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制造方法对蛋白质基长效注射制剂的影响研究:微流控技术与传统方法的比较评估

Investigation of the Impact of Manufacturing Methods on Protein-Based Long-Acting Injectable Formulations: A Comparative Assessment for Microfluidics vs. Conventional Methods.

作者信息

Yonet-Tanyeri Nihan, Parker Robert S, Falo Louis D, Little Steven R

机构信息

Department of Chemical Engineering, University of Pittsburgh, 940 Benedum Hall, 3700 O'Hara Street, Pittsburgh, PA 15213, USA.

Department of Bioengineering, University of Pittsburgh, 302 Benedum Hall, 3700 O'Hara Street, Pittsburgh, PA 15213, USA.

出版信息

Pharmaceutics. 2024 Sep 27;16(10):1264. doi: 10.3390/pharmaceutics16101264.

Abstract

UNLABELLED

Microparticle-based drug delivery systems offer several advantages for protein-based drug formulations, enhancing patient compliance and therapeutic efficiency through the sustained delivery of the active pharmaceutical ingredient. Over the past few decades, the microfluidics method has emerged as a continuous manufacturing process for preparing drug-encapsulating microparticles, mainly for small molecule drugs. However, comparative assessments for the conventional batch method vs. the microfluidics method for protein-based drug formulations have been lacking. The main objective of this study was to generate immunomodulatory protein drug-loaded injectable formulations using both conventional batch and microfluidics methods.

METHODS

Therefore, rhCCL22-loaded poly(lactic-co-glycolic) acid (PLGA) microparticles were prepared by conventional homogenization and microfluidics methods.

RESULTS

The resulting microparticles were analyzed comparatively, focusing on critical quality attributes such as microparticle size, size distribution, morphology, drug encapsulation efficiency, release kinetics, and batch-to-batch variations in relation to the manufacturing method. Our results demonstrated that the conventional method resulted in microparticles with denser surface porosity and wider size distribution as opposed to microparticles prepared by the microfluidics method, which could contribute to a significant difference in the drug-release kinetics. Additionally, our findings indicated minimal variation within batches for the microparticles prepared by the microfluidics method.

CONCLUSION

Overall, this study highlights the comparative assessment of several critical quality attributes and batch variations associated with the manufacturing methods of protein-loaded microparticles which is crucial for ensuring consistency in efficacy, regulatory compliance, and quality control in the drug formulation manufacturing process.

摘要

未标记

基于微粒的药物递送系统为基于蛋白质的药物制剂提供了几个优势,通过活性药物成分的持续递送提高患者依从性和治疗效率。在过去几十年中,微流控方法已成为制备包封药物微粒的连续制造工艺,主要用于小分子药物。然而,对于基于蛋白质的药物制剂,传统批量方法与微流控方法的比较评估一直缺乏。本研究的主要目的是使用传统批量方法和微流控方法制备负载免疫调节蛋白药物的可注射制剂。

方法

因此,通过传统均质化和微流控方法制备了负载rhCCL22的聚乳酸-羟基乙酸共聚物(PLGA)微粒。

结果

对所得微粒进行了比较分析,重点关注关键质量属性,如微粒大小、大小分布、形态、药物包封效率、释放动力学以及与制造方法相关的批次间差异。我们的结果表明,与通过微流控方法制备的微粒相比,传统方法制备的微粒表面孔隙率更高且大小分布更宽,这可能导致药物释放动力学存在显著差异。此外,我们的研究结果表明,通过微流控方法制备的微粒批次内差异最小。

结论

总体而言,本研究强调了对与负载蛋白质微粒制造方法相关的几个关键质量属性和批次差异的比较评估,这对于确保药物制剂制造过程中的疗效一致性、法规合规性和质量控制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fcc/11510299/aebfeccde38e/pharmaceutics-16-01264-g001.jpg

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