首页> 外文会议>Conference on medical laser applications and laser-tissue interactions VI >Relative Deformability of Red Blood Cells in Sickle Cell Trait and Sickle Cell Anemia by Trapping and Dragging
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Relative Deformability of Red Blood Cells in Sickle Cell Trait and Sickle Cell Anemia by Trapping and Dragging

机译:通过捕获和拖动,镰状细胞性状和镰状细胞贫血中红细胞的相对可变形性

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Genetic mutation of the (3-globin gene or inheritance of this mutated gene changes the chemical composition of the oxygen-carrying hemoglobin molecule that could lead to either the heterozygote genotype, resulting in sickle cell trait (SCT), or the homozygote genotype, resulting in sickle cell anemia (SCA). These mutations could affect the reversible elastic deformations of the red blood cells (RBCs) which are vital for biological functions. We have investigated this effect by studying the differences in the deformability of RBCs from blood samples of an individual with SCT and an untreated patient with SCA along with hemoglobin quantitation of each blood sample. Infrared 1064 nm laser trap force along with drag shear force are used to induce deformation in the RBCs. Ultra2-High Performance Liquid Chromatography (UHPLC) is used for the hemoglobin quantitation.
机译:(该突变基因的3-珠蛋白基因或遗传的遗传突变改变了可能导致杂合子基因型的携带血红蛋白分子的化学成分,导致镰状细胞性状(SCT),或纯合出基因型,所产生的在镰状细胞贫血(SCA)中。这些突变可能影响对生物学功能至关重要的红细胞(RBC)的可逆弹性变形。我们通过研究来自血液样本的RBC的可变形性的差异来研究了这种效果具有SCT的个体和未经处理的患者与每个血液样品的血红蛋白定量。红外线1064nm激光捕集力以及阻力剪切力用于诱导RBC中的变形。超2高效液相色谱(UHPLC)用于血红蛋白定量。

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