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Detection of Protein Analytes via Nanoparticle-Based Bio Bar Code Technology

机译:通过基于纳米粒子的生物条形码技术检测蛋白质分析物

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We describe a new format for the recently introduced bio bar code technology, which improves the dose response over 10 000-fold and thereby makes this technique analytically useful. Unlike other ultrasensitive protein detection methods, such as immuno-PCR or immuno-RCA, the bio bar code technique does not employ any enzymes to achieve detection limits in the attomolar range. By sandwiching a target between a magnetic bead and an amplifier nanoparticle, a multiplicity of bar code oligonucleotides are released for each captured target analyte. These surrogate bar code targets are then hybridized to microarrays and detected with silver-amplified gold nanoparticle probes. Using PSA detection as a model, we demonstrate a linear dose response over at least 4 orders of magnitude in both target concentration and concomitant signal and a 1000-fold improvement in detection limit compared to the best ELISA system.
机译:我们描述了最近引入的生物条形码技术的新格式,该格式将剂量响应提高了10000倍以上,从而使该技术在分析上很有用。与其他超灵敏蛋白质检测方法(例如免疫PCR或免疫RCA)不同,生物条形码技术不使用任何酶来达到在大摩尔范围内的检测限。通过将靶标夹在磁珠和放大器纳米粒子之间,可以为每种捕获的靶标分析物释放大量条形码寡核苷酸。然后将这些替代条形码目标与微阵列杂交,并用银放大的金纳米粒子探针进行检测。使用PSA检测作为模型,与最佳ELISA系统相比,我们证明了目标浓度和伴随信号在至少4个数量级上的线性剂量响应,并且检测限提高了1000倍。

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