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Multiplexed detection of molecular biomarkers with phase-change nanoparticles

机译:相变纳米粒子对分子生物标志物的多重检测

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摘要

This review describes a new biosensing method based on nanoparticles of solid-to-liquid phase-change materials, in which a panel of metallic nanoparticles (metals and eutectic alloys) that have different compositions and melting temperatures are used as thermal reporters. Each type of nanoparticle will be conjugated to a ligand that can specifically bind to one type of molecular biomarker (protein or DNA) and then immobilized onto a substrate that is comodified with multiple ligands by forming sandwiched antibody–antigen complexes or DNA double helices. After removing unbound nanoparticles by washing, the nature and concentration of the biomarkers are determined by detecting the melting temperature and fusion enthalpy of the nanoparticles using differential scanning calorimetry. Furthermore, an even larger panel of thermal barcodes can be formed by encapsulating selected phase-change nanoparticles inside non-melting shells, such as silica, where each microparticle will have a characteristic signature that can be determined from its thermal signatures.
机译:这篇综述描述了一种新的基于固-液相变材料纳米粒子的生物传感方法,其中将具有不同组成和熔化温度的一组金属纳米粒子(金属和低共熔合金)用作热报告物。每种类型的纳米颗粒都将与可以特异性结合一种类型的分子生物标记(蛋白质或DNA)的配体结合,然后通过形成夹心的抗体-抗原复合物或DNA双螺旋固定在与多种配体共修饰的基质上。在通过洗涤除去未结合的纳米颗粒之后,通过使用差示扫描量热法检测纳米颗粒的熔融温度和熔融焓来确定生物标记的性质和浓度。此外,通过将选择的相变纳米颗粒封装在非熔融壳(例如二氧化硅)中,可以形成更大的热条形码面板,其中每个微粒将具有可以根据其热特征确定的特征特征。

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