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Do Clustering Monoclonal Antibody Solutions Really Have a Concentration Dependence of Viscosity?

机译:聚类单克隆抗体溶液确实具有浓度依赖性吗?

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摘要

Protein solution rheology data in the biophysics literature have incompletely identified factors that govern hydrodynamics. Whereas spontaneous protein adsorption at the air/water (A/W) interface increases the apparent viscosity of surfactant-free globular protein solutions, it is demonstrated here that irreversible clusters also increase system viscosity in the zero shear limit. Solution rheology measured with double gap geometry in a stress-controlled rheometer on a surfactant-free Immunoglobulin solution demonstrated that both irreversible clusters and the A/W interface increased the apparent low shear rate viscosity. Interfacial shear rheology data showed that the A/W interface yields, i.e., shows solid-like behavior. The A/W interface contribution was smaller, yet nonnegligible, in double gap compared to cone-plate geometry. Apparent nonmonotonic composition dependence of viscosity at low shear rates due to irreversible (nonequilibrium) clusters was resolved by filtration to recover a monotonically increasing viscosity-concentration curve, as expected. Although smaller equilibrium clusters also existed, their size and effective volume fraction were unaffected by filtration, rendering their contribution to viscosity invariant. Surfactant-free antibody systems containing clusters have complex hydrodynamic response, reflecting distinct bulk and interface-adsorbed protein as well as irreversible cluster contributions. Literature models for solution viscosity lack the appropriate physics to describe the bulk shear viscosity of unstable surfactant-free antibody solutions.
机译:生物物理学文献中的蛋白质溶液流变学数据尚未完全确定影响流体力学的因素。尽管自发蛋白质在空气/水(A / W)界面处的吸附增加了无表面活性剂的球状蛋白质溶液的表观粘度,但此处证明了不可逆簇也可在零剪切极限下增加系统粘度。在无表面活性剂的免疫球蛋白溶液上在应力控制的流变仪中以双间隙几何形状测量的溶液流变学表明,不可逆簇和A / W界面均增加了表观的低剪切速率粘度。界面剪切流变学数据表明A / W界面屈服,即显示出类似固体的行为。与锥板几何形状相比,在双间隙中,A / W界面贡献较小,但不可忽略。如预期的那样,通过过滤解决了由于不可逆的(非平衡)团簇而在低剪切速率下粘度的表观非单调组成依赖性,从而恢复了单调增加的粘度浓度曲线。尽管也存在较小的平衡簇,但它们的大小和有效体积分数不受过滤的影响,从而使其对粘度不变的贡献很大。包含簇的无表面活性剂抗体系统具有复杂的流体动力学响应,反映出独特的体积和界面吸附蛋白以及不可逆的簇贡献。溶液粘度的文献模型缺乏适当的物理学来描述不稳定的无表面活性剂抗体溶液的整体剪切粘度。

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