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Interaction of fluorescent molecular rotors with blood plasma proteins

机译:荧光分子转子与血浆蛋白的相互作用

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Many disease states have associated blood viscosity changes. Molecular rotors, fluorescent molecules with viscosity sensitive quantum yields, have recently been investigated as a new method for biofluid viscosity measurement. Current vis-cometer measurements are complicated by proteins adhering to surfaces and forming air-surface layers. It is unknown at this time what effects proteins may have on biofluid viscosity measurements using molecular rotors. To answer this question, binding affinities to blood plasma proteins were investigated by equilibrium dialysis for four hydrophilic molecular rotors. Aqueous solutions of 9-[(2-cyano-2-hydroxy-carbonyl)vinyl] julolidine (CCVJ) and three derivatives were prepared and dialyzed against solutions of bovine source albumin, fibrinogen and immunoglobulin G approximating normal physiologic concentrations and fresh-frozen human plasma. After equilibration, dye concentration on each side of the dialysis membrane was assessed by spectrophotometry. The relative binding affinity of the four dyes to the proteins and to the plasma was compared. Affinity of all dyes was highest for albumin. The bound dye fraction showed little change in relation to protein concentration in the physiological concentration range. Diol, the most hydrophilic molecular rotor tested showed the lowest affinity for albumin. This study indicates that hydrophilic molecular rotors are well-suited for biofluid viscosity measurement.
机译:许多疾病状态都有相关的血液粘度变化。分子转子,具有对粘度敏感的量子产率的荧光分子,最近已被研究为一种生物流体粘度测量的新方法。由于蛋白质粘附到表面并形成空气表面层,当前的粘度计测量变得很复杂。目前尚不清楚蛋白质对使用分子转子的生物流体粘度测量有何影响。为了回答这个问题,通过平衡透析研究了四个亲水分子转子对血浆蛋白的结合亲和力。制备9-[((2-氰基-2-羟基-羰基)乙烯基]朱洛定(CCVJ)和三种衍生物的水溶液,并用近似正常生理浓度的牛源白蛋白,纤维蛋白原和免疫球蛋白G和新鲜冷冻的人透析。等离子体。平衡后,通过分光光度法评估透析膜每一侧的染料浓度。比较了四种染料对蛋白质和对血浆的相对结合亲和力。所有染料对白蛋白的亲和力最高。在生理浓度范围内,结合的染料级分相对于蛋白质浓度几乎没有变化。二醇,测试的最亲水的分子转子对白蛋白的亲和力最低。这项研究表明,亲水性分子转子非常适合生物流体粘度的测量。

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