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Nanoparticle Detection with Portable and Low-Cost Lensless Holographic Microscopy Platform

机译:纳米粒子检测与便携式和低成本无透镜全息显微镜平台

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In the biological and medical science, detection of biomolecule at very low concentration (<100 pg/mL) is of great importance and it is extensively used in the diagnosis of diseases, drug response monitoring and cancer research. For biomolecule detection tests, captured biomolecules generate signals (fluorescence, color, etc.), which are analyzed by trained personnel in bulky, high cost and fragile devices. However, for clinical applications, the access to these tests is very difficult at resourcelimited settings. Lensless holographic microscopy provides high resolution imaging of samples without the need of expensive and fragile optical elements (mirror, lens, filter, etc.) used in traditional imaging technologies. While this technology offers a robust, portable and low-cost design, it enables fully automated processing of the sample image with digital processing schemes and this can also help eliminate user error. In this study, lensless holographic microscopy platform, which can be used in surface coverage assays for the detection of biomolecules, is proposed. It has been shown that nanoparticles (700-1200 nm) used as labels in surface coverage assays for the detection of biomolecules could be sensed on the platform. Therefore, it is anticipated that biomolecules detection could be realized rapidly and sensitively with this easy-to-use and low-cost imaging platform at the location where the high-level health institutions are not available and even at point-of-care settings.
机译:在生物学和医学科学中,以极低浓度(<100pg / ml)的生物分子检测是非常重要的,并且广泛用于疾病的诊断,药物反应监测和癌症研究。对于生物分子检测测试,捕获的生物分子产生信号(荧光,颜色等),这些信号由磨损的高成本和脆弱器件的培训人员分析。然而,对于临床应用,对这些测试的访问在资源设置中非常困难。无透镜全息显微镜可提供传统成像技术中使用的昂贵且易碎的光学元件(镜子,镜片,过滤器等)的高分辨率成像。虽然该技术提供了坚固,便携和低成本的设计,但它可以通过数字处理方案进行全自动处理样本图像,这也可以帮助消除用户错误。在该研究中,提出了可以在用于检测生物分子的表面覆盖测定中使用的无透镜全息显微镜平台。已经证明,在平台上可以感测用作表面覆盖测定中用作表面覆盖测定标签的纳米颗粒(700-1200nm)。因此,预计将在高级健康机构不可用的位置且甚至在护理点设置时,可以快速且敏感的生物分子检测可以快速且敏感地实现易于使用的易于使用和低成本的成像平台。

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