Rehman Abdul, Zeng Xiangqun
Oakland University, 2200 N Squirrel Road, Rochester, MI, 48309, USA.
Department of Chemistry, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, 31261, Saudi Arabia.
Methods Mol Biol. 2017;1572:313-326. doi: 10.1007/978-1-4939-6911-1_21.
Quartz crystal microbalance (QCM) biosensors have been demonstrated as noninvasive and label-free tools for cell based measurements. However, the complexity of biofilms composed of cells with the associated liquid environments is preventive towards forming explicit relationship between the added mass and the change in the frequency output signal. Therefore, the protocols of interface design (surface chemistry, interaction mechanism, and data acquisition), data interpretation, and device fabrication, all need to be finely refined in order to make these biosensors prevail in real life. Especially in the sense of deriving correct inferences from binding events, the fluidic effects (mostly visible in the form of damping resistance of QCM) should be quantitatively excluded from binding measurements. Such strategies can then track even the cellular interactions which are the basis of many physiological functions of life and can be built into smart functional devices for point of care diagnostics. This chapter provides technical details regarding these strategies with a focus on experimental details and procedures of the measurements of anti CD-20 antibody (Rituximab) interactions with B-Lymphoma cancer cells using the QCM method. In addition to a detailed description of specific interactions, we provide mechanisms of data interpretation and device development having potential application to other techniques.
石英晶体微天平(QCM)生物传感器已被证明是用于基于细胞测量的非侵入性且无标记的工具。然而,由细胞与相关液体环境组成的生物膜的复杂性阻碍了在添加质量与频率输出信号变化之间形成明确的关系。因此,接口设计(表面化学、相互作用机制和数据采集)、数据解释以及设备制造的协议都需要进行精细完善,以使这些生物传感器在实际应用中占优势。特别是从结合事件中得出正确推断的意义上来说,流体效应(大多以QCM的阻尼阻力形式可见)应从结合测量中定量排除。这样的策略甚至可以追踪作为生命许多生理功能基础的细胞相互作用,并可构建到用于即时诊断的智能功能设备中。本章提供了有关这些策略的技术细节,重点是使用QCM方法测量抗CD - 20抗体(利妥昔单抗)与B淋巴瘤癌细胞相互作用的实验细节和程序。除了对特定相互作用的详细描述外,我们还提供了数据解释和设备开发的机制,这些机制可能应用于其他技术。