Cheeseman Samuel, Moazzam Parisa, Mahmoudi Negar, Mahmoudi Morteza, Caruso Frank, Tricoli Antonio, Nisbet David R
The Graeme Clark Institute, The University of Melbourne, Parkville, Victoria, 3010, Australia.
Department of Biomedical Engineering, Faculty of Engineering and Information Technology, The University of Melbourne, Parkville, Victoria, 3010, Australia.
Small. 2025 Sep;21(36):e03820. doi: 10.1002/smll.202503820. Epub 2025 Jul 26.
The unique benefits of sub-picomolar and single-molecule detection for the diagnosis and prognosis of diseases and therapeutic efficacy monitoring have been driving the development of nanoscale biomolecular sensors. Nanoscale sensors can be attached to the surface or dispersed in solution, enabling the rapid detection of analytes with high sensitivity and specificity by overcoming concentration-driven diffusion limits. In biological fluids, however, nanoscale objects are surrounded by biomolecules, mostly proteins, that form an evolving encapsulating surface layer, commonly known as the protein corona. The protein corona can modify the biosensor surface, which can adversely impact biosensing specificity, sensitivity, and accuracy. Conversely, the protein corona can be exploited to design biosensors for disease diagnostics, the discovery of new biomarkers, and environmental contaminants. In this review, the factors influencing protein corona formation on nanoscale biosensors are examined. Characterization methods and the effects of protein corona formation on the performance of nanoscale biosensors are also discussed. Promising strategies to prevent, circumvent, and exploit corona formation are presented and this review concludes by outlining future perspectives of nanoscale biomolecular sensors for practical application in biological fluids.
亚皮摩尔和单分子检测在疾病诊断、预后评估及治疗效果监测方面的独特优势推动了纳米级生物分子传感器的发展。纳米级传感器可附着于表面或分散于溶液中,通过克服浓度驱动的扩散限制,实现对分析物的快速高灵敏度和高特异性检测。然而,在生物流体中,纳米级物体被生物分子(主要是蛋白质)包围,这些生物分子形成了一个不断演变的包裹表面层,通常称为蛋白质冠层。蛋白质冠层可修饰生物传感器表面,这可能对生物传感的特异性、灵敏度和准确性产生不利影响。相反,蛋白质冠层可被用于设计用于疾病诊断、新生物标志物发现和环境污染物检测的生物传感器。在本综述中,我们研究了影响纳米级生物传感器上蛋白质冠层形成的因素。还讨论了表征方法以及蛋白质冠层形成对纳米级生物传感器性能的影响。提出了预防、规避和利用冠层形成的有前景的策略,本综述最后概述了纳米级生物分子传感器在生物流体实际应用中的未来前景。