An Investigation into the Effects of Processing Factors on the Properties and Scaling-up Potential of Propranolol-Loaded Chitosan Nanogels

Hei Ming Kenneth Ho, Richard M. Day, Duncan Q. M. Craig
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Abstract

Chitosan-triphosphate (TPP) nanogels are widely studied drug delivery carrier systems, typically prepared via a simple mixing process. However, the effects of the processing factors on nanogel production have not been extensively explored, despite the importance of understanding and standardising such factors to allow upscaling and commercial usage. This study aims to systematically evaluate the effects of various fabrication and processing factors on the properties of nanogels using a Design of Experiment approach. Hydrodynamic size, polydispersity index (PDI), zeta potential, and encapsulation efficiency were determined as the dependent factors. The temperature, stirring rate, chitosan grade, crosslinker choice, and the interaction term between temperature and chitosan grade were found to have a significant effect on the particle size, whereas the effect of temperature and the addition rate of crosslinker on the PDI was also noteworthy. Moreover, the addition rate of the crosslinker and the volume of the reaction vessel were found to impact the encapsulation efficiency. The zeta potential of the nanogels was found to be governed by the chitosan grade. The optimal fabrication conditions for the development of medium molecular weight chitosan and TPP nanogels included the following: the addition rate for TPP solution was set at 2 mL/min, while the solution was then stirred at a temperature of 50 °C and a stirring speed of 600 rpm. The volume of the glass vial used was 28 mL, while the stirrer size was 20 mm. The second aim of the study was to evaluate the potential for scaling up the nanogels. Size and PDI were found to increase from 128 nm to 151 nm and from 0.232 to 0.267, respectively, when the volume of the reaction mixture was increased from 4 to 20 mL and other processing factors were kept unchanged. These results indicate that caution is required when scaling up as the nanogel properties may be significantly altered with an increasing production scale.
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加工因素对普萘洛尔负载壳聚糖纳米凝胶性能和放大潜力的影响研究
壳聚糖-三磷酸酯(TPP)纳米凝胶是一种被广泛研究的给药载体系统,通常通过简单的混合工艺制备而成。然而,加工因素对纳米凝胶生产的影响尚未得到广泛探讨,尽管了解这些因素并使之标准化对扩大规模和商业应用非常重要。本研究旨在采用实验设计法系统评估各种制造和加工因素对纳米凝胶特性的影响。实验中确定了流体力学尺寸、多分散指数(PDI)、ZETA电位和封装效率等因果关系。结果发现,温度、搅拌速率、壳聚糖等级、交联剂的选择以及温度和壳聚糖等级之间的交互项对粒径有显著影响,而温度和交联剂的添加速率对 PDI 的影响也值得注意。此外,交联剂的添加速率和反应容器的容积也会影响封装效率。纳米凝胶的 zeta 电位受壳聚糖等级的影响。开发中等分子量壳聚糖和 TPP 纳米凝胶的最佳制造条件包括:TPP 溶液的添加速率设定为 2 mL/min,然后在 50 °C 的温度和 600 rpm 的搅拌速度下搅拌溶液。所用玻璃瓶的容积为 28 毫升,搅拌器的尺寸为 20 毫米。研究的第二个目的是评估放大纳米凝胶的潜力。结果发现,当反应混合物的体积从 4 mL 增加到 20 mL 而其他加工因素保持不变时,尺寸和 PDI 分别从 128 nm 增加到 151 nm,从 0.232 增加到 0.267。这些结果表明,在扩大生产规模时必须小心谨慎,因为随着生产规模的扩大,纳米凝胶的特性可能会发生重大变化。
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