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首页> 外文期刊>Pharmaceutical development and technology >Effects of processing parameters on particle size of ultrasound prepared chitosan nanoparticles: an Artificial Neural Networks Study.
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Effects of processing parameters on particle size of ultrasound prepared chitosan nanoparticles: an Artificial Neural Networks Study.

机译:加工参数对超声制备的壳聚糖纳米颗粒粒径的影响:人工神经网络研究。

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摘要

The pharmacokinetic properties of chitosan nanoparticles have been shown to mainly depend on its particle size. The aim of this study was to concurrently evaluate and model the effective parameters, namely, chitosan concentration, buffer pH, amplitude and time of sonication, on the particle size of chitosan nanoparticles. Chitosan solutions were prepared and sonicated with different values for the above mentioned parameters. The data were then modeled using artificial neural networks (ANNs). The results illustrated that all four input parameters affect the size of prepared chitosan nanoparticles. While a reverse effect was observed between the size and the buffer pH as well as time and amplitude of sonication, the concentration was found to directly influence the particle size. The optimum condition to obtain the minimum size of nanoparticles in the range of 50-200 nm was found to be high values of pH and sonication time (i.e. approximately 4.9 and 500 s, respectively) and amplitude values of more than ~55.
机译:壳聚糖纳米颗粒的药代动力学特性已显示主要取决于其粒径。这项研究的目的是同时评估和建模壳聚糖纳米粒子粒径的有效参数,即壳聚糖浓度,缓冲液pH,振幅和超声处理时间。制备壳聚糖溶液,并用上述参数的不同值进行超声处理。然后使用人工神经网络(ANN)对数据进行建模。结果表明,所有四个输入参数都会影响制备的壳聚糖纳米颗粒的大小。尽管在尺寸和缓冲液pH值以及超声处理的时间和幅度之间观察到相反的效果,但发现浓度直接影响粒径。发现获得50-200nm范围内的纳米颗粒的最小尺寸的最佳条件是pH和超声处理时间的高值(即分别为约4.9和500s)和大于约55的振幅值。

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