首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >DIELECTROPHORETIC ENRICHMENT OF LOW-ABUNDANCE NANOPARTICLES USING A NANOTIP-CONCENTRATOR FOR NANOENGINEERED MEDICINE AND BIOLOGY
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DIELECTROPHORETIC ENRICHMENT OF LOW-ABUNDANCE NANOPARTICLES USING A NANOTIP-CONCENTRATOR FOR NANOENGINEERED MEDICINE AND BIOLOGY

机译:纳米肽浓缩剂用于纳米工程医学和生物学的低丰度纳米粒子的介电富集

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Enrichment of low-concentration nanoparticles (NPs) is of great interest in medicine and biology. In particular, the enrichment of biomolecules such as DNA and protein can have broad impacts on disease diagnosis and drug discovery. Currently available methods utilize centrifugation or magnetic field. However, these methods are limited in cumbersome preparation steps and low sensitivity. Electric field-based methods have demonstrated potential for NP enrichment, but conventional planar electrodes trapping NPs are limited in sensitivity and imaging capability. Here, we present a nanotip-concentrator using dielectrophoresis (DEP) for NP enrichment. Unlike conventional planar electrodes, a nanostructured probe-tip can facilitate more sensitive detection of NPs because of high electric field strength. The NP enrichment mechanism is studied through numerical computation, and then validated through experiment using Au NPs. For optimized enrichment of NPs, 8 nm-long oligonucleotides are used to enrich through hybridization reactions, which shows the sensitivity at 10 aM (9 copies in a 1.5 μL sample). The nanotip-concentrator will offer a novel enrichment platform for highly sensitive NP detection and analysis.
机译:低浓度纳米颗粒(NPs)的富集在医学和生物学领域引起了极大的兴趣。特别是,DNA和蛋白质等生物分子的富集会对疾病诊断和药物发现产生广泛影响。当前可用的方法利用离心或磁场。但是,这些方法的制备步骤繁琐且灵敏度低。基于电场的方法已经证明了NP富集的潜力,但是捕获NP的常规平面电极在灵敏度和成像能力方面受到限制。在这里,我们提出了使用介电电泳(DEP)进行NP富集的纳米尖端浓缩器。与传统的平面电极不同,纳米结构的探针尖端由于电场强度高,可以促进对NP的更灵敏的检测。通过数值计算研究了NP富集机理,然后通过使用金纳米颗粒的实验进行了验证。为了优化NP的富集,使用了8 nm长的寡核苷酸通过杂交反应进行富集,这显示了在10 aM下的敏感性(在1.5μL样品中有9个拷贝)。 nanotip浓缩器将为高度灵敏的NP检测和分析提供新颖的富集平台。

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