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Spaser as a biological probe

机译:Spaser作为生物探针

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Understanding cell biology greatly benefits from the development of advanced diagnostic probes. Here we introduce a 22-nm spaser (plasmonic nanolaser) with the ability to serve as a super-bright, water-soluble, biocompatible probe capable of generating stimulated emission directly inside living cells and animal tissues. We have demonstrated a lasing regime associated with the formation of a dynamic vapour nanobubble around the spaser that leads to giant spasing with emission intensity and spectral width >100 times brighter and 30-fold narrower, respectively, than for quantum dots. The absorption losses in the spaser enhance its multifunctionality, allowing for nanobubble-amplified photothermal and photoacoustic imaging and therapy. Furthermore, the silica spaser surface has been covalently functionalized with folic acid for molecular targeting of cancer cells. All these properties make a nanobubble spaser a promising multimodal, super-contrast, ultrafast cellular probe with a single-pulse nanosecond excitation for a variety of in vitro and in vivo biomedical applications.
机译:了解细胞生物学极大地受益于高级诊断探针的开发。在这里,我们介绍一种22纳米的spaser(等离子体纳米激光),它具有充当超亮,水溶性,生物相容性探针的能力,能够直接在活细胞和动物组织内部产生受激发射。我们已经证明,与在散布器周围形成动态蒸气纳米气泡有关的激射机制导致了巨大的散布,其发射强度和光谱宽度分别是量子点的100倍和30倍。 SPASER中的吸收损失增强了它的多功能性,可以进行纳米气泡放大的光热和光声成像和治疗。此外,硅石表面已与叶酸共价官能化,可用于癌细胞的分子靶向。所有这些特性使Nanobubble Spaser成为一种有前途的多模式,超对比,超快速细胞探针,具有单脉冲纳秒激发能力,可用于多种体外和体内生物医学应用。

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