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Study of the sodium phenytoin effect on the formation of sol-gel SiO_2 nanotubes by TEM

机译:透射电镜研究钠苯妥英钠对溶胶-凝胶SiO_2纳米管形成的影响

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摘要

Microencapsulation is a versatile technology that allows controlling the release of different active molecules. Recently the sol-gel process has emerged like a promising method to immobilization and stabilization of biologically active compounds like enzymes, antigens, microorganisms and drugs. Porous silica and titanium dioxide materials made by low temperature sol-gel processes are promising host matrixes for encapsulation of biological molecules. The preparation of a low-temperature silica sol followed by gelation to neutral pH with water for injection containing the antiepileptic drug is reported here. The structure is very important so the analysis of the new developed material is also reported. Particularly interesting is the presence of nanotubes and microtubes, produced in the inorganic matrix in the presence of the sodium phenytoin. The use of transmission electron microscopy and quantum mechanics molecular simulation allows determining a micelle-like effect during the synthesis of these materials, which controls the size, structure and stability of them.
机译:微囊化是一种通用技术,可控制不同活性分子的释放。最近,溶胶-凝胶过程已经出现,就像一种有前途的方法,可以固定和稳定酶,抗原,微生物和药物等生物活性化合物。通过低温溶胶-凝胶法制备的多孔二氧化硅和二氧化钛材料是用于封装生物分子的有前途的基质。此处报道了制备低温硅溶胶,然后用含有抗癫痫药的注射用水凝胶化至中性pH的方法。结构非常重要,因此也报告了对新开发材料的分析。特别有趣的是在苯妥钠钠存在下在无机基质中产生的纳米管和微管的存在。透射电子显微镜和量子力学分子模拟的使用允许在合成这些材料的过程中确定类似胶束的效应,从而控制了它们的尺寸,结构和稳定性。

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