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首页> 外文期刊>International Journal of Pharmaceutics >Impact of short range hydrophobic interactions and long range electrostatic forces on the aggregation kinetics of a monoclonal antibody and a dual-variable domain immunoglobulin at low and high concentrations.
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Impact of short range hydrophobic interactions and long range electrostatic forces on the aggregation kinetics of a monoclonal antibody and a dual-variable domain immunoglobulin at low and high concentrations.

机译:短程疏水相互作用和长程静电力对低浓度和高浓度单克隆抗体和双变量域免疫球蛋白聚集动力学的影响。

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摘要

The purpose of this work was to determine the nature of long and short-range forces governing protein aggregation kinetics at low and high concentrations for a monoclonal antibody (IgG1) and a dual-variable-domain immunoglobulin (DVD-Ig). Protein-protein interactions (PPI) were studied under dilute conditions by utilizing the methods of static (B(22)) and dynamic light scattering (k(D)). PPI in solutions containing minimal ionic strengths were characterized to get detailed insights into the impact of ionic strength on aggregation. Microcalorimetry and susceptibility to denature at air-liquid interface were used to assess the tertiary structure and quiescent stability studies were conducted to study aggregation characteristics. Results for IgG1 showed that electrostatic interactions governed protein aggregation kinetics both under dilute and concentrated conditions (i.e., 5 mg/mL and 150 mg/mL). For DVD-Ig molecules, on the other hand, although electrostatic interactions governed protein aggregation under dilute conditions, hydrophobic forces clearly determined the kinetics at high concentrations. This manuscript shows for the first time that short-range hydrophobic interactions can outweigh electrostatic forces and play an important role in determining protein aggregation at high concentrations. Additionally, results show that although higher-order virial coefficients become significant under low ionic strength conditions, removal of added charges may be used to enhance the aggregation stability of dilute protein formulations.
机译:这项工作的目的是确定控制单克隆抗体(IgG1)和双变量结构域免疫球蛋白(DVD-Ig)在低浓度和高浓度下蛋白质聚集动力学的长程和短程力的性质。通过利用静态(B(22))和动态光散射(k(D))的方法,在稀薄条件下研究了蛋白质-蛋白质相互作用(PPI)。对含有最低离子强度的溶液中的PPI进行了表征,以深入了解离子强度对聚集的影响。使用微量量热法和气液界面处的变性敏感性来评估三级结构,并进行了静态稳定性研究以研究聚集特性。 IgG1的结果表明,在稀和浓条件下(即5 mg / mL和150 mg / mL),静电相互作用均决定着蛋白质的聚集动力学。另一方面,对于DVD-Ig分子,尽管在稀薄条件下静电相互作用决定了蛋白质的聚集,但是疏水力清楚地确定了高浓度下的动力学。该手稿首次表明,短程疏水相互作用可以超过静电力,并在确定高浓度蛋白质聚集中起重要作用。此外,结果表明,尽管高阶病毒系数在低离子强度条件下变得很重要,但可以使用去除添加电荷的方法来增强稀蛋白制剂的聚集稳定性。

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