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Tailoring the Chemical Modification of Chitosan Hydrogels to Fine-Tune the Release of a Synergistic Combination of Chemotherapeutics

机译:剪裁壳聚糖水凝胶的化学改性以微调化学治疗剂协同组合的释放

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摘要

Combination chemotherapy with a defined ratio and sequence of drug release is a clinically established and effective route to treat advanced solid tumors. In this context, a growing body of literature demonstrates the potential of hydrogels constructed with chemically modified polysaccharides as depots for controlled release of chemotherapeutics. Identifying the appropriate modification in terms of physicochemical properties of the functional group and its degree of substitution (chi) to achieve the desired release profile for multiple drugs is, however, a complex multivariate problem. To address this issue, we have developed a computational toolbox that models the migration of a drug pair through a hydrated network of polysaccharide chains modified with hydrophobic moieties. In this study, we chose doxorubicin (DOX) and Gemcitabine (GEM) as model drugs, as their synergistic effect against breast cancer has been thoroughly investigated, and chitosan as the model polymer. Our model describes how the modification of chitosan chains with acetyl, butanoyl, and heptanoyl moieties at different values chi governs both the structure of the hydrogel network and drug migration through it. Our experimental data confirm the in silico predictions for both single- and dual-drug release and, most notably, the counterintuitive inversion of release vs chi that occurs when switching from a single- to a dual-drug system. Consensus between predicted and experimental data indicates that acetyl modifications (chi = 32-42%) and butanoyl modifications (chi = 19-24%) provide synergistic GEM/DOX release molar ratios (i.e., 5-10). Collectively, these results demonstrate the potential of this model in guiding the design of chemotherapeutic hydrogels to combat cancer.
机译:具有限定的比例和药物释放序列的组合化疗是治疗晚期实体瘤的临床建立和有效的途径。在这种情况下,越来越多的文献体现了用化学改性多糖构建的水凝胶作为化学治疗剂控制释放的池。然而,鉴定官能团的物质化学性质和其取代度(CHI)以实现所需的多种药物的所需释放曲线的适当修改,然而,具有复杂的多变量问题。为了解决这个问题,我们开发了一种计算工具箱,其通过用疏水部分改性的多糖链的水合网络模型模拟药物对的迁移。在这项研究中,我们选择多柔比星(DOX)和吉西他滨(GEM)作为模型药物,因为它们的协同效应已经彻底研究了乳腺癌,以及壳聚糖作为模型聚合物。我们的模型描述了如何用乙酰基,丁酰基和庚酰基的壳聚糖链的改性如何在不同价值观下治理水凝胶网络的结构和通过它的药物迁移。我们的实验数据证实了单次和双药释放的硅预测,最值得注意的是,从单一到双药系统切换时发生的释放VS CHI的逆行反转。预测和实验数据之间的共识表明乙酰型修饰(CHI = 32-42%)和丁酰基修饰(CHI = 19-24%)提供协同泡沫绒毛释放摩尔比(即5-10)。总的来说,这些结果表明了该模型在指导化学治疗水凝胶以对抗癌症的潜力。

著录项

  • 来源
    《Biomacromolecules》 |2019年第8期|共16页
  • 作者单位

    North Carolina State Univ Dept Chem &

    Biomol Engn Raleigh NC 27695 USA;

    Max Planck Inst Colloids &

    Interfaces Dept Theory &

    Biosyst D-14476 Potsdam Germany;

    North Carolina State Univ Dept Chem &

    Biomol Engn Raleigh NC 27695 USA;

    North Carolina State Univ Dept Chem &

    Biomol Engn Raleigh NC 27695 USA;

    Max Planck Inst Colloids &

    Interfaces Dept Theory &

    Biosyst D-14476 Potsdam Germany;

    North Carolina State Univ Dept Chem &

    Biomol Engn Raleigh NC 27695 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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