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Diffractive micro bar codes for encoding of biomolecules in multiplexed assays

机译:衍射微条形码,用于在多重测定中编码生物分子

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Microparticles incorporating micrometer-sized diffractive bar codes have been modified with oligonucleotides and immunoglobulin Gs to enable DNA hybridization and immunoassays. The bar codes are manufactured using photolithography of a chemically functional commercial epoxy photoresist (SU-8). When attached by suitable linkers, immobilized probe molecules exhibit high affinity for analytes and fast reaction kinetics, allowing detection of single nucleotide differences in DNA sequences and multiplexed immunoassays in <45 min. Analysis of raw data from assays carried out on the diffractive microparticles indicates that the reproducibility and sensitivity approach those of commercial encoding platforms. Micrometer-sized particles, imprinted with several super-imposed diffraction gratings, can encode many million unique codes. The high encoding capacity of this technology along with the applicability of the manufactured bar codes to multiplexed assays will allow accurate measurement of a wide variety of molecular interactions, leading to new opportunities in diverse areas of biotechnology such as genomics, proteomics, high-throughput screening, and medical diagnostics.
机译:结合了微米级衍射条形码的微粒已经用寡核苷酸和免疫球蛋白Gs修饰,可以进行DNA杂交和免疫测定。使用化学功能的商用环氧光致抗蚀剂(SU-8)的光刻技术制造条形码。当通过合适的接头连接时,固定的探针分子对分析物具有很高的亲和力,并具有快速的反应动力学,可在不到45分钟的时间内检测DNA序列中的单核苷酸差异并进行多重免疫测定。对在衍射微粒上进行的分析中的原始数据进行分析表明,其可重复性和灵敏度接近于商业编码平台。微米大小的颗粒,上面印有几个叠加的衍射光栅,可以编码数百万个唯一代码。这项技术的高编码能力以及所制造的条形码在多重化验中的适用性将允许精确测量各种分子相互作用,从而在生物技术的各个领域带来新的机遇,例如基因组学,蛋白质组学,高通量筛选以及医学诊断。

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