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Local polarity and microviscosity in the hydrophobic cores of amphiphilic star-like and scorpion-like macromolecules

机译:两亲性星状和蝎子状大分子的疏水核中的局部极性和微粘度

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Fluorescence spectroscopy is used to probe the polarity and local friction in aqueous solutions of three amphiphilic polymers. Aggregate core polarity and local friction on the nanoscale are observed by measuring the steady-state and time-resolved fluorescence spectroscopy of coumarin 153 (C153) in three amphiphilic polymers as a model for hydrophobic drug encapsulation. Three solutions of polymers are studied: one amphiphilic scorpion-like macromolecule (AScM), M12P5, and two amphiphilic star-like macromolecules (ASMs), NC12P5 and NC6P5. Both ASMs and AScMs consist of hydrophobic segments of acylated mucic acid and hydrophilic poly(ethylene glycol) chains. In aqueous solution, the scorpion-like M12P5 forms micellar aggregates through hydrophobic interactions, while the star-like polymers are covalently bonded macromolecules that form higher order aggregates. Micelle and aggregate sizes are compared using dynamic light scattering measurements. A shift in the steady-state emission wavelength of C153 indicates distinct differences in polarity between the core environments of the scorpion-like polymer micelles and those of the two star-like polymers. The two reorientation time constants from C153 fluorescence anisotropies show that the hydrophobic cores of M12P5 micelles are relatively flexible. The covalently linked, rigid cores of the two star-like macromolecule nanocarriers, NC6P5 and NC12P5, show a third reorientation time constant for which the local friction of the dye is remarkably higher.
机译:荧光光谱法用于探测三种两亲聚合物在水溶液中的极性和局部摩擦。通过测量三种两亲聚合物中香豆素153(C153)的稳态和时间分辨荧光光谱作为疏水性药物封装的模型,可以观察到纳米级上的聚集核极性和局部摩擦。研究了三种聚合物溶液:一种两亲性蝎状大分子(AScM)M12P5,以及两种两性星形类大分子(ASM)NC12P5和NC6P5。 ASM和AScM均由酰化的粘酸的疏水链段和亲水性聚乙二醇链组成。在水溶液中,蝎子状的M12P5通过疏水相互作用形成胶束聚集体,而星形聚合物是共价键结合的大分子,形成更高阶的聚集体。使用动态光散射测量比较胶束和骨料的尺寸。 C 153的稳态发射波长的变化表明,蝎子状聚合物胶束的核心环境与两种星状聚合物的核心环境之间的极性存在明显差异。来自C153荧光各向异性的两个重新定向时间常数表明,M12P5胶束的疏水核心相对灵活。两个星形大分子纳米载体NC6P5和NC12P5的共价连接的刚性核显示出第三重新取向时间常数,该时间常数的染料的局部摩擦力明显更高。

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