Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY, 14853, USA.
School of Applied and Engineering Physics, Cornell University, 526 Campus Road, 409 Weill Hall, Ithaca, NY, 14853, USA.
Sci Rep. 2017 Oct 26;7(1):14142. doi: 10.1038/s41598-017-13044-5.
Vitamin D is necessary for the healthy growth and development of bone and muscle. Vitamin D deficiency, which is present in 42% of the US population, is often undiagnosed as symptoms may not manifest for several years and long-term deficiency has been linked to osteoporosis, diabetes and cancer. Currently the majority of vitamin D testing is performed in large-scale commercial laboratories which have high operational costs and long times-to-result. Development of a low-cost point-of-need assay could be transformative to deficiency analysis in limited-resource settings. The best biomarker of vitamin D status, 25hydroxyvitamin D (25(OH)D), however, is particularly challenging to measure in such a format due to complexities involved in sample preparation, including the need to separate the marker from its binding protein. Here we present a rapid diagnostic test for the accurate, quantitative assessment of 25(OH)D in finger-stick blood. The assay is accompanied by a smartphone-assisted portable imaging device that can autonomously perform the necessary image processing. To achieve accurate quantification of 25(OH)D, we also demonstrate a novel elution buffer that separates 25(OH)D from its binding protein in situ, eliminating the need for sample preparation. In human trials, the accuracy of our platform is 90.5%.
维生素 D 对于骨骼和肌肉的健康生长和发育是必需的。维生素 D 缺乏症在美国人群中占 42%,但往往未被诊断出来,因为其症状可能在数年后才显现,而且长期缺乏维生素 D 与骨质疏松症、糖尿病和癌症有关。目前,大多数维生素 D 检测都是在大型商业实验室中进行的,这些实验室的运营成本高,结果出具时间长。开发一种低成本的即时检测方法可能会对资源有限环境中的缺乏症分析产生变革性的影响。然而,作为维生素 D 状况的最佳生物标志物,25 羟维生素 D(25(OH)D)由于在样品制备过程中涉及到的复杂性,特别是在这种格式下进行测量时,具有挑战性,包括需要将标志物与其结合蛋白分离。在这里,我们提出了一种快速诊断测试方法,用于准确、定量评估指尖血中的 25(OH)D。该检测方法配备了一个智能手机辅助的便携式成像设备,能够自动执行必要的图像处理。为了实现 25(OH)D 的准确定量,我们还展示了一种新型洗脱缓冲液,可在原位将 25(OH)D 与其结合蛋白分离,从而无需样品制备。在人体试验中,我们的平台的准确率为 90.5%。