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The use of upconverting phosphors in point-of-care (POC) testing

机译:即时转换(POC)测试中上转换荧光粉的使用

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Point-of-care (POC) testing is increasingly applied as a cost effective alternative to many diagnostic tests. Key in POC testing is to create sufficient assay sensitivity with relatively low cost reagents and equipment. For this purpose we have employed a unique reporter, upconverting phosphor (UCP) particles, in combination with lateral flow (LF) assays. UCPs, submicron ceramic particles doped with rare earth ions (lanthanides), convert infrared to visible light and do not suffer from autofluorescence which limits conventional fluorescence based assays. Low cost handheld readers and microfluidics were evaluated in various applications. Designed assays are well suited for applications outside diagnostic laboratories, in resource poor settings, and can even be used by patients at home. Using two distinctly different UCP-LF assay formats, we focussed on assays for infectious diseases based on the detection of pathogen-specific antibodies and/or antigens including nucleic acids to demonstrate active infection with HIV. Only minor adaptation of the standard UCP-LF assay format is needed to render the format suitable for applications involving low affinity capture antibodies (e.g. in the detection of neurotoxin, botulism), capture of small molecules (e.g. detection of melatonin, a key hormone in chronopharmacology) or the use of dry UCP reagents (e.g. detection of protein based fruit-ripening markers, of economic interest in agriculture). Finally, we anticipate on developments in healthcare (personalized medicine) by discussing the potential of one of the UCP-LF assay formats to measure serum trough levels of immunodrugs (e.g. infliximab or adalimumab) in patients treated for inflammatory bowel disease and rheumatoid arthritis.
机译:即时医疗(POC)测试已成为许多诊断测试的一种经济高效的替代方法。 POC测试的关键是使用相对低成本的试剂和设备创造足够的测定灵敏度。为此,我们采用了独特的报告分子,即上转换荧光粉(UCP)颗粒,并结合了侧向流动(LF)测定法。 UCP是掺有稀土离子(镧系元素)的亚微米陶瓷颗粒,可将红外转换为可见光,并且不会遭受自发荧光的影响,而自发荧光会限制基于常规荧光的检测方法。在各种应用中对低成本手持式阅读器和微流体进行了评估。设计的测定非常适合在诊断实验室之外,资源匮乏的环境中使用,甚至可以供家庭患者使用。我们使用两种截然不同的UCP-LF分析格式,基于对病原体特异性抗体和/或抗原(包括核酸的检测)的感染性疾病分析,以证明HIV活跃感染。仅需对标准UCP-LF分析格式进行少量改动即可使该格式适用于涉及低亲和力捕获抗体(例如,检测神经毒素,肉毒中毒),捕获小分子(例如,检测褪黑激素,一种主要的激素)的应用时序药理学)或使用干燥的UCP试剂(例如,检测基于蛋白质的水果成熟标记物,在农业上具有经济意义)。最后,我们通过讨论一种UCP-LF分析形式来测量治疗炎症性肠病和类风湿性关节炎患者的免疫药物(例如英夫利昔单抗或阿达木单抗)的血清谷水平的潜力,来预测医疗保健(个性化医学)的发展。

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