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作为制备具有特定尺寸和尺寸分布的聚乳酸-羟基乙酸共聚物纳米颗粒和微颗粒的工艺,纳米沉淀法和纳米喷雾干燥法的实验设计研究

A Design of Experiment Study of Nanoprecipitation and Nano Spray Drying as Processes to Prepare PLGA Nano- and Microparticles with Defined Sizes and Size Distributions.

作者信息

Draheim Christina, de Crécy Francois, Hansen Steffi, Collnot Eva-Maria, Lehr Claus-Michael

机构信息

Helmholtz-Institute for Pharmaceutical Research Saarland (HIPS), Helmholtz Center for Infection Research (HZI), 66123, Saarbrücken, Germany.

出版信息

Pharm Res. 2015 Aug;32(8):2609-24. doi: 10.1007/s11095-015-1647-9. Epub 2015 Feb 13.

Abstract

PURPOSE

Aim of this study was to explore the potential of a design of experiments approach to nanoprecipitation (NPR) and nano spray drying (NSD) as processes for preparing poly (lactic-co-glycolic acid, PLGA) nano- and microparticles. In particular, we determined the feasible size range, critical factors influencing particle size, size distribution or yield, and the robustness towards variations of the batch size.

METHODS

A fractional factorial design for response surface was applied to study the influence on continuous, categorical and discrete factors.

RESULTS

NPR yielded nanoparticles (150-200 nm) with narrow size distribution (PDI < 0.15). Polymer concentration was the main factor in this process, which was found to be very robust to varying the batch size (0.625-50.0 ml). In contrast, NSD yielded microparticles (2-163 μm). The latter process appeared, however, to be influenced by various factors and, therefore, more difficult to control and less robust towards varying the batch size (5-40 ml). By a factorial design approach to NPR, we succeeded to derive an equation, which allowed the prediction of several optimal formulations with defined particle sizes and distributions.

CONCLUSION

DOE can help to understand innovative manufacturing processes for nano- and microparticulate drug delivery systems, as well as to optimize these processes regarding particle size, size distribution and yield. Such understanding of these processes is instrumental for their subsequent scale up and quality control as needed for preclinical and clinical test batches.

摘要

目的

本研究旨在探索实验设计方法在纳米沉淀法(NPR)和纳米喷雾干燥法(NSD)中作为制备聚乳酸-乙醇酸共聚物(PLGA)纳米颗粒和微颗粒工艺的潜力。具体而言,我们确定了可行的粒径范围、影响粒径、粒径分布或产率的关键因素,以及对批次大小变化的稳健性。

方法

应用响应面的分数因子设计来研究对连续、分类和离散因素的影响。

结果

NPR产生了粒径为150 - 200 nm且粒径分布窄(PDI < 0.15)的纳米颗粒。聚合物浓度是该过程中的主要因素,发现其对批次大小在0.625 - 50.0 ml范围内变化具有很强的稳健性。相比之下,NSD产生了粒径为2 - 163μm的微颗粒。然而,后一种工艺似乎受到多种因素的影响,因此更难控制,并且对批次大小在5 - 40 ml范围内变化的稳健性较差。通过对NPR采用因子设计方法,我们成功推导出一个方程,该方程可以预测具有特定粒径和分布的几种最佳配方。

结论

实验设计有助于理解纳米和微粒药物递送系统的创新制造工艺,以及在粒径、粒径分布和产率方面优化这些工艺。对这些工艺的这种理解对于其后续按临床前和临床试验批次所需进行放大和质量控制至关重要。

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