Schuck P, Millar D B, Kortt A A
Molecular Interactions Resource, Bioengineering and Physical Science Program, ORS, National Institutes of Health, Bethesda, Maryland 20892, USA.
Anal Biochem. 1998 Dec 1;265(1):79-91. doi: 10.1006/abio.1998.2872.
A commercial surface plasmon resonance biosensor, BIACORE X, is employed as a detector in a closed loop of a small sample volume. The sample is continuously circulated by an external syringe pump over two sensor spots, one functionalized with immobilized binding sites to a soluble binding partner in the mobile phase and one serving as a reference surface. A binding isotherm for the interacting macromolecules can be obtained by a stepwise titration of the soluble reactant into the circulating loop, each step followed by observation of the signal increase until equilibrium is attained. Binding constants can be measured under conditions free of mass transport artifacts and without the requirement for regeneration of the immobilized binding sites. This procedure is similar to the stepwise titration procedure described for the cuvette-based sensor design (D. R. Hall and D. J. Winzor, 1997, Anal. Biochem. 244, 152-160). In the presented configuration, the high baseline stability of the instrument combined with the availability of a reference surface for the detection of nonspecific binding permits refractive index changes upon addition of the aliquots to be measured, as well as accounting for temperature or instrumental drifts, and allows for a very long experimental time. This feature extends the applicability of equilibrium titration to systems with higher affinity or slower dissociation rate constants. Furthermore a solution competition titration is described that avoids artifacts from the immobilization procedure to provide a method for measurement of binding constants in solution. Kinetic information on the complex dissociation can also be obtained by combination of sample delivery via the external pump with the injection of competitor via the microfluidics of the biosensor. The rapid injection of high concentrations of competitor allows the observation of fast dissociation processes under conditions minimizing rebinding.
一种商业表面等离子体共振生物传感器BIACORE X被用作小样本体积闭环中的检测器。样本由外部注射泵连续循环通过两个传感器点,一个用固定在流动相中的可溶性结合伴侣的结合位点进行功能化,另一个作为参考表面。通过将可溶性反应物逐步滴定到循环回路中,可以获得相互作用大分子的结合等温线,每一步之后观察信号增加,直到达到平衡。可以在没有传质伪像的条件下测量结合常数,并且不需要固定化结合位点的再生。该程序类似于基于比色皿的传感器设计中描述的逐步滴定程序(D. R. Hall和D. J. Winzor,1997年,《分析生物化学》244卷,152 - 160页)。在本文提出的配置中,仪器的高基线稳定性与用于检测非特异性结合的参考表面相结合,允许在加入等分试样时测量折射率变化,以及考虑温度或仪器漂移,并允许非常长的实验时间。这一特性将平衡滴定的适用性扩展到具有更高亲和力或更低解离速率常数的系统。此外,还描述了一种溶液竞争滴定法,该方法避免了固定化过程中的伪像,提供了一种测量溶液中结合常数的方法。通过将经由外部泵的样品输送与经由生物传感器微流体的竞争者注射相结合,也可以获得关于复合物解离的动力学信息。快速注射高浓度的竞争者允许在最小化再结合的条件下观察快速解离过程。