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Semi-Automated Nanoprecipitation-System-An Option for Operator Independent, Scalable and Size Adjustable Nanoparticle Synthesis

机译:半自动纳米尺寸 - 系统 - 操作员的选项独立,可伸缩和尺寸可调纳米粒子合成

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摘要

The preparation of nano-sized carrier systems increasingly moved into focus of pharmaceutical research and industry in the past decades. Besides the drug load and properties of the selected polymer/lipid, the size of such particles is one of the most important parameters regarding their use as efficient drug delivery systems. However, the preparation of nanoparticles with different sizes in a controlled manner is challenging, especially in terms of reproducibility and scale-up possibility. To overcome these hurdles we developed a system relying on nanoprecipitation, which meets all these requirements of an operator independent, scalable and size-adjustable nanoparticle synthesis-the Semi-Automated Nanoprecipitation-System. This system enables the adaption of the particle size to specific needs based on the process parameters-injection rate, flow rate and polymer concentration-identified within this study. The basic set-up is composed of a syringe pump and a gear pump for a precise control of the flow and injection speed of the system. Furthermore, a home-made tube-straightener guarantees a curvature-free injection point. Thus it could be shown that the production of poly(lactide-co-glycolide) nanoparticles from 150 to 600 nm with a narrow size distribution in a controlled semi-automatic manner is possible.
机译:纳米尺寸载体系统的制备越来越多地迁移到过去几十年中制药研究和工业的重点。除了所选聚合物/脂质的药物负荷和性质外,这种颗粒的尺寸是其用作有效药物递送系统的最重要的参数之一。然而,以受控方式制备具有不同尺寸的纳米颗粒是具有挑战性的,特别是在重现性和扩大的可能性方面。为了克服这些障碍,我们开发了一种依赖于纳米折叠的系统,该系统符合操作员独立,可扩展和尺寸可调的纳米颗粒合成的所有这些要求 - 半自动纳米覆层系统。该系统能够基于本研究中的过程参数注射速率,流速和聚合物鉴定的过程参数注射速率,流速和聚合物鉴定来适应特定需求。基本设置由注射器泵和齿轮泵组成,用于精确控制系统的流动和喷射速度。此外,自制管矫直器保证无曲率注射点。因此,可以表明,以受控半自动方式产生150至600nm的聚(丙交酯 - 共乙酰化)纳米颗粒,其具有窄的尺寸分布。

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