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Optical assays based on colloidal inorganic nanoparticles

机译:基于胶体无机纳米颗粒的光学测定

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Colloidal inorganic nanoparticles have wide applications in the detection of analytes and in biological assays. A large number of these assays rely on the ability of gold nanoparticles (AuNPs, in the 20 nm diameter size range) to undergo a color change from red to blue upon aggregation. AuNP assays can be based on cross-linking, non-cross linking or unmodified charge-based aggregation. Nucleic acid-based probes, monoclonal antibodies, and molecular-affinity agents can be attached by covalent or non-covalent means. Surface plasmon resonance and SERS techniques can be utilized. Silver NPs also have attractive optical properties (higher extinction coefficient). Combinations of AuNPs and AgNPs in nanocomposites can have additional advantages. Magnetic NPs and ZnO, TiO2 and ZnS as well as insulator NPs including SiO2 can be employed in colorimetric assays, and some can act as peroxidase mimics in catalytic applications. This review covers the synthesis and stabilization of inorganic NPs and their diverse applications in colorimetric and optical assays for analytes related to environmental contamination (metal ions and pesticides), and for early diagnosis and monitoring of diseases, using medically important biomarkers.
机译:胶体无机纳米粒子在检测分析物和生物测定中具有广泛的应用。大量这些测定依赖于金纳米颗粒(AUNP,20nm直径尺寸范围)的能力在聚集时从红色变为蓝色变化。 AUNP测定可以基于交联,非交联或未改造的基于电荷的聚合。基于核酸的探针,单克隆抗体和分子亲和力剂可以通过共价或非共价方法附着。表面等离子体共振和SERS技术可以使用。银NPS还具有吸引力的光学性质(较高的消光系数)。纳米复合材料中AUNP和AGNP的组合可以具有额外的优点。磁NPS和ZnO,TiO 2和ZnS以及包括SiO 2的绝缘体NPS可用于比色测定,有些可以用作催化应用中的过氧化物酶模拟物。本综述涵盖了无机NPS的合成和稳定性,以及与环境污染(金属离子和农药)相关的分析物中的分析物中的种子和光学测定中的各种应用,以及使用医学上重要的生物标志物的早期诊断和监测疾病。

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