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Dual Stimuli-Responsive Block Copolymers for ControlledRelease Triggered by Upconversion Luminescence or Temperature Variation

机译:受控双反应性嵌段共聚物由上转换发光或温度变化触发的释放

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摘要

An amphiphilic block copolymer (BCP) which contains both photoresponsive and thermoresponsive blocks was synthesized by the atom transfer radical polymerization approach. Meanwhile, a new core/shell type of the upconversion nanoparticle (UCNP) LiYF4:Yb3+0.25,Tm3+0.01@LiYF4:Yb3+0.2 was successfully synthesized. By encapsulating UCNPs inside the micelles of the BCP and incorporating Nile red (NR) into the UCNP@BCP hybrid nanoparticles as a model drug, controlled release of the drug by the dual-stimuli BCP could be studied. After exposing the UCNP-loaded micellar solution to near-infrared (NIR) light, it was found that the UV light pumped from UCNPs could disrupt the polymer micelles and the fluorescence intensity of NR decreased with the increase of the irradiation time of the NIR light. The thermoresponsive study indicated that the fluorescence intensity of NR decreased with the increase of temperature of the micellar solution because of the release of NR into water arising from the contraction of the amphiphilic BCP.
机译:通过原子转移自由基聚合方法合成了同时包含光敏嵌段和热敏嵌段的两亲嵌段共聚物(BCP)。同时,新的核/壳型上转换纳米粒子LiYF4:Yb 3 + 0.25,Tm 3 + 0.01@LiYF4:Yb 3+ < /sup>0.2已成功合成。通过将UCNPs封装在BCP的胶束中,并将尼罗红(NR)掺入UCNP @ BCP杂化纳米颗粒中作为模型药物,可以研究双刺激BCP对药物的控制释放。将载有UCNP的胶束溶液暴露于近红外(NIR)光后,发现从UCNP泵浦的紫外光会破坏聚合物胶束,并且NR的荧光强度随NIR光的照射时间的增加而降低。 。热响应研究表明,NR的荧光强度随着胶束溶液温度的升高而降低,这是由于两亲性BCP的收缩导致NR释放到水中。

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