介孔二氧化硅
药物输送
谷胱甘肽
共价键
前药
表面改性
生物物理学
细胞内
纳米颗粒
阿霉素
化学
连接器
内吞作用
毒品携带者
材料科学
组合化学
纳米技术
介孔材料
生物化学
有机化学
细胞
酶
医学
操作系统
外科
物理化学
化疗
计算机科学
生物
催化作用
作者
Xin Du,Lin Xiong,Sheng Dai,Shi‐Zhang Qiao
标识
DOI:10.1002/adhm.201400726
摘要
Poor cellular uptake of drug delivery carriers and uncontrolled drug release remain to be the major obstacles in cancer therapy due to their low delivery efficiency. In this study, a multifunctional intracellular GSH (glutathione)‐responsive silica‐based drug delivery system with enhanced cellular uptake capability is developed. Uniform 50 nm colloidal mesoporous silica nanoparticles (MSNs) with mercaptopropyl‐functionalized core and silanol‐contained silica surface (MSNs‐SH in ) are designed and fabricated as a platform for drug covalent attachment and particle surface modification. Doxorubicin (DOX) with primary amine group as an anticancer model drug is covalently conjugated to the mesopores of MSNs‐SH in via disulfide bonds in the presence of a heterobifunctional linker ( N ‐Succinimidyl 3‐(2‐pyridyldithio) propionate). Poly(γ‐glutamic acid) (γ‐PGA) can be coated onto the particle surface by sequential electrostatic adsorption of polyethyleneimine (PEI) and γ‐PGA. The constructed delivery system exhibits enhanced cellular uptake via a speculated γ‐glutamyl transpeptidase (GGT)‐mediated endocytosis pathway and controlled drug release capacity via intracellular GSH‐responsive disulfide‐bond cleavage, and thus significantly inhibits the growth of cancer cells. The multifunctional delivery system paves a new way for developing high‐efficient particle‐based nanotherapeutic approach for cancer treatment.
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