变形性的高度可重复测量。

Development of a flow standard to enable highly reproducible measurements of deformability of stored red blood cells in a microfluidic device.

机构信息

Héma-Québec, Medical Affairs and Innovation, Montreal, Quebec, Canada.

Biochemistry, Microbiology and Bioinformatics Department, Université Laval, Montreal, Quebec, Canada.

出版信息

Transfusion. 2020 May;60(5):1032-1041. doi: 10.1111/trf.15770. Epub 2020 Apr 1.

Abstract

BACKGROUND

Great deformability allows red blood cells (RBCs) to flow through narrow capillaries in tissues. A number of microfluidic devices with capillary-like microchannels have been developed to monitor storage-related impairment of RBC deformability during blood banking operations. This proof-of-concept study describes a new method to standardize and improve reproducibility of the RBC deformability measurements using one of these devices.

STUDY DESIGN AND METHODS

The rate of RBC flow through the microfluidic capillary network of the microvascular analyzer (MVA) device made of polydimethylsiloxane was measured to assess RBC deformability. A suspension of microbeads in a solution of glycerol in phosphate-buffered saline was developed to be used as an internal flow rate reference alongside RBC samples in the same device. RBC deformability and other in vitro quality markers were assessed weekly in six leukoreduced RBC concentrates (RCCs) dispersed in saline-adenine-glucose-mannitol additive solution and stored over 42 days at 4°C.

RESULTS

The use of flow reference reduced device-to-device measurement variability from 10% to 2%. Repeated-measure analysis using the generalized estimating equation (GEE) method showed a significant monotonic decrease in relative RBC flow rate with storage from Week 0. By the end of storage, relative RBC flow rate decreased by 22 ± 6% on average.

CONCLUSIONS

The suspension of microbeads was successfully used as a flow reference to increase reproducibility of RBC deformability measurements using the MVA. Deformability results suggest an early and late aging phase for stored RCCs, with significant decreases between successive weeks suggesting a highly sensitive measurement method.

摘要

背景

红细胞(RBC)具有较大的变形能力,使其能够在组织中的狭窄毛细血管中流动。已经开发出许多具有类似毛细血管的微通道的微流控装置,以监测在血液保存操作过程中与储存相关的 RBC 变形能力的损伤。本概念验证研究描述了一种使用这些装置之一来标准化和提高 RBC 变形能力测量重现性的新方法。

研究设计和方法

通过测量聚二甲基硅氧烷制成的微血管分析仪(MVA)装置中 RBC 通过微流控毛细管网络的速率来评估 RBC 的变形能力。开发了一种在磷酸盐缓冲盐水(PBS)中的甘油溶液中的微珠悬浮液,用作与 RBC 样品一起在同一装置中的内部流速参考。在 4°C 下储存 42 天后,每周评估在生理盐水-腺嘌呤-葡萄糖-甘露醇添加剂溶液中分散的 6 个白细胞减少 RBC 浓缩物(RCC)中的 RBC 变形能力和其他体外质量标志物。

结果

使用流动参考将设备间测量的变异性从 10%降低至 2%。使用广义估计方程(GEE)方法的重复测量分析显示,随着储存时间的延长,相对 RBC 流速呈明显的单调下降趋势。在储存结束时,相对 RBC 流速平均下降了 22±6%。

结论

微珠悬浮液成功用作 MVA 中 RBC 变形能力测量的流动参考,以提高重现性。变形能力结果表明储存的 RCC 存在早期和晚期老化阶段,连续几周的显著下降表明该方法具有高度敏感性。

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本文引用的文献

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Is It Possible to Reverse the Storage-Induced Lesion of Red Blood Cells?红细胞储存诱导性损伤有可能逆转吗?
Front Physiol. 2018 Jul 24;9:914. doi: 10.3389/fphys.2018.00914. eCollection 2018.
3
Squeezing for Life - Properties of Red Blood Cell Deformability.为生命而挤压——红细胞变形性的特性
Front Physiol. 2018 Jun 1;9:656. doi: 10.3389/fphys.2018.00656. eCollection 2018.
6
Optimal hematocrit in an artificial microvascular network.人工微血管网络中的最佳血细胞比容
Transfusion. 2017 Sep;57(9):2257-2266. doi: 10.1111/trf.14213. Epub 2017 Jul 5.

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