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SYNTHESIS AND EVALUATION OF PH RESPONSIVE SILICA-POLYMER HYBRID NANO CAPSULES

机译:PH反应性硅-聚合物混合纳米胶囊的合成与评价

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The construction of pH responsive silica-polymer hybrid nano capsules is demonstrated here. Eleven to 12 nm sized gold nano particles (GNPs) were used as template to build the nanoshell. GNPs were coated with a layer of silica and over that a polymer coating was done using free radical polymerization of methacrylic acid. The gold core of the nano particle was leached out using the cyanide chemistry to form hybrid nano shells. The different stages of the formation of the silica layer, polymer layer, and the etching away of the gold core were followed by UV-Visible spectroscopy, Fourier transform infrared (FTIR) spectroscopy, dynamic light scattering (DLS), and transmission electron microscopy (TEM). A model compound Rhodamine B isothiocyanate was loaded into the shells to demonstrate the ability of the shells to modulate the release in response to external pH. At pH 1.98, the shells nearly stopped the release of the drug while at pH 7.0, 90% of the cargo was released. We monitored the stability of the guest loaded shells at pH 1.98 and found that even after several weeks the shells toere intact. Our results show that the smart hybrid nano shells possess the ability to protect the entrapped molecules from the hostile pH of stomach and are suitable vehicles for the delivery of delicate drugs such as peptides through oral routes.
机译:pH响应的二氧化硅-聚合物杂化纳米胶囊的结构在此得到证明。使用11至12 nm大小的金纳米颗粒(GNP)作为模板来构建纳米壳。 GNP涂有一层二氧化硅,其上使用甲基丙烯酸的自由基聚合进行聚合物涂层。使用氰化物化学浸出纳米颗粒的金核,以形成杂化的纳米壳。形成二氧化硅层,聚合物层和蚀刻金芯的不同阶段依次是紫外可见光谱,傅立叶变换红外(FTIR)光谱,动态光散射(DLS)和透射电子显微镜( TEM)。将模型化合物罗丹明B异硫氰酸盐装入壳中,以证明壳响应外部pH调节释放的能力。在pH 1.98时,壳几乎停止了药物的释放,而在pH 7.0时,释放了90%的货物。我们在pH 1.98的情况下监测了来宾装载的贝壳的稳定性,发现即使经过数周,贝壳仍完整无缺。我们的结果表明,智能杂合纳米壳具有保护被包裹分子免受胃中敌对pH的能力,并且是通过口服途径递送诸如肽等精细药物的合适载体。

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