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A method of elevated temperatures coupled with magnetic stirring to predict real time release from long acting progesterone PLGA microspheres

机译:高温和磁力搅拌相结合的方法可预测长效孕激素PLGA微球的实时释放

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摘要

The object of the study was to develop a quick and reproducible accelerated release method to predict and deduce the function of the real time (37 °C) release for long acting PLGA microspheres. The method could be described in several steps. First, the release of the microspheres were studied using the sample and separate method at 37 °C with normal orbital shaking and elevated temperatures with magnetic stirring to further accelerate the release. Second, the most similar profile at elevated temperatures with the real time release was chosen with the help of the value in the fitted Korsmeyer-Peppas Function. Third, the Weibull function and conversion ratio were used to deduce the function of real time release according to the chosen profile at elevated temperatures. The key point in this study was to provide a quick and precise method to predict the real time release for long acting progesterone PLGA microspheres. So the elevated temperatures coupled with magnetic stirring were used to accelerate the release further, and when there have many similar release profiles with the real time release at elevated temperatures, releasing time at elevated temperatures and the R of the final deduced function will be used to help choosing the most similar release profile with the real time release. Four different types of progesterone PLGA microspheres were used to verify the method, and all the deduced function correlated well with the real time releases, for = 0.9912, 0.9781, 0.9918 and 0.9972, respectively.
机译:该研究的目的是开发一种快速且可重现的加速释放方法,以预测和推断长效PLGA微球实时(37°C)释放的功能。该方法可以用几个步骤来描述。首先,使用样品和单独的方法在37°C下通过正常的轨道摇动和磁力搅拌升高的温度研究微球的释放,以进一步加速释放。其次,借助于拟合的Korsmeyer-Peppas函数中的值,选择了实时释放的高温下最相似的轮廓。第三,根据选择的温度曲线,使用威布尔函数和转化率推导实时释放的函数。这项研究的重点是提供一种快速准确的方法来预测长效孕激素PLGA微球的实时释放。因此,升高的温度和磁力搅拌被用来进一步加速释放,并且当存在许多相似的释放曲线且在升高的温度下实时释放时,在升高的温度下释放时间和最终推导函数的R将用于帮助选择与实时发行版本最相似的发行档案。四种不同类型的孕激素PLGA微球用于验证该方法,并且所有推导的功能与实时释放均具有良好的相关性,分别为= 0.9912、0.9981、0.9918和0.9972。

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