Borrebaeck C A, Malmborg A C, Furebring C, Michaelsson A, Ward S, Danielsson L, Ohlin M
Department of Immunotechnology, Lund University, Sweden.
Biotechnology (N Y). 1992 Jun;10(6):697-8. doi: 10.1038/nbt0692-697.
The relation between domain structures of recombinant monoclonal antibody fragments and their reaction kinetics was studied for the first time using a novel biosensor based on surface plasmon resonance technology. The association and dissociation rate constants of Fab, Fv and single domain (VH fragment) anti-lysozyme antibodies were determined and compared to the intact monoclonal antibody. Fab and Fv fragments showed similar reaction kinetics and had affinity constants of 6 x 10(9) M-1 and 25 x 10(9) M-1, respectively. The single domain antibody had significantly different reaction kinetics compared to the fragments consisting of paired heavy and light chain domains. The VH domain had both a higher dissociation and a lower association rate constant, which resulted in an affinity constant approximately 250 times lower than the Fab fragment. This rapid evaluation of antibody reaction kinetics should prove to be an important selection parameter when comparing antibody fragments for their utility in therapeutic or other applications.
首次使用基于表面等离子体共振技术的新型生物传感器,研究了重组单克隆抗体片段的结构域结构与其反应动力学之间的关系。测定了Fab、Fv和单结构域(VH片段)抗溶菌酶抗体的结合和解离速率常数,并与完整的单克隆抗体进行了比较。Fab和Fv片段表现出相似的反应动力学,其亲和常数分别为6×10⁹ M⁻¹和25×10⁹ M⁻¹。与由重链和轻链结构域配对组成的片段相比,单结构域抗体具有显著不同的反应动力学。VH结构域具有更高的解离速率常数和更低的结合速率常数,这导致其亲和常数比Fab片段低约250倍。在比较抗体片段在治疗或其他应用中的效用时,这种对抗体反应动力学的快速评估应被证明是一个重要的选择参数。