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首页> 外文期刊>Journal of Applied Polymer Science >Polyion complex micelles formed by azobenzene-based polymer with multi-responsive properties
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Polyion complex micelles formed by azobenzene-based polymer with multi-responsive properties

机译:聚硫末胶束由偶氮苯基聚合物形成,具有多响应性能

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Compared with the single polymer micelle system, the polyion complex micellar system is consisted of two or more polymers with different composition, which has more flexible structural adjustment and better performance, making them widely used in drug control release. In this work, two azobenzene-based amphiphilic copolymers P (MMA-co-PEGMA-co-NIPAM-co-HAZOMA) with ionized carboxyl and P (MMA-co-PEGMA-co-NIPAM-co-NNAZOMA) with protonated tertiary amine group were synthesized by reversible addition-fragmentation chain transfer (RAFT) polymerization. We studied self-assembled behavior of polymers and multi-component polymers, including their multiple responsiveness and the encapsulation, controlled release properties of polyion complex micelle. Light, pH, temperature, and reduction responsiveness of three micelles were investigated by UV-vis spectroscopy, transmission electron microscope (TEM), and dynamic light scattering. Compared to RCP 1, and RCP 2, RCP 1/RCP 2 micelle can release Nile red in both acidic and alkaline environment. When temperature reached critical solution temperature, RCP 1/RCP 2 micelle would release Nile red faster. Polyion complex micelle had better release performance compared to single micelles at the same environment, and could release in a wider range pH, making it had more potential applications in biological science field.
机译:与单聚合物胶束体系相比,多离子复合胶束体系由两种或两种以上不同组成的聚合物组成,具有更灵活的结构调整和更好的性能,广泛应用于药物控释。本工作采用可逆加成-断裂链转移(RAFT)聚合法合成了两种偶氮苯基两亲性共聚物P(MMA-co-PEGMA-co-NIPAM-co-HAZOMA)和P(MMA-co-PEGMA-co-NIPAM-co-NNAZOMA),分别含有游离羧基和质子化叔胺基。我们研究了聚合物和多组分聚合物的自组装行为,包括它们的多重响应性以及多离子复合胶束的包封和控释性能。通过紫外可见光谱、透射电镜(TEM)和动态光散射研究了三种胶束的光、pH、温度和还原响应性。与rcp1和rcp2相比,rcp1/rcp2胶束在酸性和碱性环境中均能释放尼罗红。当温度达到临界溶液温度时,RCP1/RCP2胶束释放尼罗红的速度更快。与单一胶束相比,多离子复合胶束在相同环境下具有更好的释放性能,并且可以在更宽的pH范围内释放,使其在生物科学领域具有更大的应用潜力。

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