Formulation Development, ImClone Systems, A Wholly-Owned Subsidiary of Eli Lilly and Company, 59-61 ImClone Drive, Branchburg, NJ 08876, USA.
Curr Pharm Biotechnol. 2009 Dec;10(8):761-6. doi: 10.2174/138920109789978711.
This study demonstrates that arginine is a highly effective solvent additive which significantly reduces the light induced aggregation of four IgG1 type monoclonal antibodies (named as IMC-1A, IMC-1B, IMC-1C and IMC-1D) as measured by size exclusion chromatography. All experiments were performed in a phosphate buffer system containing either sodium chloride or arginine hydrochloride. The protein samples were exposed to light in a photo chamber according to ICH (International Conference on Harmonization) guidelines. Thermal unfolding transition temperature (T(m)) of IMC-1A as determined by differential scanning calorimetry (DSC) was significantly decreased ( approximately 3.3 degrees C) in the presence of arginine hydrochloride as compared to in sodium chloride. However, a noticeable increase in thermal stability was observed for IMC-1B, IMC-1C and IMC-1D in the presence of arginine hydrochloride. The photostability of all these molecules was significantly enhanced by arginine hydrochloride and both a direct and inverse correlation was observed between conformational stability and photostability. To our knowledge, this paper for the first time, demonstrates that arginine hydrochloride considerably reduces the light induced aggregation of monoclonal antibodies. Arginine hydrochloride is also known to increase protein solubility and its ability to extensively reduce light induced aggregation makes it a potential solvent additive for the formulation development of therapeutic proteins.
本研究表明,精氨酸是一种非常有效的溶剂添加剂,可显著减少四种 IgG1 型单克隆抗体(分别命名为 IMC-1A、IMC-1B、IMC-1C 和 IMC-1D)在尺寸排阻色谱法下测量的光诱导聚集。所有实验均在含有氯化钠或盐酸精氨酸的磷酸盐缓冲体系中进行。根据 ICH(国际协调会议)指南,将蛋白样品在光室内暴露于光下。通过差示扫描量热法(DSC)测定的 IMC-1A 的热变性温度(T(m)) 在盐酸精氨酸存在下显著降低(约 3.3°C),而在氯化钠中则显著降低。然而,在盐酸精氨酸存在下,IMC-1B、IMC-1C 和 IMC-1D 的热稳定性明显增加。盐酸精氨酸显著提高了所有这些分子的光稳定性,构象稳定性和光稳定性之间存在直接和反比关系。据我们所知,本文首次证明盐酸精氨酸可显著减少单克隆抗体的光诱导聚集。盐酸精氨酸还可提高蛋白质的溶解度,其广泛减少光诱导聚集的能力使其成为治疗蛋白制剂开发的潜在溶剂添加剂。