Encapsulation of NH2-MIL-101(Fe) with dialdehyde starch through Schiff-base imine: A development of a pH-responsive core-shell fluorescent nanocarrier for doxorubicin delivery

被引:0
作者
Mohammadzadeh, Ali [1 ]
Javanbakht, Siamak [1 ]
Mohammadi, Reza [1 ]
机构
[1] Univ Tabriz, Fac Chem, Dept Organ & Biochem, Polymer Res Lab, Tabriz, Iran
来源
CARBOHYDRATE POLYMER TECHNOLOGIES AND APPLICATIONS | 2025年 / 10卷
关键词
Porous metal-organic frameworks; Schiff-base imine reaction; pH-sensitive system; Dialdehyde starch; Gate-keeping control release; METAL-ORGANIC FRAMEWORKS; NANOPARTICLES;
D O I
10.1016/j.carpta.2025.100794
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This study focuses on developing a pH-sensitive drug delivery system by combining a porous metal-organic framework (MOF) with a natural polymer. To achieve this, a novel gatekeeping system was designed using biocompatible dialdehyde starch (DAS) and MOFs (NH2-MIL-101(Fe)) for cancer therapy. Fluorescent porous iron-based MOFs (NH2-MIL-101(Fe)), composed of 2-amino benzene dicarboxylic acid (NH2H2BDC) and iron (III) chloride hexahydrate (FeCl3.6H(2)O), were synthesized via a one-step hydrothermal method. Doxorubicin (DOX) was loaded into the MOF pores with a drug loading efficiency of 92 +/- 0.5 %. To enable controlled drug release, the MOF surface was coated with biocompatible DAS through Schiff-base imine reactions, forming a core-shell structure with gatekeeping properties. These Schiff-base bonds ensured stability under physiological conditions but selectively degraded in mildly acidic environments, enabling pH-responsive release. In vitro studies showed that DOX release was pH-dependent, with a release rate of less than 8 +/- 0.5 % at pH 7.4 compared to approximately 70 +/- 0.5 % at pH 5 over 10 days. Cytotoxicity tests demonstrated significant effects of NH2-MIL-101(Fe)/DOX@DAS on HeLa cells (IC50: similar to 100 mu g/mL). Overall, NH2-MIL-101(Fe)/DOX@DAS exhibits strong potential as an effective and safe controlled-release nanocarrier for cancer treatment.
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页数:11
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