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灌装泵运行过程中IgG颗粒的形成:不锈钢纳米颗粒上异质成核的案例研究

IgG particle formation during filling pump operation: a case study of heterogeneous nucleation on stainless steel nanoparticles.

作者信息

Tyagi Anil K, Randolph Theodore W, Dong Aichun, Maloney Kevin M, Hitscherich Carl, Carpenter John F

机构信息

Center for Pharmaceutical Biotechnology, Department of Pharmaceutical Sciences, University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.

出版信息

J Pharm Sci. 2009 Jan;98(1):94-104. doi: 10.1002/jps.21419.

Abstract

This study investigated factors associated with vial filling with a positive displacement piston pump leading to formation of protein particles in a formulation of an IgG. We hypothesized that nanoparticles shed from the pump's solution-contact surfaces nucleated protein aggregation and particle formation. Vials of IgG formulation filled at a clinical manufacturing site contained a few visible particles and about 100,000 particles (1.5-3 microm) per mL. In laboratory studies with the same model (National Instruments FUS-10) of pump, pumping of 20 mg/mL IgG formulation resulted in about 300,000 particles (1.5-3 microm) per mL. Pumping of protein-free formulation resulted in 13,000 particles (1.5-15 microm) per mL. More than 99% of the particles were 0.25-0.95 microm in size. Mixing of protein-free pumped solution with an equal volume of 40 mg/mL IgG resulted in 300,000 particles (1.5-15 microm) per mL. Also, mixing IgG formulation with 30,000/mL stainless steel nanoparticles resulted in formation of 30,000 protein microparticles (1.5-15 microm) per mL. Infrared spectroscopy showed that secondary structure of IgG in microparticles formed by pumping or mixing with steel nanoparticles was minimally perturbed. Our results document that nanoparticles of foreign materials shed by pumps can serve as heterogeneous nuclei for formation of protein microparticles.

摘要

本研究调查了与使用正位移活塞泵向小瓶中灌装导致IgG制剂中形成蛋白质颗粒相关的因素。我们假设从泵的溶液接触表面脱落的纳米颗粒引发了蛋白质聚集和颗粒形成。在临床生产现场灌装的IgG制剂小瓶中含有一些可见颗粒,每毫升约有100,000个颗粒(1.5 - 3微米)。在使用相同型号(美国国家仪器公司FUS - 10)的泵进行的实验室研究中,泵送20mg/mL的IgG制剂导致每毫升约有300,000个颗粒(1.5 - 3微米)。泵送无蛋白制剂导致每毫升有13,000个颗粒(1.5 - 15微米)。超过99%的颗粒尺寸在0.25 - 0.95微米之间。将无蛋白泵送溶液与等体积的40mg/mL IgG混合,导致每毫升有300,000个颗粒(1.5 - 15微米)。此外,将IgG制剂与每毫升30,000个不锈钢纳米颗粒混合,导致每毫升形成30,000个蛋白质微粒(1.5 - 15微米)。红外光谱显示,通过泵送或与钢纳米颗粒混合形成的微粒中IgG的二级结构受到的干扰最小。我们的结果证明,泵脱落的外来材料纳米颗粒可作为蛋白质微粒形成的异质核。

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