Department of Chemical Engineering, University of Virginia, Charlottesville, Virginia, USA.
Vaccine Process Research & Development, Merck & Co., Inc., West Point, Pennsylvania, USA.
Biotechnol Prog. 2023 Jan;39(1):e3300. doi: 10.1002/btpr.3300. Epub 2022 Sep 23.
This work addresses the functional properties of the core-shell resins Capto Core 400 and 700 for a broad range of proteins spanning 66.5 to 660 kDa in molecular mass, including bovine serum albumin (BSA) in monomer and dimer form, fibronectin, thyroglobulin, and BSA conjugates with 10 and 30 kDa poly(ethylene glycol) chains. Negatively charged latex nanoparticles (NPs) with nominal diameters of 20, 40, and 100 nm are also studied as surrogates for bioparticles. Protein binding and its trends with respect to salt concentration depend on the protein size and are different for the two agarose-based multimodal resins. For the smaller proteins, the amount of protein bound over practical time scales is limited by the resin surface area and is larger for Capto Core 400 compared with Capto Core 700. For the larger proteins, diffusion is severely restricted in Capto Core 400, resulting in lower binding capacities than those observed for Capto Core 700 despite the larger surface area. Adding 500 mM NaCl reduces the local bound protein concentration and diffusional hindrance resulting in higher binding capacities for the large proteins in Capto Core 400 compared with low ionic strength conditions. The NPs are essentially completely excluded from the Capto Core 400 pores. However, 20 and 40 nm NPs bind significantly to Capto Core 700, further hindering protein diffusion. A model is provided to predict the dynamic binding capacities as a function of residence time.
这项工作针对的是 Capto Core 400 和 700 核壳树脂的功能特性,研究范围涵盖了分子量在 66.5 到 660 kDa 之间的多种蛋白质,包括单体和二聚体形式的牛血清白蛋白(BSA)、纤维连接蛋白、甲状腺球蛋白和 BSA 与 10 和 30 kDa 聚(乙二醇)链的缀合物。还研究了带负电荷的乳胶纳米颗粒(NPs)作为生物颗粒的替代物,其标称直径分别为 20、40 和 100nm。蛋白质的结合及其与盐浓度的趋势取决于蛋白质的大小,对于两种琼脂糖基多模态树脂而言有所不同。对于较小的蛋白质,在实际时间尺度上结合的蛋白质量受到树脂表面积的限制,Capto Core 400 上的结合量大于 Capto Core 700。对于较大的蛋白质,扩散在 Capto Core 400 中受到严重限制,导致结合容量低于 Capto Core 700 观察到的结合容量,尽管表面积较大。添加 500 mM NaCl 降低了局部结合蛋白浓度和扩散障碍,从而使 Capto Core 400 中大蛋白质的结合容量高于低离子强度条件。NPs 基本上完全被排除在 Capto Core 400 孔之外。然而,20 和 40nm NPs 会显著结合到 Capto Core 700 上,进一步阻碍了蛋白质的扩散。提供了一个模型来预测动态结合容量作为停留时间的函数。