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Surface design of photon-upconversion nanoparticles for high-contrast immunocytochemistry

机译:表面设计photon-upconversion纳米粒子对高对比度免疫细胞化学

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摘要

Immunohistochemistry (IHC) and immunocytochemistry (ICC) are routinely employed for the microscopic identification and diagnosis of cancerous cells in histological tissues and cell cultures. The maximally attainable contrast of conventional histological staining techniques, however, is low. While the anti-Stokes emission of photon-upconversion nanoparticles (UCNP) can efficiently eliminate optical background interference, excluding non-specific interactions of the label with the histological sample is equally important for specific immunolabeling. To address both requirements, we have designed and characterized several UCNP-based nanoconjugates as labels for the highly specific detection of the cancer biomarker HER2 on various breast cancer cell lines. An optimized streptavidin-PEG-neridronate-UCNP conjugate provided an unsurpassed signal-to-background ratio of 319, which was 50-fold better than conventional fluorescent labeling under the same experimental conditions. In combination, the absence of optical interference and non-specific binding lays the foundation for computer-based data evaluation in digital pathology.
机译:免疫组织化学和免疫细胞化学(包含IHC)(ICC)通常用于微观癌细胞的识别和诊断在组织组织和细胞培养。最大限度地实现对比传统然而,组织学染色技术低。photon-upconversion纳米颗粒(UCNP)有效地消除背景光干扰,排除非特异性相互作用用组织样本的标签为特定的immunolabeling同样重要。满足两个需求,我们设计了几个特征UCNP-based nanoconjugates的标签非常具体的检测癌症生物标志物HER2在各种乳房癌症细胞系。streptavidin-PEG-neridronate-UCNP共轭提供了一个无与伦比的signal-to-background319年,比50倍比传统的荧光标记相同实验条件。没有光学干涉和非特异性为基于计算机的结合奠定了基础在数字病理数据评估。

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