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Loading Capacity versus Enzyme Activity in Anisotropic and Spherical Calcium Carbonate Microparticles

机译:各向异性和球形碳酸钙微粒的负载能力与酶活性的关系

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A new method of fabrication of calcium carbonate microparticles of ellipsoidal, rhomboidal, and spherical geometries is reported by adjusting the relative concentration ratios of the initial salt solutions and/or the ethylene glycol content in the reaction medium. Morphology, porosity, crystallinity, and loading capacity of synthesized CaCO3 templates were characterized in detail. Particles harboring dextran or the enzyme guanylate kinase were obtained through encapsulation of these macromolecules using the layer-by-layer assembly technique to deposit positively and negatively charged polymers on these differently shaped CaCO3 templates and were characterized by confocal laser scanning fluorescence microscopy, fluorometric techniques, and enzyme activity measurements. The enzymatic activity, an important application of such porous particles and containers, has been analyzed in comparison with the loading capacity and geometry. Our results reveal that the particles' shape influences morphology of particles and that, as a result, affects the activity of the encapsulated enzymes, in addition to the earlier reported influence on cellular uptake. These particles are promising candidates for efficient drug delivery due to their relatively high loading capacity, biocompatibility, and easy fabrication and handling.
机译:通过调节反应介质中初始盐溶液的相对浓度比和/或乙二醇含量,报道了一种制备椭圆形,菱形和球形几何形状的碳酸钙微粒的新方法。详细描述了合成的CaCO3模板的形态,孔隙率,结晶度和负载能力。通过逐层组装技术将这些大分子包裹起来,将带正电荷和负电荷的聚合物沉积在这些形状不同的CaCO3模板上,从而获得了带有右旋糖酐或鸟苷酸酶的颗粒,并通过共聚焦激光扫描荧光显微镜,荧光分析,和酶活性测量。酶活性是这种多孔颗粒和容器的重要应用,已与负载能力和几何形状进行了比较。我们的结果表明,颗粒的形状会影响颗粒的形态,因此,除了较早报道的对细胞摄取的影响外,还会影响包囊化酶的活性。这些颗粒由于其相对较高的负载能力,生物相容性以及易于制造和处理而成为有效药物输送的有希望的候选者。

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