首页> 美国卫生研究院文献>Materials >Well-Defined Diblock Poly(ethylene glycol)-b-Poly(ε-caprolactone)-Based Polymer-Drug Conjugate Micelles for pH-Responsive Delivery of Doxorubicin
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Well-Defined Diblock Poly(ethylene glycol)-b-Poly(ε-caprolactone)-Based Polymer-Drug Conjugate Micelles for pH-Responsive Delivery of Doxorubicin

机译:定义明确的基于二嵌段聚(乙二醇)-b-聚(ε-己内酯)的聚合物-药物偶联胶束用于阿霉素的pH响应递送

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摘要

Nanoparticles have emerged as versatile carriers for various therapeutics and can potentially treat a wide range of diseases in an accurate and disease-specific manner. Polymeric biomaterials have gained tremendous attention over the past decades, owing to their tunable structure and properties. Aliphatic polyesters have appealing attributes, including biodegradability, non-toxicity, and the ability to incorporate functional groups within the polymer backbone. Such distinctive properties have rendered them as a class of highly promising biomaterials for various biomedical applications. In this article, well-defined alkyne-functionalized poly(ethylene glycol)- -poly(ε-caprolactone) (PEG- -PCL) diblock copolymer was synthesized and studied for pH-responsive delivery of doxorubicin (DOX). The alkyne-functionalized PEG- -PCL diblock copolymer was prepared by the synthesis of an alkyne-functionalized ε-caprolactone (CL), followed by ring-opening polymerization (ROP) using PEG as the macroinitiator. The alkyne functionalities of PEG- -PCL were modified through copper(I)-catalyzed alkyne-azide cycloaddition (CuAAC) click reaction to graft aldehyde (ALD) groups and obtain PEG- -PCL- -ALD. Subsequently, DOX was conjugated on PEG- -PCL- -ALD through the Schiff base reaction. The resulting PEG- -PCL- -DOX polymer-drug conjugate (PDC) self-assembled into a nano-sized micellar structure with facilitated DOX release in acidic pH due to the pH-responsive linkage. The nanostructures of PDC micelles were characterized using transmission electron microscopy (TEM) and dynamic light scattering (DLS). In vitro studies of the PDC micelles, revealed their improved anticancer efficiency towards MCF-7 cells as compared to free DOX.
机译:纳米颗粒已经成为各种疗法的通用载体,并且可以潜在地以准确且针对疾病的方式治疗多种疾病。高分子生物材料由于其可调节的结构和性能,在过去的几十年中受到了极大的关注。脂肪族聚酯具有吸引人的属性,包括生物降解性,无毒性以及在聚合物主链内掺入官能团的能力。这种独特的特性使它们成为用于各种生物医学应用的一类高度有前途的生物材料。在本文中,合成了定义明确的炔烃官能化的聚(乙二醇)-聚(ε-己内酯)(PEG--PCL)二嵌段共聚物,并研究了其对pH响应的阿霉素(DOX)的传递。炔烃官能化的PEG-PCL二嵌段共聚物是通过合成炔烃官能化的ε-己内酯(CL),然后使用PEG作为大分子引发剂进行开环聚合(ROP)来制备的。通过铜(I)催化的炔-叠氮化物环加成(CuAAC)点击反应与接枝醛(ALD)基团修饰来修饰PEG--PCL的炔官能团,得到PEG--PCL--ALD。随后,通过席夫碱反应将DOX缀合在PEG--PCL--ALD上。所得的PEG--PCL--DOX聚合物-药物共轭物(PDC)自组装成纳米级胶束结构,由于pH响应键,在酸性pH中DOX释放容易。使用透射电子显微镜(TEM)和动态光散射(DLS)对PDC胶束的纳米结构进行了表征。对PDC胶束的体外研究表明,与游离DOX相比,它们对MCF-7细胞的抗癌作用有所改善。

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