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遗传性球形红细胞增多症中红细胞的纳米和微米级力学特性

Nano- and microscale mechanical properties of erythrocytes in hereditary spherocytosis.

作者信息

Starodubtseva Maria N, Mitsura Ekaterina F, Starodubtsev Ivan E, Chelnokova Irina A, Yegorenkov Nikolai I, Volkova Lyudmila I, Kharin Yuriy S

机构信息

Gomel State Medical University, Department of Medical and Biological Physics, Lange Str., 5, 246000 Gomel, Belarus; Radiobiology Institute of NAS of Belarus, Fedyuninskogo Str., 4, 246007 Gomel, Belarus.

Republican Scientific and Practical Center for Radiation Medicine and Human Ecology, Ilyicha Str., 290, 246040 Gomel, Belarus.

出版信息

J Biomech. 2019 Jan 23;83:1-8. doi: 10.1016/j.jbiomech.2018.11.017. Epub 2018 Nov 16.

Abstract

Hereditary spherocytosis (HS), an erythrocyte membranopathy, is a heterogeneous disease, even at the level of the erythrocyte population. The paper aims at studying the mechanical properties (the Young's modulus, median and RMS roughness of friction force maps; fractal dimension, lacunarity and spatial distribution parameters of lateral force maps) of the cell surface layer of the erythrocytes of two different morphologies (discocytes and spherocytes) in HS using atomic force microscopy. The results of spatial-spectral and fractal analysis showed that the mechanical property maps of the HS spherocyte surface were more structurally homogeneous compared to the maps of HS discocytes. HS spherocytes also had a reduced RMS roughness and lacunarity of the mechanical property maps. The Young's modulus and averaged friction forces over the microscale HS spherocyte surface regions were approximately 20% higher than that of HS discocytes. The revealed significant difference at the nano- and microscales in the structural and mechanical properties of main (discoidal and spheroidal) morphological types of HS erythrocytes can potentially cause blood flow disturbance in the vascular system in HS.

摘要

遗传性球形红细胞增多症(HS)是一种红细胞膜病,即使在红细胞群体水平上也是一种异质性疾病。本文旨在利用原子力显微镜研究HS中两种不同形态(盘状红细胞和球形红细胞)的红细胞表面层的力学性能(杨氏模量、摩擦力图的中位数和均方根粗糙度;侧向力图的分形维数、空隙率和空间分布参数)。空间光谱和分形分析结果表明,与HS盘状红细胞的图谱相比,HS球形红细胞表面的力学性能图谱在结构上更均匀。HS球形红细胞的力学性能图谱的均方根粗糙度和空隙率也降低。在微观尺度上,HS球形红细胞表面区域的杨氏模量和平均摩擦力比HS盘状红细胞高约20%。HS红细胞主要形态类型(盘状和球状)在纳米和微观尺度上结构和力学性能的显著差异可能会导致HS患者血管系统中的血流紊乱。

相似文献

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Ageing of blood in hereditary spherocytosis.遗传性球形红细胞增多症中的血液老化
Scand J Haematol. 1980 Aug;25(2):134-40. doi: 10.1111/j.1600-0609.1981.tb01378.x.

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