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IT14. Nanophotonics for biological sensing: New tools for disease management

机译:IT14。用于生物传感的纳米光子学:疾病管理的新工具

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Nanoparticles conjugated with biomolecules are promising building blocks for assembly into nanostructured functional materials for developing biomarker platforms because of their size dependent optical and electrical properties. Nanoparticles and nanodevices enable study of a wide range of biological phenomena extending from biomolecular interactions such as protein-protein, antibody-antigen or DNA protein interactions mapping to early diagnosis of bacterial, fungal or viral diseases in plants. Recent advances in materials science, in particular the development of functionalized nanoparticles, united with advances in molecular imaging research, provide the impetus for the present explosion in nanobiotechnology imaging and diagnosis research. Key to those advances is the emergence of functionalized nanoparticles, particularly inorganic nanoparticles, semiconductor nanomaterials (QDs) that can be targeted specifically to antibody receptors, enzymes and other molecules of biological importance that can interact at the cellular level. Also, over the last few years there has been a great interest of high-resolution devices for in vivo imaging in animal models of human disease and high-throughput, i.e., microarray and combinatorial, techniques for generating new diagnostic and therapeutic targets and probes. Here, we discuss some new strategies in developing functionalized inorganic or semiconductor based nanomaterials for early disease diagnosis.
机译:与生物分子缀合的纳米颗粒因其尺寸依赖性的光学和电学性质,有望成为组装成用于开发生物标记平台的纳米结构功能材料的基础。纳米颗粒和纳米设备使人们能够研究从生物分子相互作用(如蛋白质-蛋白质,抗体-抗原或DNA蛋白质相互作用)到植物的细菌,真菌或病毒性疾病的早期诊断的广泛生物学现象。材料科学的最新进展,特别是功能化纳米颗粒的发展,与分子成像研究的发展相结合,为当前纳米生物技术成像和诊断研究的迅猛发展提供了动力。这些进展的关键是出现了功能化的纳米颗粒,特别是无机纳米颗粒,可以专门针对抗体受体,酶和其他在细胞水平上相互作用的具有生物学重要性的其他分子的半导体纳米材料(QD)。另外,在过去的几年中,人们对于在人类疾病和高通量的动物模型中进行体内成像的高分辨率设备,即微阵列和组合技术,产生新的诊断和治疗靶标和探针的技术也产生了极大的兴趣。在这里,我们讨论了开发用于早期疾病诊断的功能化无机或半导体基纳米材料的一些新策略。

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