首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >Molecular contrast of EGFR expression using gold nanoparticles as a reflectance-based imaging probe.
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Molecular contrast of EGFR expression using gold nanoparticles as a reflectance-based imaging probe.

机译:使用金纳米颗粒作为基于反射率的成像探针的EGFR表达的分子对比。

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Advanced reflectance-based optical techniques for in vivo imaging often suffer from low contrast between neoplastic and normal tissue and are unable to image early biomolecular changes associated with carcinogenesis, thus limiting their clinical value. In this study, we exploit the resonance light scattering property of gold nanoparticles at their surface plasmon resonance to develop them as potential molecular contrast probes for imaging biomolecular changes during carcinogenesis under reflectance-mode imaging techniques. Gold nanoparticles were synthesized and conjugated to anti-epidermal growth factor receptor (EGFR). Their localization on the EGFR of nasopharyngeal carcinoma CNE2 cells and normal human lung fibroblast (NHLF) cells were imaged and compared under confocal microscopy in vitro. We have shown that the localization of gold bioconjugates on EGFR increases the reflectance properties of CNE2 cells and the regions of increased reflectance correspond to regions of high EGFR expression in the cells. The optical properties of normal fibroblast cells are not greatly affected. These gold bioconjugates are thus able to map the expression of relevant biomarkers and elicit an optical contrast for cancer cells over normal cells under confocal reflectance microscopy. Our study demonstrates the potential of gold nanoparticles to target and probe cancer cells and illuminates them for cancer detection under reflectance-based imaging systems based on biomolecular changes.
机译:用于体内成像的基于反射率的先进光学技术通常在肿瘤组织和正常组织之间的对比度较低,并且无法对与癌变相关的早期生物分子变化进行成像,从而限制了其临床价值。在这项研究中,我们利用金纳米粒子在其表面等离振子共振处的共振光散射特性,将其开发为潜在分子对比探针,用于在反射模式成像技术下成像致癌过程中的生物分子变化。合成金纳米颗粒,并将其与抗表皮生长因子受体(EGFR)偶联。在体外共聚焦显微镜下成像并比较了它们在鼻咽癌CNE2细胞和正常人肺成纤维细胞(NHLF)细胞的EGFR中的定位。我们已经表明,金生物缀合物在EGFR上的定位增加了CNE2细胞的反射特性,并且反射率增加的区域对应于细胞中高EGFR表达的区域。正常成纤维细胞的光学性质不会受到很大影响。因此,这些金生物共轭物能够在共聚焦反射显微镜下绘制相关生物标志物的表达,并引起正常细胞上癌细胞的光学对比。我们的研究证明了金纳米颗粒靶向和探测癌细胞的潜力,并在基于生物分子变化的基于反射率的成像系统中为癌症检测提供了照明。

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