Khalid-Salako Fahd, Kurt Hasan, Yüce Meral
Sabanci University Nanotechnology Research and Application Center, 34956 Istanbul, Türkiye.
Biosensors (Basel). 2025 Jun 4;15(6):359. doi: 10.3390/bios15060359.
SPR biosensors operate on the principle of evanescent wave propagation at metal-dielectric interfaces in total internal reflection conditions, with consequent photonic energy attenuation. This plasmonic excitation occurs in specific conditions of incident light wavelength, angle, and the dielectric refractive index. This principle has been the basis for SPR-based biosensor setups wherein mass/concentration-induced changes in the refractive indices of dielectric media reflect as plasmonic resonance condition changes quantitatively reported as arbitrary response units. SPR biosensors operating on this conceptual framework have been designed to study biomolecular interactions with real-time readout and in label-free setups, providing key kinetic characterization that has been valuable in various applications. SPR biosensors often feature antibodies as target affinity probes. Notably, the operational challenges encountered with antibodies have led to the development of aptamers-oligonucleotide biomolecules rationally designed to adopt tertiary structures, enabling high affinity and specific binding to a wide range of targets. Aptamers have been extensively adopted in SPR biosensor setups with promising clinical and industrial prospects. In this paper, we explore the growing literature on SPR setups featuring aptamers, specifically providing expert commentary on the current state and future implications of these SPR aptasensors for drug discovery as well as disease diagnosis and monitoring.
表面等离子体共振(SPR)生物传感器基于全内反射条件下金属-电介质界面处倏逝波传播的原理工作,随之产生光子能量衰减。这种等离子体激元激发发生在特定的入射光波长、角度和电介质折射率条件下。这一原理一直是基于SPR的生物传感器设置的基础,其中电介质介质折射率的质量/浓度诱导变化反映为等离子体共振条件的变化,以任意响应单位进行定量报告。基于这一概念框架运行的SPR生物传感器旨在研究生物分子相互作用,实现实时读出且无需标记,提供了在各种应用中都很有价值的关键动力学特征。SPR生物传感器通常以抗体作为目标亲和探针。值得注意的是,抗体遇到的操作挑战促使了适配体(经合理设计以形成三级结构的寡核苷酸生物分子)的发展,使其能够与广泛的目标进行高亲和力和特异性结合。适配体已在SPR生物传感器设置中广泛应用,具有广阔的临床和工业前景。在本文中,我们探讨了关于以适配体为特色的SPR设置的不断增长的文献,特别针对这些SPR适配体传感器在药物发现以及疾病诊断和监测方面的当前状态和未来影响提供专家评论。