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Particle size and temperature effect on the physical stability of PLGA nanospheres and microspheres containing Bodipy

机译:粒径和温度对含有Bodipy的PLGA纳米球和微球的物理稳定性的影响

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摘要

The purpose of this study was to investigate the effect of particle size, storage temperature, and duration of storage on the physical stability and morphology of polylactic-co-glycolic acid (PLGA) nanospheres and microspheres. PLGA nanospheres and microspheres containing the fluorescent dye, Bodipy, were prepared in varying sizes by controlling the method and degree of agitation during the emulsification phase of preparation. Mean diameters of the particles were measured by dynamic light scattering. To evaluate the effect of storage temperature and duration of storage on the extent of aggregation, nanospheres and microspheres were stored at 4°C, 25°C, 37°C, and 50°C for 6 days and then monitored using both confocal and scanning electron microscopy. The mean ±SD diameters of PLGA particles containing Bodipy were: 266.9±2.8, 351.6±1.8, 988.8±14.1, and 1865.9±67.0 nm. The extent of aggregation of the particulate delivery system decreased as the mean diameter increased, and increased as the storage temperature increased. The maximum extent of aggregation was observed with the smallest (266 nm) nanospheres. Microspheres did not aggregate. The aggregation of nanospheres was significantly reduced by introducing an additional evaporation step during preparation, suggesting that migration of residual dichloromethane from within the nanospheres may have dissolved the PLGA on the surface. The extent of aggregation of nanospheres increased as the temperature was increased from 4°C to 50°C, and decreased as particle size increased. To avoid aggregation, PLGA nanospheres should be stored at 4°C.
机译:本研究的目的是研究粒径,储存温度和储存时间对聚乳酸-乙醇酸共聚物(PLGA)纳米球和微球的物理稳定性和形态的影响。通过控制制备过程的乳化阶段的方法和搅拌程度,可以制备各种尺寸的含有荧光染料Bodipy的PLGA纳米球和微球。通过动态光散射测量颗粒的平均直径。为了评估保存温度和保存时间对聚集程度的影响,将纳米球和微球分别在4°C,25°C,37°C和50°C下保存6天,然后使用共聚焦和扫描法进行监测电子显微镜。含有Bodipy的PLGA颗粒的平均±SD直径为:266.9±2.8、351.6±1.8、988.8±14.1和1865.9±67.0 nm。颗粒输送系统的聚集程度随着平均直径的增加而降低,并随着储存温度的升高而增加。在最小的(266 nm)纳米球中观察到最大程度的聚集。微球没有聚集。通过在制备过程中引入额外的蒸发步骤,纳米球的聚集得以显着减少,这表明残留的二氯甲烷从纳米球内部的迁移可能已经溶解了表面上的PLGA。随着温度从4°C增加到50°C,纳米球的聚集程度增加,而随着粒径的增加而减小。为避免聚集,PLGA纳米球应保存在4°C下。

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