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通过第二维里系数测量探究治疗性抗体与血清的相互作用。

Probing interactions of therapeutic antibodies with serum via second virial coefficient measurements.

机构信息

Department of Medicinal Chemistry, University of Washington, Seattle, Washington.

Department of Medicinal Chemistry, University of Washington, Seattle, Washington.

出版信息

Biophys J. 2021 Sep 21;120(18):4067-4078. doi: 10.1016/j.bpj.2021.08.007. Epub 2021 Aug 10.

Abstract

Antibody-based therapeutics are the fastest-growing drug class on the market, used to treat aggressive forms of cancer, chronic autoimmune conditions, and numerous other disease states. Although the specificity, affinity, and versatility of therapeutic antibodies can provide an advantage over traditional small-molecule drugs, their development and optimization can be much more challenging and time-consuming. This is, in part, because the ideal formulation buffer systems used for in vitro characterization inadequately reflect the crowded biological environments (serum, endosomal lumen, etc.) that these drugs experience once administered to a patient. Such environments can perturb the binding of antibodies to their antigens and receptors, as well as homo- and hetero-aggregation, thereby altering therapeutic effect and disposition in ways that are incompletely understood. Although excluded volume effects are classically thought to favor binding, weak interactions with co-solutes in crowded conditions can inhibit binding. The second virial coefficient (B) parameter quantifies such weak interactions and can be determined by a variety of techniques in dilute solution, but analogous methods in complex biological fluids are not well established. Here, we demonstrate that fluorescence correlation spectroscopy is able to measure diffusive B-values directly in undiluted serum. Apparent second virial coefficient (B) measurements of antibodies in serum reveal that changes in the balance between attractive and repulsive interactions can dramatically impact global nonideality. Furthermore, our findings suggest that the approach of isolating specific components and completing independent cross-term virial coefficient measurements may not be an effective approach to characterizing nonideality in serum. The approach presented here could enrich our understanding of the effects of biological environments on proteins in general and advance the development of therapeutic antibodies and other protein-based therapeutics.

摘要

抗体药物是市场上增长最快的药物类别,用于治疗侵袭性癌症、慢性自身免疫性疾病和许多其他疾病状态。尽管治疗性抗体具有特异性、亲和力和多功能性,可以提供优于传统小分子药物的优势,但它们的开发和优化可能更加具有挑战性和耗时。部分原因是,用于体外特性描述的理想制剂缓冲液系统不能充分反映这些药物给予患者后所经历的拥挤生物环境(血清、内体腔等)。这些环境会干扰抗体与其抗原和受体的结合,以及同型和异型聚集,从而以不完全理解的方式改变治疗效果和处置。虽然经典理论认为排除体积效应有利于结合,但在拥挤条件下与共溶剂的弱相互作用会抑制结合。第二维里系数 (B) 参数定量描述了这种弱相互作用,可以通过多种技术在稀溶液中确定,但在复杂生物流体中类似的方法尚未得到很好的建立。在这里,我们证明荧光相关光谱法能够直接在未稀释的血清中测量扩散 B 值。在血清中抗体的表观第二维里系数 (B) 测量表明,吸引力和排斥力之间平衡的变化会极大地影响整体非理想性。此外,我们的发现表明,分离特定成分并完成独立交叉项维里系数测量的方法可能不是一种有效的方法来描述血清中的非理想性。这里提出的方法可以丰富我们对生物环境对一般蛋白质的影响的理解,并推进治疗性抗体和其他蛋白质治疗药物的开发。

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