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Preparation of pH-Responsive Polymer Core-Shell Nanospheres for Delivery of Hydrophobic Antineoplastic Drug Ellipticine

机译:pH响应型聚合物核壳纳米球的制备,用于疏水性抗肿瘤药物玫瑰树碱的递送

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摘要

Antineoplastic drug ellipticine and its derivatives are used in human cancer therapy. However, their clinical applications have been limited by its great hydrophobicity and severe side effects. An efficient delivery system is therefore very desirable. In this research, an ellipticine-loaded core-shell structured nanosphere namely poly(DEAEMA)-poly(PEGMA) is designed as a drug carrier and prepared via a two-step semibatch emulsion polymerization method where DEAEMA and PEGMA represent 2-(diethylamino)ethyl methacrylate and poly(ethylene glycol) methacrylate, respectively. The in-vitro release profiles of ellipticine towards the different pH liposome vesicles are recorded as a function of time at 37 °C. It is found that release of ellipticine fromthe core-shell polymer matrix is a pH-responsive and controlled release process. The three pH's of 3, 4, and 5 trigger a significant ellipticine release of 88% after 98 h, 83% after 98 h, and 79% after 122 h, respectively. The release mechanism of ellipticine from the core-shell polymer matrix under acidic conditions is explored. The synthesis and encapsulation process developed herein provides a new perspective for the development of appropriate delivery systems to deliver the ellipticine and its analogues, as well as other types of hydrophobic drugs to a given target cell or tumor tissue.
机译:抗肿瘤药玫瑰树碱及其衍生物用于人类癌症治疗。然而,它们的疏水性和严重的副作用限制了它们的临床应用。因此,非常需要一种有效的输送系统。在这项研究中,以玫瑰树碱为载体的核壳结构纳米球即聚(DEAEMA)-聚(PEGMA)被设计为药物载体,并通过两步半间歇乳液聚合法制备,其中DEAEMA和PEGMA代表2-(二乙氨基)分别为甲基丙烯酸乙酯和聚甲基丙烯酸乙二醇酯。玫瑰树碱对不同pH脂质体囊泡的体外释放曲线记录为在37°C下时间的函数。发现玫瑰树碱从核-壳聚合物基质中的释放是pH响应和受控释放过程。 3、4和5这三个pH值分别在98小时后触发88%的玫瑰树碱释放,98小时后触发83%的玫瑰树碱释放和122小时之后触发79%的玫瑰树碱释放。探索了玫瑰树碱在酸性条件下从核-壳聚合物基质中的释放机理。本文开发的合成和包封方法为开发合适的递送系统提供了新的视角,该系统可将玫瑰树碱及其类似物以及其他类型的疏水性药物递送至给定的靶细胞或肿瘤组织。

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