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Anisotropic silica mesostructures for DNA encapsulation

机译:用于DNA封装的各向异性二氧化硅介观结构

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The encapsulation of biomolecules in inert meso or nanostructures is an important step towards controlling drug delivery agents. Mesoporous silica nanoparticles (MSN) are of immense importance owing to their high surface area, large pore size, uniform particle size and chemical inertness. Reverse micellar method with CTAB as the surfactant has been used to synthesize anisotropic mesoporous silica materials.We have used the anisotropic silica nanostructures for DNA encapsulation studies and observed a loading capacity of ~8 μg ing~(-1) of the sample. On functionalizing the pores of silica with amine group, the amount of DNA loaded on the rods decreases which is due to a reduction in the pore size upon grafting of amine groups.
机译:惰性介观或纳米结构中生物分子的封装是控制药物传递剂的重要步骤。介孔二氧化硅纳米粒子(MSN)由于其高表面积,大孔径,均匀的粒径和化学惰性而具有极其重要的意义。以CTAB为表面活性剂的反胶束法已被用于合成各向异性介孔二氧化硅材料。我们利用各向异性二氧化硅纳米结构进行DNA包封研究,观察到样品的载量约为〜8μging〜(-1)。在用胺基官能化二氧化硅的孔时,负载在棒上的DNA的量减少,这是由于在接枝胺基时孔尺寸的减小。

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