Department of Biology and Biochemistry, University of Houston, Houston, Texas, United States of America.
Luminostics, Inc., San Jose, California, United States of America.
PLoS One. 2019 Dec 10;14(12):e0225365. doi: 10.1371/journal.pone.0225365. eCollection 2019.
Herpes Simplex Virus Type 2 (HSV-2) is a common human pathogen that causes life-long illness. The US prevalence of HSV-2 infection is 11.9% for individuals between 15 and 49 years of age. Individuals with HSV-2 infection are more likely to contract and spread other sexually-transmitted infections. Eighty percent of individuals with HSV-2 are unaware of their infection, in part because of the social stigma associated with in-clinic testing for sexually-transmitted infections. We conducted an initial evaluation of a prototype smartphone-based serological lateral-flow immunoassay (LFA) for HSV-2 infection that uses strontium aluminate persistent luminescent nanoparticles (nanophosphors) as reporters. When applied to a test panel of 21 human plasma/serum samples varying in anti-HSV titer, the nanophosphor HSV-2 LFA had 96.7% sensitivity and 100% specificity for detection of HSV-2 infection. The sensitivity of the nanophosphor HSV-2 LFA was higher than that of commercially-available rapid HSV-2 assays tested with the same panel. Analysis of the iPhone nanophosphor HSV-2 LFA strip images with our custom smartphone app gave greater reproducibility compared to ImageJ analysis of strip images. The smartphone-based nanophosphor LFA technology shows promise for private self-testing for sexually-transmitted infections (STI).
单纯疱疹病毒 2 型(HSV-2)是一种常见的人类病原体,可导致终身疾病。美国 15 至 49 岁人群中 HSV-2 感染的流行率为 11.9%。感染 HSV-2 的个体更有可能感染和传播其他性传播感染。80%的 HSV-2 感染者不知道自己的感染情况,部分原因是与性传播感染门诊检测相关的社会耻辱感。我们对一种基于智能手机的原型血清学侧向流动免疫分析(LFA)进行了初步评估,该分析用于检测 HSV-2 感染,使用铝酸锶持久发光纳米粒子(纳米荧光粉)作为报告物。当应用于包含 21 个人血浆/血清样本的测试面板,这些样本的抗 HSV 效价不同时,纳米荧光粉 HSV-2 LFA 的 HSV-2 感染检测灵敏度为 96.7%,特异性为 100%。纳米荧光粉 HSV-2 LFA 的灵敏度高于用相同面板测试的市售快速 HSV-2 检测。与使用 ImageJ 分析条带图像相比,使用我们的自定义智能手机应用程序对 iPhone 纳米荧光粉 HSV-2 LFA 条带图像进行分析,具有更高的重现性。基于智能手机的纳米荧光粉 LFA 技术有望用于性传播感染(STI)的私人自我检测。