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pH/还原双重响应氧化海藻酸钠-阿霉素(mPEG-OAL-DOX/Cys)前药纳米水凝胶:与环糊精络合的影响。

pH/Reduction Dual-Responsive Oxidized Alginate-Doxorubicin (mPEG-OAL-DOX/Cys) Prodrug Nanohydrogels: Effect of Complexation with Cyclodextrins.

机构信息

State Key Laboratory of Applied Organic Chemistry and Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University , Lanzhou 730000, China.

出版信息

Langmuir. 2018 Jan 9;34(1):416-424. doi: 10.1021/acs.langmuir.7b03990. Epub 2017 Dec 27.

Abstract

Novel biocompatible and biodegradable pH/reduction dual-responsive oxidized alginate-doxorubicin (mPEG-OAL-DOX/Cys) prodrug nanohydrogels were designed for tumor-specific intracellular triggered release of anticancer drug DOX by conjugating DOX via acid-labile Schiff base linkage into the PEGylated oxidized alginate (mPEG-OAL) cross-linked with bioreducible disulfide bond. The effect of the complexation with cyclodextrins (α-CD and β-CD) before or after the cross-linking of the mPEG-OAL on the DOX content and controlled release performance was investigated. It was found that the cyclodextrin inclusion complex prodrug nanohydrogels mPEG(CD)-OAL-DOX/Cys, prepared by cross-linking of the mPEG-OAL after complexation with cyclodextrins, exhibited better pH/reduction dual-responsive controlled release performance than the mPEG-OAL-DOX/Cys(CD) ones prepared by cross-linking of the mPEG-OAL before complexation with cyclodextrins, owing to the supramolecular cross-linking of the adjacent pseudopolyrotaxanes. Especially for the cyclodextrin inclusion complex prodrug nanohydrogels mPEG(α-CD)-OAL-DOX/Cys, DOX was released rapidly under lower pH media mimicking the tumor microenvironment and completely released within 48 h, while the premature leakage under the simulated physiological condition was ∼40%, without burst release in both cases. The cellular toxicity and uptake results demonstrated that the mPEG(α-CD)-OAL-DOX/Cys prodrug nanohydrogels possessed similar inhibition against cancer cell growth in comparison with the free DOX and enhanced drug intracellular accumulation.

摘要

新型生物相容和可生物降解的 pH/还原双重响应氧化海藻酸钠-阿霉素(mPEG-OAL-DOX/Cys)前药纳米水凝胶被设计用于通过将阿霉素通过酸不稳定的席夫碱键连接到与生物还原二硫键交联的聚乙二醇化氧化海藻酸钠(mPEG-OAL)中来实现肿瘤特异性细胞内触发释放抗癌药物 DOX。研究了在 mPEG-OAL 交联之前或之后与环糊精(α-CD 和β-CD)络合对 DOX 含量和控制释放性能的影响。结果发现,通过与环糊精络合后交联 mPEG-OAL 制备的环糊精包合物前药纳米水凝胶 mPEG(CD)-OAL-DOX/Cys 比通过在与环糊精络合之前交联 mPEG-OAL 制备的 mPEG-OAL-DOX/Cys(CD)具有更好的 pH/还原双重响应控制释放性能,这是由于相邻假聚轮烷的超分子交联。特别是对于环糊精包合物前药纳米水凝胶 mPEG(α-CD)-OAL-DOX/Cys,在模拟肿瘤微环境的较低 pH 介质下,DOX 迅速释放,在 48 h 内完全释放,而在模拟生理条件下的过早泄漏约为 40%,两种情况下均无突释。细胞毒性和摄取结果表明,与游离 DOX 相比,mPEG(α-CD)-OAL-DOX/Cys 前药纳米水凝胶对癌细胞生长具有相似的抑制作用,并增强了药物的细胞内积累。

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