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首页> 外文期刊>Frontiers in Chemistry >pH and Redox Dual-Sensitive Covalent Organic Framework Nanocarriers to Resolve the Dilemma Between Extracellular Drug Loading and Intracellular Drug Release
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pH and Redox Dual-Sensitive Covalent Organic Framework Nanocarriers to Resolve the Dilemma Between Extracellular Drug Loading and Intracellular Drug Release

机译:pH和氧化还原双敏的共价有机骨架纳米载体解决细胞外药物载荷和细胞内药物释放之间的困境

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Cancer poses a serious threat to human health. To enhance the efficacy of tumor chemotherapy, it is urgent to develop novel and effective nanocarriers with the ability to efficiently load and delivery anticancer drugs. Covalent organic frameworks (COF)-based nanocarriers (CONs) have exhibited great potential for drug loading, due to their porous structure and high surface area. However, the function of tumor intracellular-triggered drug release has barely been integrated. Herein we first synthesized a kind of hydrazide and disulfide bonds containing building block (4,4'-Dihydrazide diphenyl disulfide, DHDS), which was used to develop a PEGylated pH and redox dual-sensitive CONs (denoted HY/SS-CONs) for efficiently loading and delivering doxorubicin (DOX). The obtained HY/SS-CONs can achieve a very high loading content of DOX and very low premature leakage at physiological condition. However, under tumor intracellular microenvironment, HY/SS-CONs with acid-cleavable hydrazone bonds and GSH-exchangeable disulfide bonds will undergo rapidly disintegration and efficiently release DOX to kill tumor cells. The COFs-based dual-sensitive nanocarriers provide a promising solution to the dilemma between extracellular drug loading and tumor intracellular drug release.
机译:癌症对人类健康构成了严重的威胁。为了增强肿瘤化疗的功效,迫切需要开发新颖且有效的纳米载体,具有有效载荷和递送抗癌药物的能力。基于共价有机骨架(COF)的纳米载波(CIL)由于它们的多孔结构和高表面积而表现出药物负荷的巨大潜力。然而,肿瘤的函数触发药物释放几乎没有整合。在此首先合成一种含有构建块(4,4'-二酰肼二苯基二硫醚,DHD)的酰肼和二硫键,用于开发聚乙二醇化的pH和氧化还原双敏缺点(表示HY / SS-CIL)有效地装载和提供多柔比巴(DOX)。获得的HY / SS缺点可以在生理条件下实现DOX的非常高的负载含量和过低的过早泄漏。然而,在肿瘤细胞内微环境下,与酸可切割的腙键和GSH可交换的二硫键的HY / SS-COM将经历迅速崩解和有效地释放DOX以杀死肿瘤细胞。基于COF的双敏纳米载体对细胞外药物载荷和肿瘤细胞内药物释放之间的困境提供了有希望的解决方案。

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