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使用定量相位成像技术测量个体人红细胞在血液储存过程中的细胞表面积和变形性。

Measuring cell surface area and deformability of individual human red blood cells over blood storage using quantitative phase imaging.

机构信息

Department of Physics, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

KI for Health Science and Technology (KIHST), KAIST Daejeon 34141, Republic of Korea.

出版信息

Sci Rep. 2016 Oct 4;6:34257. doi: 10.1038/srep34257.

Abstract

The functionality and viability of stored human red blood cells (RBCs) is an important clinical issue in transfusions. To systematically investigate changes in stored whole blood, the hematological properties of individual RBCs were quantified in blood samples stored for various periods with and without a preservation solution called citrate phosphate dextrose adenine-1 (CPDA-1). With 3-D quantitative phase imaging techniques, the optical measurements for 3-D refractive index (RI) distributions and membrane fluctuations were done at the individual cell level. From the optical measurements, the morphological (volume, surface area and sphericity), biochemical (hemoglobin content and concentration), and mechanical parameters (dynamic membrane fluctuation) were simultaneously quantified to investigate the functionalities and progressive alterations of stored RBCs. Our results show that stored RBCs without CPDA-1 had a dramatic morphological transformation from discocytes to spherocytes within two weeks which was accompanied by significant decreases in cell deformability and cell surface area, and increases in sphericity. However, the stored RBCs with CPDA-1 maintained their morphology and deformability for up to 6 weeks.

摘要

储存的人类红细胞(RBC)的功能和活力是输血中的一个重要临床问题。为了系统地研究储存全血的变化,在有和没有一种名为柠檬酸盐磷酸盐葡萄糖腺嘌呤-1(CPDA-1)的保存溶液的情况下,对储存不同时间的血液样本中的单个 RBC 的血液特性进行了定量分析。使用三维定量相位成像技术,在单个细胞水平上进行了三维折射率(RI)分布和膜波动的光学测量。通过光学测量,同时定量了形态学(体积、表面积和球形度)、生化(血红蛋白含量和浓度)和力学参数(动态膜波动),以研究储存 RBC 的功能和渐进性变化。我们的结果表明,没有 CPDA-1 的储存 RBC 在两周内从盘状细胞急剧转变为球形细胞,这伴随着细胞变形性和细胞表面积的显著降低,以及球形度的增加。然而,用 CPDA-1 储存的 RBC 可以保持其形态和变形性长达 6 周。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd63/5048416/6c1773138a48/srep34257-f1.jpg

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