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Surface Defection Reduces Cytotoxicity of Zn(2-methylimidazole)2 (ZIF-8) without Compromising its Drug Delivery Capacity

机译:表面缺陷可降低Zn(2-甲基咪唑)2(ZIF-8)的细胞毒性而不会损害其药物传递能力

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摘要

Zn(2-methylimidazole)2 (ZIF-8), as one of the most important metal-organic framework (MOF) molecules, is a promising candidate for drug delivery due to its low-density structure, high surface area, and tunable frameworks. However, ZIF-8 exhibits a high cytotoxicity associated with its external hydrophobic surface, which significantly restricts its application in drug delivery and other biomedical applications. Commonly used chemical functionalization methods would convert the hydrophobic surface of ZIF-8 to hydrophilic, but the generated functional groups on its internal surface may reduce its pore sizes or even block its pores. Herein, a surface defection strategy was applied on the external surface of ZIF-8 to enhance its hydrophilicity without reducing or blocking the internal pores. In this approach, mechanical ball-milling was used to incur defects on the external surface of ZIF-8, leading to unsaturated Zn-sites and N-sites which subsequently bound H2O molecules in an aqueous environment. Furthermore, hydroxyurea delivery and cell cytotoxicity of ZIF-8 with and without the external surface treatment were evaluated. It was found that 5-min ball milling changed the hydrophobic–hydrophilic balance of ZIF-8, resulting in significantly higher cell viability without compromising its hydroxyurea loading and release capacity. Such a simple mechanical ball-milling followed by water-treatment provides a general technique for surface-modification of other MOF molecules, which will undoubtedly magnify their biomedical applications.
机译:Zn(2-甲基咪唑)2(ZIF-8),作为最重要的金属有机骨架(MOF)分子之一,由于其低密度结构,高表面积和可调框架,是一种有希望的药物递送方法。然而,ZIF-8表现出与其外部疏水表面相关的高细胞毒性,这极大地限制了其在药物递送和其他生物医学应用中的应用。常用的化学官能化方法会将ZIF-8的疏水表面转化为亲水表面,但是在其内表面上生成的官能团可能会减小其孔径,甚至堵塞其孔。在本文中,在ZIF-8的外表面上应用表面缺陷策略以增强其亲水性而不减少或阻塞内部孔。在这种方法中,使用机械球磨在ZIF-8的外表面上产生缺陷,导致不饱和的Zn位和N位,这些位点随后在水性环境中结合H2O分子。此外,评价了在有和没有外表面处理的情况下ZIF-8的羟基脲递送和细胞毒性。发现5分钟球磨可以改变ZIF-8的疏水-亲水平衡,从而在不损害其羟基脲负载和释放能力的情况下,显着提高细胞活力。这样简单的机械球磨,然后进行水处理,为其他MOF分子的表面改性提供了一种通用技术,这无疑会放大其生物医学应用。

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