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Paper-based colorimetric enzyme linked immunosorbent assay fabricated by laser induced forward transfer

机译:激光诱导前向转移制备的纸基比色酶联免疫吸附法

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摘要

We report the Laser Induced Forward Transfer (LIFT) of antibodies from a liquid donor film onto paper receivers for application as point-of-care diagnostic sensors. To minimise the loss of functionality of the active biomolecules during transfer, a dynamic release layer was employed to shield the biomaterial from direct exposure to the pulsed laser source. Cellulose paper was chosen as the ideal receiver because of its inherent bio-compatibility, liquid transport properties, wide availability and low cost, all of which make it an efficient and suitable platform for point-of-care diagnostic sensors. Both enzyme-tagged and untagged IgG antibodies were LIFT-printed and their functionality was confirmed via a colorimetric enzyme-linked immunosorbent assay. Localisation of the printed antibodies was exhibited, which can allow the creation of complex 2-d patterns such as QR codes or letters for use in a final working device. Finally, a calibration curve was determined that related the intensity of the colour obtained to the concentration of active antibodies to enable quantitative assessment of the device performance. The motivation for this work was to implement a laser-based procedure for manufacturing low-cost, point-of-care diagnostic devices on paper.
机译:我们报告了抗体从液体供体薄膜到纸张接收器上的激光诱导向前转移(LIFT),可作为即时诊断传感器使用。为了最小化转移过程中活性生物分子功能的丧失,采用了动态释放层来保护生物材料免于直接暴露于脉冲激光源。纤维素纸因其固有的生物相容性,液体传输特性,广泛的可用性和低成本而被选择为理想的接收器,所有这些使其成为即时诊断传感器的高效且合适的平台。 LIFT打印酶标记和未标记的IgG抗体,并通过比色酶联免疫吸附测定法确认其功能。展示了印刷抗体的定位,这可以允许创建复杂的二维图形(例如QR码或字母)以用于最终的工作设备。最后,确定一条校准曲线,该曲线将获得的颜色强度与活性抗体的浓度相关联,以实现对设备性能的定量评估。这项工作的动机是实施基于激光的程序,以在纸上制造低成本的即时诊断设备。

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