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Synthesis and Applicationof Fluorescein-Labeled Pluronic Block Copolymers to the Study of Polymer-Surface Interactions

机译:荧光素标记的Pluronic嵌段共聚物的合成及在聚合物-表面相互作用研究中的应用

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We present a novel methodology for the conjugation of Pluronic poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) block copolymers with a fluorescein derivative, 5-(4,6-dichlorotriazinyl) aminofluorescein (5-DTAF), at room temperature under aqueous conditions. Two Pluronic block copolymers, F68with molecular weight (MW) 8400 and P105 withMW 6500, were examined. The labeled block copolymers exhibited maximum absorbance at 498 nm, peak fluorescence at 516 nm, and a marked reduction in both absorbance and fluorescence at acidic pH below 7. Flow cytometry was employed to quantify the renl-time adsorption kinetics of labeled block copolymers to two types of surfaces: polystyrene microspheres and blood cells, specifically platelets. This methodology allowed detection of Pluronics at low solution concentrations down to 1 #mu#M. In the case of labeled Pluronic F68 and P105 binding to polystyrene beads, a rapid time-dependent adsorption kinetics was observed with 80% adsorption occurring within 30 sand satU1"ation in 2 min. The concentration-dependent adsorption profile for Pluronic F68 binding to polystyrene beads was similar to that of P105, with increasing binding in the range from 1 to 25 #mu#M and saturation at higher concentrations. Surface modification of the polystyrene beads by carboxylation dramatically r~duced the binding of both Pluronic F68 and P105. In experiments that examined Pluronic interaction with blood platelets, we observed that Pluronics not only bind the platelets in a dose-dependent fashion but also bind soluble macromolecules in blood plasma. Overall, the labeled block copolymers s)'Ilthesized in this study were found to exhibit the fluorescence characteristics of the unconjugated 5-DTAF and the binding characteristics ofunlabel.ed Pluronics. Such an approach of labeling hydroxyl-terminated polymers with fluorescein and applying flow cytometry could be used to probe polymer-surface interactions in a variety of chemical and biological systems.
机译:我们提出了一种新颖的方法,用于将Pluronic聚环氧乙烷-聚环氧丙烷-聚环氧乙烷嵌段共聚物与荧光素衍生物5-(4,6-二氯三嗪基)氨基荧光素(5-DTAF)偶联,在室温和水性条件下。研究了两种Pluronic嵌段共聚物,分子量(MW)8400的F68和分子量6500的P105。标记的嵌段共聚物在498 nm处显示最大吸光度,在516 nm处显示峰值荧光,并且在酸性pH低于7时吸光度和荧光均显着降低。使用流式细胞仪将标记的嵌段共聚物的吸附时间动力学定量为两种表面类型:聚苯乙烯微球和血细胞,特别是血小板。这种方法允许在低至1#mu#M的低浓度溶液中检测Pluronics。在标记的Pluronic F68和P105与聚苯乙烯珠粒结合的情况下,观察到了快速的时间依赖性吸附动力学,在30分钟的饱和状态下2分钟内发生了80%的吸附。Pluronic F68与聚苯乙烯结合的浓度依赖性吸附曲线珠粒与P105的珠粒相似,在1至25#mu#M的范围内具有增加的结合力,并且在更高的浓度下饱和,聚苯乙烯珠粒通过羧基化的表面改性显着降低了Pluronic F68和P105的结合力。检验Pluronics与血小板相互作用的实验,我们观察到Pluronics不仅以剂量依赖的方式结合血小板,而且还结合血浆中的可溶性大分子。总体而言,该研究中标记的嵌段共聚物被证明具有非共轭5-DTAF的荧光特性和未标记的Pluronics的结合特性。这种标记羟基末端的方法带有荧光素的连接聚合物并应用流式细胞仪可用于探测多种化学和生物系统中聚合物与表面的相互作用。

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