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Measuring Electrical and Mechanical Properties of Red Blood Cells with a Double Optical Tweezers

机译:用双光镊测量红细胞的电气和机械性能

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The fluid lipid bilayer viscoelastic membrane of red blood cells (RBC) contains antigen glycolproteins and proteins which can interact with antibodies to cause cell agglutination. This is the basis of most of the immunohematologic tests in blood banks and the identification of the antibodies against the erythrocyte antigens is of fundamental importance for transfusional routines. The negative charges of the RBCs creates a repulsive electric (zeta) potential between the cells and prevents their aggregation in the blood stream. The first counterions cloud strongly binded moving together with the RBC is called the compact layer. This report proposes the use of a double optical tweezers for a new procedure for measuring: (1) the apparent membrane viscosity, (2) the cell adhesion, (3) the zeta potential and (4) the compact layer's size of the charges formed around the cell in the electrolytic solution. To measure the membrane viscosity we trapped silica beads strongly attached to agglutinated RBCs and measured the force to slide one RBC over the other as a function of the relative velocity. The RBC adhesion was measured by slowly displacing two RBCs apart until the disagglutination happens. The compact layer's size was measured using the force on the silica bead attached to a single RBC in response to an applied voltage and the zeta potential was obtained by measuring the terminal velocity after releasing the RBC from the optical trap at the last applied voltage. We believe that the methodology here proposed can improve the methods of diagnosis in blood banks.
机译:红细胞的流体脂质双层粘弹性膜(RBC)包含抗原二醇蛋白和可以与抗体相互作用以引起细胞凝集的蛋白。这是血库中大多数免疫血液学检查的基础,而针对红细胞抗原的抗体的鉴定对于输血程序至关重要。 RBC的负电荷在细胞之间产生排斥电势(zeta),并阻止其在血流中聚集。与RBC一起牢固结合在一起的第一个抗衡离子云称为致密层。该报告建议使用双光镊来测量以下新过程:(1)表观膜粘度;(2)细胞粘附力;(3)ζ电位;(4)紧致层的电荷大小在电解液中的电池周围。为了测量膜的粘度,我们捕获了牢固附着在凝集的RBC上的二氧化硅珠,并测量了一个RBC在另一RBC上滑动的力与相对速度的关系。通过缓慢地将两个RBC分开放置直到发生胶凝作用来测量RBC的粘附力。响应施加的电压,使用附着在单个RBC上的二氧化硅珠上的力来测量致密层的尺寸,并通过在最后施加的电压下将RBC从光阱释放后,通过测量终端速度来获得zeta电位。我们认为,本文提出的方法可以改善血库的诊断方法。

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