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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Charge-reversal plug gate nanovalves on peptide-functionalized mesoporous silica nanoparticles for targeted drug delivery
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Charge-reversal plug gate nanovalves on peptide-functionalized mesoporous silica nanoparticles for targeted drug delivery

机译:肽功能化介孔二氧化硅纳米粒子上的电荷逆转塞闸纳米阀,用于靶向药物递送

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摘要

To develop a smart nanovalve on mesoporous silica nanoparticles (MSNs) for biomedical applications, a new type of peptide-functionalized MSN with a plug-gate nanovalve (PGN) was designed for targeted drug release in cancer cells. The outer shell of MSN was functionalized with K8 peptide (octa-lysine sequence) by click chemistry, followed by reacting with citraconic anhydride via α,β-unsaturated bond to prepare negatively charged MSN-K8(Cit). Subsequently, a cationic K8(RGD)2 peptide containing two Arg-Gly-Asp (RGD) sequences for targeting was introduced via electrostatic interaction to the negatively charged surface of MSN-K8(Cit) to form PGN. It was found that, at pH 5.0 (simulating the endo/lysosomal environment), the surface charge of MSN-K8(Cit) could convert from -41 mV to +19 mV due to the hydrolysis of the acid-labile amides in the acidic condition, implying the subsequent electrostatic repulsion to induce opening of the nanovalves and release of anticancer drug, DOX. According to the drug release studies, 79% of DOX was released within 48 h at pH 5.0, while much less DOX was released at pH 6.5 and 7.4. Furthermore, in vitro cellular experiments confirmed that the drug delivery system had enhanced cellular association and cell inhibition effect on α_(v)β3-positive U87 MG cancerous cells.
机译:为了开发用于生物医学应用的介孔二氧化硅纳米颗粒(MSN)上的智能纳米阀,设计了一种新型的带有塞门纳米阀(PGN)的肽官能化MSN,用于在癌细胞中靶向释放药物。 MSN的外壳通过点击化学用K8肽(八赖氨酸序列)功能化,然后通过α,β-不饱和键与柠康酸酐反应,制备带负电荷的MSN-K8(Cit)。随后,通过静电相互作用将包含两个用于靶向的Arg-Gly-Asp(RGD)序列的阳离子K8(RGD)2肽引入MSN-K8(Cit)的带负电荷的表面,以形成PGN。发现在pH 5.0(模拟内体/溶酶体环境)下,由于酸不稳定的酰胺在酸性条件下的水解,MSN-K8(Cit)的表面电荷可以从-41 mV转换为+19 mV。情况,暗示随后的静电排斥作用会诱导纳米阀打开并释放抗癌药物DOX。根据药物释放研究,在pH 5.0的48小时内释放了79%的DOX,而在pH 6.5和7.4时释放的DOX少得多。此外,体外细胞实验证实了该药物递送系统对α_(v)β3阳性的U87 MG癌细胞具有增强的细胞缔合和细胞抑制作用。

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