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皮下注射用人免疫球蛋白G高浓度制剂的可行性

High concentration formulation feasibility of human immunoglubulin G for subcutaneous administration.

作者信息

Dani Bhas, Platz Robert, Tzannis Stelios T

机构信息

Nektar Therapeutics, 150 Industrial Road, San Carlos, California 94070, USA.

出版信息

J Pharm Sci. 2007 Jun;96(6):1504-17. doi: 10.1002/jps.20508.

Abstract

The delivery of monoclonal antibodies (mAbs) as subcutaneous (sc) injections hinges on the high dose requirement of these usually low potency molecules. This necessitates their formulation as high concentration solutions or suspensions, which presents a formidable formulation challenge due to the concentration-driven protein aggregation and high solution viscosity generated at these conditions. The objective of this study was to evaluate the feasibility of spray-drying in preparing stable, high concentration formulations of mAbs. A model polyclonal antibody, human immunoglobulin G (IgG) was formulated as dry powder using Nektar's glass stabilization technology. Formulation in sugar glasses stabilized IgG during spray-drying and maintained the protein's secondary structure. Further, in contrast to the bulk material, the glass-stabilized powders successfully reconstituted at 200 mg/mL IgG without loss of the protein monomer. Spectroscopic analysis confirmed that upon high concentration reconstitution, spray-dried glass-stabilized IgG retained both its secondary and tertiary structure. Further, the spray-dried powder reconstituted within a few minutes yielding clear, low viscosity solutions that syringed easily through narrow (28 G) needles. The results of this study suggest that formulation in spray-dried, glass-stabilized powders may enable the development of products suitable for sc administration of mAbs and other low potency protein therapeutics.

摘要

单克隆抗体(mAb)通过皮下(sc)注射给药取决于这些通常低效分子的高剂量需求。这就需要将它们配制成高浓度溶液或混悬液,由于在这些条件下浓度驱动的蛋白质聚集和高溶液粘度,这带来了巨大的制剂挑战。本研究的目的是评估喷雾干燥在制备稳定的高浓度mAb制剂方面的可行性。使用Nektar的玻璃化稳定技术将模型多克隆抗体人免疫球蛋白G(IgG)制成干粉。在糖玻璃中的制剂在喷雾干燥过程中稳定了IgG并维持了蛋白质的二级结构。此外,与散装材料相比,玻璃化稳定的粉末在200 mg/mL IgG浓度下成功复溶,且蛋白质单体没有损失。光谱分析证实,在高浓度复溶时,喷雾干燥的玻璃化稳定IgG保留了其二级和三级结构。此外,喷雾干燥的粉末在几分钟内即可复溶,得到澄清、低粘度的溶液,易于通过细(28G)针头注射。本研究结果表明,喷雾干燥的玻璃化稳定粉末制剂可能有助于开发适用于mAb和其他低效蛋白质治疗药物皮下给药的产品。

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