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一种作为还原响应性载体用于触发药物释放的葡聚糖-铂(IV)共轭物。

A dextran-platinum(iv) conjugate as a reduction-responsive carrier for triggered drug release.

作者信息

He Shasha, Cong Yuwei, Zhou Dongfang, Li Jizhen, Xie Zhigang, Chen Xuesi, Jing Xiabin, Huang Yubin

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, 130022, PR China.

出版信息

J Mater Chem B. 2015 Nov 7;3(41):8203-8211. doi: 10.1039/c5tb01496d. Epub 2015 Sep 21.

Abstract

Reduction-responsive nano-carriers have been confirmed to be promising for intracellular drug delivery. To develop multifunctional polymer-based drug delivery system, a novel dextran-Pt(iv) conjugate was synthesized by conjugating Pt(iv) to the side chains of the hydrophilic dextran and used for doxorubicin (DOX) delivery. Pt(iv) conjugation could change the hydrophilicity of dextran, leading to the self-assembly of dextran-Pt(iv) conjugates with different morphologies. Pt(iv) segments served as the key components in assembly formation and as the antitumor prodrug. Under a reductive environment, Pt(iv) was found to be reduced to its active Pt(ii) form and cleaved from dextran, shifting the hydrophilic-hydrophobic balance of the dextran-Pt(iv) conjugate. The collapse of the assembly structure due to the partial or complete recovery of the hydrophilicity of dextran led to triggered release of DOX. The DOX-loaded dextran-Pt(iv) conjugate obtained by combining the released hydrophobic DOX and recovered hydrophilic Pt(ii), was found to be very effective as an antitumor agent as demonstrated in in vitro cytotoxicity evaluations. This DOX-loaded dextran-Pt(iv) conjugate system provided a new strategy to trigger the release of hydrophobic and hydrophilic drugs at the same time via single reduction-responsive control to provide an enhanced anti-tumor effect.

摘要

还原响应性纳米载体已被证实有望用于细胞内药物递送。为了开发基于聚合物的多功能药物递送系统,通过将铂(IV)与亲水性葡聚糖的侧链共轭合成了一种新型葡聚糖-铂(IV)共轭物,并用于阿霉素(DOX)递送。铂(IV)共轭可改变葡聚糖的亲水性,导致形成具有不同形态的葡聚糖-铂(IV)共轭物自组装体。铂(IV)片段是组装形成的关键成分,也是抗肿瘤前药。在还原环境下,发现铂(IV)被还原为其活性铂(II)形式并从葡聚糖上裂解下来,从而改变了葡聚糖-铂(IV)共轭物的亲水-疏水平衡。葡聚糖亲水性部分或完全恢复导致组装结构崩溃,从而引发阿霉素的释放。通过将释放的疏水性阿霉素与恢复亲水性的铂(II)结合得到的载阿霉素葡聚糖-铂(IV)共轭物,在体外细胞毒性评估中显示出作为抗肿瘤剂非常有效。这种载阿霉素葡聚糖-铂(IV)共轭物系统提供了一种新策略,通过单一还原响应控制同时触发疏水性和亲水性药物的释放,以增强抗肿瘤效果。

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