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首页> 外文期刊>RSC Advances >A thermo- and pH-responsive poly(N-isopropylacrylamide)–Mn–ZnS nanocomposite for controlled release and real-time photoluminescence tracking of doxorubicin
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A thermo- and pH-responsive poly(N-isopropylacrylamide)–Mn–ZnS nanocomposite for controlled release and real-time photoluminescence tracking of doxorubicin

机译:用于受控释放的热和pH响应聚(N-异丙基丙烯酰胺)-MN-ZnS纳米复合材料和多柔比星的实时光致发光跟踪

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摘要

Smart drug carriers with intrinsic photoluminescence (PL) tracking of controllably released drugs are of great significance to indicate in real-time where, when and how the drug was released. Herein, we present a novel multifunctional poly( N -isopropylacrylamide)–Mn–ZnS (PMZS) nanocomposite for thermo- and pH-controlled release of doxorubicin (Dox) and real-time tracking of the released Dox in a PL-enhanced manner. The simple coupling of Mn–ZnS quantum dots and poly( N -isopropylacrylamide) resulted in the unique thermo- and pH-responsive PL of PMZS. There was a much higher PL intensity at 37 °C than 25 °C and a much higher PL intensity at weakly acidic pH than at neutral pH, which is promising for PL imaging in tumor microenvironments. The PL of the PMZS composite was greatly quenched upon loading of Dox (the loading content and encapsulation efficiency of PMZS composites toward Dox were 15.2% and 84.1%, respectively), but was gradually restored with the controllable release of Dox, and the restored PL intensity was proportional to the cumulative amount of Dox released. The versatility of the PMZS composite as an effective Dox carrier and real-time PL-enhanced tracking of the controllably released Dox were further proved by cell viability assays and in vitro cell imaging experiments. The simple PMZS nanocomposite was easily-synthesized, biocompatible, and promising for PL tracking of when, where and how Dox was released.
机译:具有固有的光致发光(PL)跟踪可控释放的药物的智能药物载体具有重要意义,目的是在释放药物的实时,何时以及如何释放。在此,我们将一种新型多功能聚(N-异丙基丙烯酰胺)-MN-ZNS(PMZS)纳米复合材料用于多柔比星(DOX)的热和pH控制释放,并以PL增强的方式对释放的DOX进行实时跟踪。 Mn-ZnS量子点和聚(N-异丙基丙烯酰胺)的简单耦合导致了PMZ的独特热和pH响应PL。在37°C的PL强度比25°C在37℃下,并且在弱酸性pH下的PL强度高于中性pH值,这对肿瘤微环境的PL成像很有前景。在装载DOX时,PMZS复合材料的PL大大淬火(PMZS复合材料的加载含量和朝向DOX的封装效率分别为15.2%和84.1%),但随着DOX的可控释放和恢复的PL逐渐恢复强度与释放的DOX的累积量成比例。通过细胞活力测定和体外细胞成像实验,进一步证明了PMZS复合材料作为有效的DOX载体和可控释放的DOX的实时PL增强跟踪的多功能性。简单的PMZS纳米复合材料易于合成,生物相容性,并且希望PL跟踪释放的何种方式,地点和如何。

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