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首页> 外文期刊>ACS applied materials & interfaces >Neutron Reflection Study of Surface Adsorption of Fc, Fab, and the Whole mAb
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Neutron Reflection Study of Surface Adsorption of Fc, Fab, and the Whole mAb

机译:Fc,Fab和整个MAb表面吸附的中子反射研究

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Characterizing the influence of fragment crystallization (Fc) and antigen-binding fragment (Fab) on monoclonal antibody (mAb) adsorption at the air/water interface is an important step to understanding liquid mAb drug product stability during manufacture, shipping, and storage. Here, neutron reflection is used to study the air/water adsorption of a mAb and its Fc and Fab fragments. By varying the isotopic contrast, the adsorbed amount, thickness, orientation, and immersion of the adsorbed layers could be determined unambiguously. While Fc adsorption reached saturation within the hour, its surface adsorbed amount showed little variation with bulk concentration. In contrast, Fab adsorption, was slower and the adsorbed amount was concentration dependent. The much higher Fc adsorption, as compared to Fab, was linked to its lower surface charge. Time and concentration dependence of mAb adsorption was dominated by Fab behavior, although both Fab and Fc behaviors contributed to the amount of mAb adsorbed. Changing the pH from 5.5 to 8.8 did not much perturb the adsorbed amount of Fc, Fab, or mAb. However, a small decrease in adsorption was obseived for the Fc over pH 8-8.8 and vice versa for the Fab and mAb, consistent with a dominant Fab behavior. As bulk concentration increased from S to 50 ppm, the thicknesses of the Fc layers were almost constant at 40 angstrom, while Fab and mAb layers increased from 45 to 50 angstrom. These results imply that the adsorbed mAb, Fc, and Fab all retained their globular structures and were oriented with their short axial lengths perpendicular to the interface.
机译:表征片段结晶(Fc)和抗原结合片段(Fab)对空气/水界面的单克隆抗体(MAb)吸附的影响是了解制造,运输和储存期间液体MAB药物产品稳定性的重要步骤。这里,中子反射用于研究MAb及其Fc和Fab片段的空气/水吸附。通过改变同位素对比度,可以明确地确定吸附层的吸附量,厚度,取向和浸渍。虽然Fc吸附在小时内达到饱和度,但其表面吸附量显示出较少的体积浓度变化。相反,Fab吸附较慢,吸附量浓度依赖性。与Fab相比,与Fab相比,更高的Fc吸附与其下表面电荷相连。 MAb吸附的时间和浓度依赖性由Fab行为支配,尽管Fab和Fc行为都有助于吸附的MAb的量。将pH值改为5.5至8.8并没有扰乱Fc,fab或mab的吸附量。然而,对Fc在pH 8-8.8上方的Fc,对Fab和MAb反之亦然,对Fc和MAb反之亦然,与显性Fab行为相一致。由于体积浓度从S至50ppm增加,Fc层的厚度在40埃时几乎恒定,而FAB和MAB层从45到50埃增加增加。这些结果意味着吸附的MAB,Fc和Fab全部保留它们的球状结构,并以垂直于界面的短轴长度定向。

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