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Hybrid plasmonic magnetic nanoparticles as molecular specific agents for MRI/optical imaging and photothermal therapy of cancer cells

机译:杂化等离子体磁纳米颗粒作为癌细胞的MRI /光学成像和光热疗法的分子特异性试剂

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Nanoparticles which consist of a plasmonic layer and an iron oxide moiety could provide a promising platform for development of multimodal imaging and therapy approaches in future medicine. However, the feasibility of this platform has yet to be fully explored. In this study we demonstrated the use of gold-coated iron oxide hybrid nanoparticles for combined molecular specific MRI/optical imaging and photothermal therapy of cancer cells. The gold layer exhibits a surface plasmon resonance that provides optical contrast due to light scattering in the visible region and also presents a convenient surface for conjugating targeting moieties, while the iron oxide cores give strong T_2 (spin-spin relaxation time) contrast. The strong optical absorption of the plasmonic gold layer also makes these nanoparticles a promising agent for photothermal therapy. We synthesized hybrid nanoparticles which specifically target epidermal growth factor receptor (EGFR), a common biomarker for many epithelial cancers. We demonstrated molecular specific MRI and optical imaging in MDA-MB-468 breast cancer cells. Furthermore, we showed that receptor-mediated aggregation of anti-EGFR hybrid nanoparticles allows selective destruction of highly proliferative cancer cells using a nanosecond pulsed laser at 700 nm wavelength, a significant shift from the peak absorbance of isolated hybrid nanoparticles at 532 nm.
机译:由等离激元层和氧化铁部分组成的纳米颗粒可以为未来医学中多峰成像和治疗方法的发展提供有希望的平台。但是,该平台的可行性尚待充分探讨。在这项研究中,我们证明了金包被的氧化铁杂化纳米颗粒用于癌细胞的分子特异性MRI /光学成像和光热疗法的组合。金层表现出表面等离子体共振,由于在可见光区域的光散射而提供光学对比度,并且还提供了用于缀合目标部分的便捷表面,而氧化铁芯则具有很强的T_2(自旋-自旋弛豫时间)对比度。等离子体金层的强光吸收也使这些纳米颗粒成为光热疗法的有前途的药物。我们合成了专门针对表皮生长因子受体(EGFR)的杂合纳米颗粒,表皮生长因子受体是许多上皮癌的常见生物标志物。我们展示了MDA-MB-468乳腺癌细胞中的分子特异性MRI和光学成像。此外,我们表明抗EGFR杂合纳米颗粒的受体介导的聚集体允许使用700 nm波长的纳秒脉冲激光选择性破坏高度增殖的癌细胞,这与分离的杂合纳米颗粒在532 nm的峰吸收率有显着变化。

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