>The dynamics of trapped entities in an Optical Trap (OT) can yield information with regards to their v'/> Effect of Bovine Serum Albumin on Red Blood Cell Optical Anisotropy Probed Through the Optomechanical Response in an Optical Trap
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Effect of Bovine Serum Albumin on Red Blood Cell Optical Anisotropy Probed Through the Optomechanical Response in an Optical Trap

机译:牛血清白蛋白对光学陷阱的光学力学反应探测红细胞光学各向异性的影响

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>The dynamics of trapped entities in an Optical Trap (OT) can yield information with regards to their viscoelastic response as well as optical anisotropy, if any. Detailed analysis of such dynamics correlated with parameters which affect the response can yield additional clues to the exact effect of these on the trapped entities. In this work, we illustrate this point by showing how the altered behavior of Red Blood Cells (RBC) treated with Bovine Serum Albumin (BSA) yields information about the nature of action of BSA, on which there is no current consensus in literature. We conclude from our studies that BSA treatment leads to a change in the birefringence of the RBCs, a conclusion arrived at from the altered optomechanical response of such cells in a linearly polarized Gaussian beam OT. Furthermore, we argue that the observed changes in cellular optical anisotropy may be thought of as due to changes in the curvature of the RBC membrane. We also note that BSA action could help mimic pathological conditions that result in an altered cell shape.
机译: <第XML:ID =“Masy201600209-SEC-0001”>

光学陷阱中捕获实体的动态(OT)可以产生关于关于的信息它们的粘弹性响应以及光学各向异性,如果有的话。详细分析与影响响应的参数相关的这种动态可以将额外的线索产生在捕获的实体上的确切效果。在这项工作中,我们通过展示用牛血清白蛋白(BSA)处理的红细胞(RBC)的改变行为如何产生有关BSA的作用性质的信息,在此期间在文献中没有共识。我们从我们的研究中得出结论,即BSA治疗导致RBC的双折射的变化,结论从这种细胞在线性极化高斯光束OT中的改变的ophotoLock响应到达。此外,我们认为观察到的细胞光学各向异性的变化可能被认为是由于RBC膜的曲率变化。我们还注意到BSA动作可以帮助模拟导致细胞形状改变的病理条件。

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