首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Novel designed polymer-acyclovir conjugates with linker-controlled drug release and hepatoma cell targeting
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Novel designed polymer-acyclovir conjugates with linker-controlled drug release and hepatoma cell targeting

机译:新型设计的聚合物-阿昔洛韦缀合物,具有接头控制的药物释放和靶向肝癌细胞的作用

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To develop designed polymer-drug conjugates, where the rate of drug liberation and hepatoma cell targeting function could be rationally and widely controlled, we facilely synthesized a series of novel, galactose-functionalized polymer-acyclovir conjugates with different linkers and first reported the effect of the linker structure including the type of acyclovir-linked bond (an ester bond or an amide bond) and relative length of the linker between acyclovir and the polymer main chain on release rate and targeting ability of conjugates. In vitro release studies showed that the cumulative released acyclovir from these polymer-acyclovir conjugates was between 24 and 65% in pH 1.2 glycine solution after 7 days. The ester bond more easily underwent hydrolysis than the amide bond. The longer the relative linker length was, the faster the acyclovir was released. The cell recognition experiments visualized using confocal laser scanning microscopy exhibited that the resultant galactose-functionalized polymer-acyclovir conjugates had evident targeting to hepG2 cells, and targeting ability was also in connection with the relative length of linker. By choosing appropriate linker, cellular internalization of acyclovir could be well achieved. We consider these results to be helpful for the design of multifunctional polymeric prodrugs, in which the required release rate and targeting ability could be rationally controlled by predetermined molecular architecture. (c) 2007 Wiley Periodicals, Inc.
机译:为了开发可合理且广泛控制药物释放速率和肝癌细胞靶向功能的设计的聚合物-药物偶联物,我们轻松合成了一系列具有不同接头的半乳糖官能化聚合物-阿昔洛韦偶联物,并首次报道了接头结构包括无环鸟苷连接的键的类型(酯键或酰胺键)以及无环鸟苷和聚合物主链之间的接头相对长度,取决于结合物的释放速率和靶向能力。体外释放研究表明,在7天后,在pH 1.2甘氨酸溶液中,这些聚合物-阿昔洛韦缀合物的累积释放阿昔洛韦在24%至65%之间。酯键比酰胺键更容易水解。相对接头长度越长,阿昔洛韦释放越快。使用共聚焦激光扫描显微镜可视化的细胞识别实验显示,所得的半乳糖官能化的聚合物-阿昔洛韦缀合物具有针对hepG2细胞的明显靶向,并且靶向能力也与接头的相对长度有关。通过选择合适的接头,可以很好地实现阿昔洛韦的细胞内在化。我们认为这些结果对于多功能聚合物前药的设计是有帮助的,其中所需的释放速率和靶向能力可以通过预定的分子结构合理地控制。 (c)2007年Wiley Periodicals,Inc.

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