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Enhanced multi-spectral imaging of live breast cancer cells using immunotargeted gold nanoshells and two-photon excitation microscopy

机译:免疫靶向金纳米壳和双光子激发显微镜增强了活乳腺癌细胞的多光谱成像

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摘要

We demonstrate the capability of using immunotargeted gold nanoshells as contrast agents for in vitro two-photon microscopy. The two-photon luminescence properties of different-sized gold nanoshells are first validated using near-infrared excitation at 780 nm. The utility of two-photon microscopy as a tool for imaging live HER2-overexpressing breast cancer cells labeled with anti-HER2-conjugated nanoshells is then explored and imaging results are compared to normal breast cells. Five different imaging channels are simultaneously examined within the emission wavelength range of 451-644 nm. Our results indicate that under near-infrared excitation, superior contrast of SK-BR-3 cancer cells labeled with immunotargeted nanoshells occurs at an emission wavelength ranging from 590 to 644 nm. Luminescence from labeled normal breast cells and autofluorescence from unlabeled cancer and normal cells remain imperceptible under the same conditions.
机译:我们证明了使用免疫靶向的金纳米壳作为体外两光子显微镜造影剂的能力。首先使用780 nm的近红外激发来验证不同尺寸的金纳米壳的双光子发光特性。然后,研究了利用双光子显微镜对用抗-HER2缀合的纳米壳标记的活表达HER2的过表达乳腺癌细胞进行成像的工具,并将成像结果与正常乳腺癌细胞进行了比较。在451-644 nm的发射波长范围内,同时检查了五个不同的成像通道。我们的结果表明,在近红外光激发下,被免疫靶向纳米壳标记的SK-BR-3癌细胞在590至644 nm的发射波长下出现了出色的对比度。在相同条件下,标记的正常乳腺细胞的发光以及未标记的癌症和正常细胞的自体荧光仍然无法察觉。

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