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Deformation behaviour of stomatocyte, discocyte and echinocyte red blood cell morphologies during optical tweezers stretching

机译:光缠结仪在光学镊子中的椎间囊,脱闭和棘状细胞红细胞形态的变形行为

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摘要

The red blood cell (RBC) deformability is a critical aspect, and assessing the cell deformation characteristics is essential for better diagnostics of healthy and deteriorating RBCs. There is a need to explore the connection between the cell deformation characteristics, cell morphology, disease states, storage lesion and cell shape-transformation conditions for better diagnostics and treatments. A numerical approach inspired from the previous research for RBC morphology predictions and for analysis of RBC deformations is proposed for the first time, to investigate the deformation characteristics of different RBC morphologies. The present study investigates the deformability characteristics of stomatocyte, discocyte and echinocyte morphologies during optical tweezers stretching and provides the opportunity to study the combined contribution of cytoskeletal spectrin network and the lipid-bilayer during RBC deformation. The proposed numerical approach predicts agreeable deformation characteristics of the healthy discocyte with the analogous experimental observations and is extended to further investigate the deformation characteristics of stomatocyte and echinocyte morphologies. In particular, the computer simulations are performed to investigate the influence of direct stretching forces on different equilibrium cell morphologies on cell spectrin link extensions and cell elongation index, along with a parametric analysis on membrane shear modulus, spectrin link extensibility, bending modulus and RBC membrane-bead contact diameter. The results agree with the experimentally observed stiffer nature of stomatocyte and echinocyte with respect to a healthy discocyte at experimentally determined membrane characteristics and suggest the preservation of relevant morphological characteristics, changes in spectrin link densities and the primary contribution of cytoskeletal spectrin network on deformation behaviour of stomatocyte, discocyte and echinocyte morphologies during optical tweezers stretching deformation. The numerical approach presented here forms the foundation for investigations into deformation characteristics and recoverability of RBCs undergoing storage lesion.
机译:红细胞(RBC)可变形性是一个关键方面,评估细胞变形特征对于更好的健康和恶化RBC的诊断至关重要。需要探索细胞变形特征,细胞形态,疾病状态,储存病变和细胞形状转化条件之间的连接,以便更好的诊断和治疗。首次提出了一种来自先前研究RBC形态预测和分析RBC变形的数值方法,以研究不同RBC形态的变形特征。本研究研究了在光学镊子伸展期间的曲肽,脱囊细胞和棘状细胞形态的可变形性特征,并提供了在RBC变形期间研究细胞骨骼光谱网络和脂质双层的合并贡献的机会。所提出的数值方法预测了具有类似实验观察的健康脱晶胞的宜人变形特征,并扩展以进一步研究气囊细胞和棘肌细胞形态的变形特征。特别地,进行计算机模拟以研究直接拉伸力对细胞光谱链路延伸和细胞伸长指数的不同平衡细胞形态的影响,以及参数分析膜剪切模量,光谱链路可置换,弯曲模量和RBC膜 - 触头直径。结果一致认为,在实验确定的膜特征中对健康的脱椎细胞进行了实验观察到的STOPTOCYTE和ESHINOCYTE的静止性质,并表明了相关形态特征的保存,光谱链路密度的变化以及细胞骨骼光谱网络对变形行为的主要贡献光学镊子伸展变形期间的SomeTocyte,脱髓和棘状细胞形态。本文呈现的数值方法形成了对经历储存病变的变形特征和RBC的可回收性的基础。

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