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The Evaluation of Fabrication Parameters Process Effect on the Formation of Poly(lactic-co-glycolic acid) (PLGA) Microspheres

机译:制备参数工艺对聚乳酸-乙醇酸(PLGA)微球形成影响的评估

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In this study, a poly(lactic-co-glycolic acid) (PLGA) microspheres was fabricated using emulsion solvent evaporation technique. During the procedure fabrication, some parameters process have effected on the formation of micro-carriers. The structure and morphology of micro-carriers were evaluated by SEM observation. Beside, heparin incorporated into microspheres was determined using toluidine blue method. Specifically, the effects of some parameters process such as ultrasonic levels, PLGA concentrations and freezedrytimes on the size, structure, porous formation and heparin entrapment of micro-carriers were studied carefully. We found that, the morphology and structure of carriers were influenced by the all above parameters. The diameter of the carriers varied from 20 to 400 μm depending on experimental conditions. At suitable freeze-dry time, the pores were automatically formation on surface of microspheres with a significantly in the numbers of pore. After heparin incorporated porous PLGA microspheres, it was suggested that the highly heparin incorporated into porous PLGA microspheres could enhance of angiogenesis for tissue regeneration easily.
机译:在这项研究中,使用乳液溶剂蒸发技术制备了聚乳酸-乙醇酸(PLGA)微球。在程序制造过程中,一些参数过程影响了微载体的形成。通过SEM观察评价微载体的结构和形态。此外,使用甲苯胺蓝法测定掺入微球的肝素。具体而言,仔细研究了诸如超声波水平,PLGA浓度和冻干时间等参数过程对微载体的大小,结构,多孔形成和肝素截留的影响。我们发现,载体的形态和结构受上述所有参数的影响。载体的直径根据实验条件在20至400μm之间变化。在合适的冻干时间,在微球表面上自动形成孔,孔的数量明显增加。提示肝素掺入多孔PLGA微球后,可以认为高度肝素掺入多孔PLGA微球可以增强血管生成,易于组织再生。

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