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使用智能手机进行镰状细胞检测。

Sickle cell detection using a smartphone.

作者信息

Knowlton S M, Sencan I, Aytar Y, Khoory J, Heeney M M, Ghiran I C, Tasoglu S

机构信息

Department of Biomedical Engineering, University of Connecticut, 260 Glenbrook Road, Storrs, CT 06269.

Department of Diagnostic Radiology, Yale School of Medicine, New Haven, CT 06520-8043.

出版信息

Sci Rep. 2015 Oct 22;5:15022. doi: 10.1038/srep15022.

Abstract

Sickle cell disease affects 25% of people living in Central and West Africa and, if left undiagnosed, can cause life threatening "silent" strokes and lifelong damage. However, ubiquitous testing procedures have yet to be implemented in these areas, necessitating a simple, rapid, and accurate testing platform to diagnose sickle cell disease. Here, we present a label-free, sensitive, and specific testing platform using only a small blood sample (<1 μl) based on the higher density of sickle red blood cells under deoxygenated conditions. Testing is performed with a lightweight and compact 3D-printed attachment installed on a commercial smartphone. This attachment includes an LED to illuminate the sample, an optical lens to magnify the image, and two permanent magnets for magnetic levitation of red blood cells. The sample is suspended in a paramagnetic medium with sodium metabisulfite and loaded in a microcapillary tube that is inserted between the magnets. Red blood cells are levitated in the magnetic field based on equilibrium between the magnetic and buoyancy forces acting on the cells. Using this approach, we were able to distinguish between the levitation patterns of sickle versus control red blood cells based on their degree of confinement.

摘要

镰状细胞病影响着25%生活在中非和西非的人口,如果不进行诊断,可能会导致危及生命的“无症状”中风和终身损害。然而,这些地区尚未实施普遍的检测程序,因此需要一个简单、快速且准确的检测平台来诊断镰状细胞病。在此,我们展示了一种基于脱氧条件下镰状红细胞较高密度的、仅使用少量血样(<1微升)的无标记、灵敏且特异的检测平台。检测通过安装在商用智能手机上的轻便紧凑的3D打印附件进行。该附件包括一个用于照亮样本的LED、一个用于放大图像的光学透镜以及两个用于红细胞磁悬浮的永久磁铁。样本悬浮在含有焦亚硫酸钠的顺磁性介质中,并装入插入磁铁之间的微毛细管中。红细胞基于作用在细胞上的磁力和浮力之间的平衡在磁场中悬浮。使用这种方法,我们能够根据镰状红细胞与对照红细胞的受限程度来区分它们的悬浮模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f933/4615037/6540b26078f9/srep15022-f1.jpg

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