Kamat Vishal, Rafique Ashique
Biomolecular HTS Center, Therapeutic Proteins, Regeneron Pharmaceuticals, 777, Old Saw Mill River Road, Tarrytown, NY, 10591, USA.
Biomolecular HTS Center, Therapeutic Proteins, Regeneron Pharmaceuticals, 777, Old Saw Mill River Road, Tarrytown, NY, 10591, USA.
Anal Biochem. 2017 Aug 1;530:75-86. doi: 10.1016/j.ab.2017.04.020. Epub 2017 Apr 29.
The surface plasmon resonance (SPR) biosensors are being routinely used in different stages of drug discovery and development. However, the lack of high throughput SPR biosensors continues to be a primary bottleneck for the rapid kinetic screening of large panels of monoclonal antibodies (mAbs). To further increase the throughput of the Biacore 4000 biosensor, we have developed three kinetic screening assays to characterize mAb-antigen interactions - (i) 16-mAb capture kinetic, (ii) single cycle kinetic (SCK), and (iii) parallel kinetic (PK). The performance of all three kinetic assays was evaluated by characterizing the binding of kinetically diverse human mAbs to four antigens with molecular weights of 14kD, 29kD, 38kD, and 48kD and binding affinities ranging from 130pM to 200 nM. The binding rate constants measured using all three kinetic assays were reproducible across multiple experiments and correlated with the values generated using the conventional 8-mAb capture kinetic assay on the Biacore 4000 (R > 0.94). Moreover, the 16-mAb capture assay decreased experiment time and analyte consumption by 35% and 50%, respectively. This work illustrates the significance of the 16-mAb capture kinetic, SCK, and PK assays to increase the throughput of Biacore 4000 and to support rapid kinetic screening of mAbs.
表面等离子体共振(SPR)生物传感器正被常规用于药物发现和开发的不同阶段。然而,缺乏高通量SPR生物传感器仍然是对大量单克隆抗体(mAb)进行快速动力学筛选的主要瓶颈。为了进一步提高Biacore 4000生物传感器的通量,我们开发了三种动力学筛选测定法来表征mAb与抗原的相互作用——(i)16-mAb捕获动力学,(ii)单循环动力学(SCK),以及(iii)平行动力学(PK)。通过表征动力学特性各异的人源mAb与四种分子量分别为14kD、29kD、38kD和48kD且结合亲和力范围为130pM至200 nM的抗原的结合,对所有三种动力学测定法的性能进行了评估。使用所有三种动力学测定法测得的结合速率常数在多个实验中具有可重复性,并且与在Biacore 4000上使用传统的8-mAb捕获动力学测定法生成的值相关(R > 0.94)。此外,16-mAb捕获测定法分别将实验时间和分析物消耗减少了35%和50%。这项工作说明了16-mAb捕获动力学、SCK和PK测定法对于提高Biacore 4000通量以及支持mAb快速动力学筛选的重要性。