纳米载体
化学
沸石咪唑盐骨架
细胞毒性
重新调整用途
选择性
咪唑酯
药品
药理学
乳腺癌
药物重新定位
癌细胞
癌症研究
纳米颗粒
药物输送
靶向给药
肽
生物物理学
组合化学
乳腺癌转移
纳米技术
纳米医学
对接(动物)
控制释放
癌症治疗
癌症治疗
毒品携带者
癌症
药物发现
转移
生物化学
共轭体系
靶向治疗
转移性乳腺癌
作者
N. A. Johari,Mostafa Yousefzadeh Borzehandani,Gaayatri Silvaraju,Mohd Akmal Azhar,Norazalina Saad,Rosniza Razali,Nurul Akmarina Mohd Abdul Kamal
摘要
one-pot synthesis. The MES-RGD@nZIF-8 nanocarriers showed high encapsulation efficiency (99.69%) and preserved the structural and morphological characteristics of ZIF-8 following functionalization. Release studies demonstrated controlled MES diffusion at physiological pH and accelerated release under mildly acidic conditions, consistent with ZIF-8 degradation. Biological evaluation showed that MES-RGD@nZIF-8 induced 65% cytotoxicity at 48 h, outperforming free MES and non-targeted formulations. The elevated selectivity index (SI = 4.53) demonstrated preferential cytotoxicity toward breast cancer cells compared with normal cells, confirming the enhanced tumor selectivity of the formulation. Molecular docking simulations revealed that the presence of RGD in the nZIF-8 framework enhanced the binding affinity of MES by providing greater interaction sites compared to the pristine nZIF-8. These findings demonstrate that RGD-functionalized nZIF-8 is a promising platform for targeted drug repurposing in breast cancer therapy.
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