使用剪切装置监测单链可变片段(scFv)融合蛋白MFECP1的稳定性

P. Blas
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引用次数: 0

摘要

基于抗体的药物越来越多地被用于治疗各种各样的疾病,因为它们对目标癌细胞表面的特定抗原蛋白具有独特的亲和力。抗体和偶联生物药物的融合正逐渐被使用,因为这提供了将其他细胞毒性分子靶向不需要的细胞的机会。至关重要的是要确保这些类型的药品不脆弱或不经济,无法大规模生产。非常少量的珍贵蛋白质溶液可以在超缩小(USD)剪切装置中进行表征,以发现融合蛋白是否容易受到剪切应力的影响。本文介绍了如何用ELISA定量纯化和去糖基化形式的MFECP1融合蛋白,范围为700-50 ng/ml,标准曲线偏差为+/- 10%。它还描述了如何分析相同的MFECP1融合蛋白,以建立最佳的实验控制条件,这些条件是观察剪切装置中流体动力学相关降解引起的变化所必需的。最后,它着眼于如何使用一级动力学关系来模拟MFECP1融合蛋白降解的速率,以及如何使用它来量化在有和没有空气/液体界面的不同剪切环境中蛋白质损失率。
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The Use of a Shear Device to Monitor the Stability of a Single-Chain Variable Fragment (scFv) Fusion Protein MFECP1
Antibody based drugs are increasingly being used to treat a vast array of diseases because of their unique affinity to target specific antigen proteins on the surfaces of target cancer cells. Fusions of antibodies and conjugated biopharmaceuticals are progressively being used as this gives the opportunity to target other cytotoxic molecules to unwanted cells. It is critical to ensure these types of drug products are not fragile or uneconomical to produce at a large scale. A very small amount of precious protein solution can be characterised in an Ultra scale-down (USD) shear device to uncover if fusion proteins are prone to shear stress. This article presents how the purified and deglycosylated form of the MFECP1 fusion protein was quantified with an ELISA from 700-50 ng/ml, with a +/- 10% deviation in the standard curve. It also describes how the same MFECP1 fusion protein was analysed to establish the optimum experimental control conditions that were required to observe changes due to hydrodynamic-associated degradation in a shear device. Lastly, it looks at how a first order kinetic relationship can be used to model the rate of MFECP1 fusion protein degradation and how this was used to quantify the rate of protein loss during different shear environments with and without air/liquid interfaces.
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