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OPTICAL DETECTION OF MACROMOLECULAR HEPARIN VIA SELECTIVE COEXTRACTION INTO THIN POLYMERIC FILMS

机译:通过选择性共萃取成薄型聚合物膜的光学检测大分子肝素

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Thin plasticized polymer films, poly(vinyl chloride) doped with a specific ion pairing quaternary ammonium compound, tridodecylmethylammonium chloride, and a lipophilic pH indicator, 3-hydroxy-4-(4-nitrophenylazo)phenyl octadeconate, are shown to exhibit significant and analytically useful optical response toward macromolecular heparin. The response mechanism is based on favorable extraction of heparin into the bulk organic film, owing to the specific ion-pairing complexation reaction between the quaternary ammonium species and the polyanion. A simultaneous coextraction of hydrogen ions results in protonation of the pH chromophore and hence a change in the optical absorbance of the polymeric film. When used in a limited volume/fixed exposure (10 min) detection mode, film absorbances change as a function of the initial heparin concentration in the range of 0.2-3.0 units/mL (1.2-18 mu g/mL). The practical measurement response time is controlled by heparin diffusion through the stagnant diffusion layer adjacent to the surface of the film as well as within the bulk of the polymer film and is shown to increase with the molecular weight of the heparin species tested. No optical response to heparin is observed when a strong heparin complexing agent (e.g., protamine) is present in the test solution, suggesting that the polymer film can be used to conveniently monitor heparin-protamine (or other antagonist) titrations. The theory relating to the operation of the sensing film in either the equilibrium or the kinetic mode and the selectivity of the optimized film to heparin relative to small anions are presented.
机译:薄塑化的聚合物薄膜,掺杂有特定离子对的季铵化合物,三十二烷基甲基氯化铵和亲脂性pH指示剂3-羟基-4-(4-硝基苯基偶氮)苯基十八碳酸酯掺杂的聚(氯乙烯)显示出显着的和分析性的对大分子肝素有用的光学反应。响应机制是基于季铵盐类和聚阴离子之间特定的离子对络合反应,将肝素有利地萃取到整体有机膜中。氢离子的同时共萃取导致pH生色团的质子化,因此导致聚合物膜的光吸收率发生变化。当以有限体积/固定曝光(10分钟)检测模式使用时,薄膜吸光度随初始肝素浓度的变化而变化,范围为0.2-3.0单位/mL(1.2-18μg/ mL)。实际的测量响应时间由肝素通过邻近膜表面以及聚合物膜主体内的停滞扩散层的扩散来控制,并且显示随所测试肝素种类的分子量的增加而增加。当测试溶液中存在强肝素络合剂(例如鱼精蛋白)时,未观察到对肝素的光学响应,这表明该聚合物膜可用于方便地监测肝素-鱼精蛋白(或其他拮抗剂)的滴定。提出了与传感膜在平衡或动力学模式下的操作有关的理论,以及相对于小阴离子,优化膜对肝素的选择性。

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