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Plasmonic Nanobubbles: Tunable and Transient Probes for Cancer Diagnosis,Therapy and Theranostics

机译:等离子体纳米气泡:用于癌症诊断,治疗和治疗学的可调和瞬态探针。

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Combining diagnostic and therapeutic processes into one (theranostics) and improving their selectivity to cellular level may offer significant benefits in various research and disease systems and currently is not supported with efficient methods and agents. We have developed a novel method based on the gold nanoparticle-generated transient photothermal vapor nanobubbles, that we refer to as plasmonic nanobubbles (PNB). After delivery and clusterization of the gold nanoparticles (NP) to the target cells the intracellular PNBs were optically generated and controlled through the laser fluence. The PNB action was tuned in individual living cells from non-invasive high-sensitive imaging at lower fluence to disruption of the cellular membrane at higher fluence. We have achieved non-invasive 50-fold amplification of optical scattering amplitude with the PNBs (relative to that of NPs), selective mechanical and fast damage to specific cells with bigger PNBs, and optical guidance of the damage through the damage-specific signals of the bubbles.
机译:将诊断过程和治疗过程组合为一个(放射学)并提高其对细胞水平的选择性可能会在各种研究和疾病系统中带来重大好处,目前尚无有效的方法和药物支持。我们已经开发了一种基于金纳米粒子产生的瞬态光热蒸气纳米气泡的新方法,我们称其为等离激元纳米气泡(PNB)。在将金纳米颗粒(NP)传递并聚集到靶细胞后,光学生成细胞内PNB,并通过激光能量密度进行控制。 PNB的作用已在单个活细胞中进行了调整,从低通量的非侵入性高敏成像到高通量的细胞膜破坏。我们已经通过PNB(相对于NPs)实现了光散射幅度的非侵入性50倍放大,对具有更大PNB的特定细胞进行了选择性的机械和快速损伤,并通过损伤的特定信号对损伤进行了光学引导气泡。

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