首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Encapsulation of Uncharged Water-Insoluble Organic Substance in Polymeric Membrane Capsules via Layer-by-Layer Approach
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Encapsulation of Uncharged Water-Insoluble Organic Substance in Polymeric Membrane Capsules via Layer-by-Layer Approach

机译:多层膜法将不带电荷的水不溶性有机物包裹在聚合物膜胶囊中

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摘要

We report a general and versatile method for the encapsulation of electrically uncharged organic substance in polymeric capsules by using a layer-by-layer(LbL)approach.Electrical charge was induced on the surface of pyrene(uncharged organic substance)with an amphiphilic surfactant(sodium dodecyl sulfate,SDS)by micellar solubilization.The SDS micellar solution of pyrene in water was then deposited on a flat substrate as well as colloidal particles with chitosan as an oppositely charged polyelectrolyte.Pyrene was used as a model drug because it displayed intrinsic fluorescence that allowed us to monitor LbL growth by fluorescence and under confocal laser scanning microscopy(CLSM).To examine the proof of concept,multilayers were coated on the planar support by the LbL method.UV-vis spectroscopy showed regular growth of each layer deposited.Thin film formation was evidenced by scanning electron microscopy.The LbL method was extended to particles where fluorescence spectroscopy revealed LbL growth and transmission electron microscopy(TEM)provided evidence of particle coating.The quantification of dye in each deposited layer further proved LbL growth.The removal of sacrificial core provided thin capsules.The capsules were characterized by TEM and CLSM.The capsules showed potential as a drug delivery system,which is suggested by the slow release of entrapped dye by concentration-dependent diffusion in isotonic saline solution.The kinetics of desorption of pyrene from this thin film was modeled by a pseudo-second-order model.
机译:我们报道了一种通用的,通用的方法,该方法通过使用一层(LbL)的方法将不带电的有机物封装在聚合物胶囊中。两亲表面活性剂在((不带电的有机物)的表面上感应出电荷通过胶束溶解将十二烷基硫酸钠(SDS)溶解在water的SDS胶束溶液中,然后将胶体颗粒和壳聚糖作为带相反电荷的聚电解质沉积在平坦的基质上。为了验证概念的证明,采用LbL方法将多层膜涂覆在平面支撑物上。紫外可见光谱法显示沉积的每一层都有规则的生长。扫描电镜证实薄膜形成.LbL方法扩展到荧光光谱显示LbL的颗粒生长和透射电子显微镜(TEM)提供了颗粒被覆的证据。每个沉积层中染料的定量进一步证明了LbL的生长。牺牲性核的去除提供了薄胶囊。该胶囊通过TEM和CLSM表征,该胶囊显示出潜在的通过在等渗盐溶液中浓度依赖性扩散来缓慢释放截留的染料,表明了这种药物传递系统。by的解吸动力学是通过拟二级模型来模拟的。

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