Kakkar Tarun, Thomas Nikita, Kumi-Barimah Eric, Jose Gin, Saha Sikha
School of Chemical and Process Engineering, University of Leeds, Leeds, UK.
Leeds Cardiovascular and Metabolic Medicine, Faculty of Medicine and Health, University of Leeds, Leeds, UK.
J Biophotonics. 2018 May;11(5):e201700199. doi: 10.1002/jbio.201700199. Epub 2017 Dec 18.
Instant measurement of elevated biomarkers such as lactic acid offers the most promising approaches for early treatment and prevention of many critical diseases including cardiac arrest, stroke, septic shock, trauma, liver dysfunction, as well as for monitoring lactic acid level during intense exercise. In the present study, a unique dependence of visible photoluminescence of Eu ions resulting from D to F transitions, which can be exploited for rapid detection of biomarkers, both in vitro and ex vivo, has been reported. It is observed that the integrated intensity ratio of photoluminescence signals dominating at 591 and 616 nm originating from D to F and D to F transitions in Eu ions can be used as a biosensing and bioimaging tool for detection of biomarkers released at disease states. The Eu integrated photoluminescence intensity ratio approach reported herein for optical detection of lactates in blood serum, plasma and confocal imaging of brain tissues has very high potential for exploitation of this technique in both in vitro monitoring and in vivo bioimaging applications for the detection of biomarkers in various diseases states.
即时测量诸如乳酸等生物标志物的升高,为包括心脏骤停、中风、感染性休克、创伤、肝功能障碍在内的许多重大疾病的早期治疗和预防提供了最具前景的方法,同时也适用于在剧烈运动期间监测乳酸水平。在本研究中,已报道了铕离子从D到F跃迁产生的可见光致发光的独特依赖性,这种依赖性可用于在体外和体内快速检测生物标志物。据观察,铕离子中源自D到F和D到F跃迁、在591和616 nm处占主导的光致发光信号的积分强度比,可用作生物传感和生物成像工具,以检测疾病状态下释放的生物标志物。本文报道的用于血清、血浆中乳酸光学检测以及脑组织共聚焦成像的铕积分光致发光强度比方法,在体外监测和体内生物成像应用中利用该技术检测各种疾病状态下的生物标志物具有很高的潜力。