Smith Rasheid, Geary Sean M, Salem Aliasger K
Department of Pharmaceutical Sciences and Experimental Therapeutics, College of Pharmacy, University of Iowa, Iowa City, IA, 52242.
ACS Appl Nano Mater. 2020 Sep 25;3(9):8522-8536. doi: 10.1021/acsanm.0c01572. Epub 2020 Aug 3.
Since the inception of silicon nanowires (SINWs)-based biosensors in 2001, SINWs employed in various detection schemes have routinely demonstrated label-free, real-time, sub femtomolar detection of both protein and nucleic acid analytes. This has allowed SiNW-based biosensors to integrate into the field of cancer detection and cancer monitoring and thus have the potential to be a paradigm shift in how cancer biomarkers are detected and monitored. Combining this with several promising fields such as liquid biopsies and targeted oncology, SiNW based biosensors represents an opportunity for cancer monitoring and treatment to be a more dynamic process. Such advances provide clinicians with more information on the molecular landscape of cancer patients which can better inform cancer treatment guidelines.
自2001年基于硅纳米线(SiNWs)的生物传感器问世以来,用于各种检测方案的SiNWs常规地展示了对蛋白质和核酸分析物的无标记、实时、亚飞摩尔检测。这使得基于SiNW的生物传感器能够融入癌症检测和癌症监测领域,从而有可能在癌症生物标志物的检测和监测方式上引发范式转变。将其与液体活检和靶向肿瘤学等几个有前景的领域相结合,基于SiNW的生物传感器为癌症监测和治疗成为一个更具动态性的过程提供了契机。这些进展为临床医生提供了更多关于癌症患者分子状况的信息,从而能更好地为癌症治疗指南提供依据。