首页> 外文期刊>Dyes and Pigments >Confinement of 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin in novel poly(vinylpyrrolidone)s modified with aromatic amines
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Confinement of 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin in novel poly(vinylpyrrolidone)s modified with aromatic amines

机译:在芳香胺修饰的新型聚乙烯吡咯烷酮中限制5,10,15,20-四-(4-磺酰基苯基)-卟啉的含量

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摘要

Polymeric derivatives of the biocompatible poly(vinylpyrrolidone) bearing discrete amounts of aromatic amines have been synthesized. The interaction of 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin with a series of these copolymers (P10, P25, P50, P75, and P100, the numbers referring the molar percentage of incorporation of aromatic amines in the copolymers) has been analyzed regarding shifts of the absorption bands and shift of the transition pH between the di-anionic and the tetra-anionic forms of 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin. The interaction between the dye and poly(-vinylpyrrolidone) has also been studied as a control. The incorporated aromatic amines increase the hydrophobic properties of the resulting polymers and provide specific interactions with the tetra-anionic form of 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin. Thus, P10 was soluble in water, P25 was dispersible in the form of polydisperse nanoparticles, and P50, P75, and P100 are insoluble in water. However, low polydisperse nanoparticles of mean size of 175 nm were formed by pouring 1 volume of a solution of P25 in DMSO into 9 volumes of water. These nanoparticles are permeable to 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin. Both P10 and P25 nanoparticles produce strong binding to 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin, stabilize the tetra-anionic form of the dye in a wide range of pH, and prevent the undesirable self-aggregation both in the form of H- and J-aggregates. It was shown that the affinity of the 5,10,15,20-tetrakis-(4-sulfonatophenyl)-porphyrin for P10 is stronger than for chitosan, which gives insights concerning the possible stability of the complex in biological systems.
机译:已经合成了具有离散量的芳族胺的生物相容性聚(乙烯基吡咯烷酮)的聚合物衍生物。 5,10,15,20-四-(4-磺酰基苯基)-卟啉与一系列这些共聚物(P10,P25,P50,P75和P100)的相互作用,这些数字表示芳族胺在已经分析了关于5,10,15,20-四-(4-磺酰基苯基)-卟啉的二阴离子和四阴离子形式之间的吸收带移动和过渡pH的移动。还已经研究了染料和聚(乙烯基吡咯烷酮)之间的相互作用作为对照。掺入的芳族胺提高了所得聚合物的疏水性,并与5,10,15,20-四-(4-磺酰基苯基)-卟啉的四阴离子形式提供特定的相互作用。因此,P10可溶于水,P25以多分散纳米颗粒的形式可分散,并且P50,P75和P100不溶于水。但是,通过将1体积的P25在DMSO中的溶液倒入9体积的水中,可以形成平均粒径为175 nm的低多分散纳米颗粒。这些纳米颗粒可渗透5,10,15,20-四-(4-磺酰基苯基)-卟啉。 P10和P25纳米颗粒均能与5,10,15,20-四-(4-磺酰基苯基)-卟啉牢固结合,在很宽的pH范围内稳定染料的四阴离子形式,并防止不良的自聚集均以H和J聚合的形式出现。结果表明5,10,15,20-四-(4-磺酰基苯基)-卟啉对P10的亲和力强于对壳聚糖的亲和力,这为复合物在生物系统中的可能稳定性提供了见识。

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