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Theranostic probe for simultaneous in vivo photoacoustic imaging and confined photothermolysis by pulsed laser at 1064 nm in 4T1 breast cancer model

机译:用于在4T1乳腺癌模型中同时进行1064 nm脉冲激光进行体内光声成像和有限光热解的Theranostic探针

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摘要

Here, we report that polyethylene glycol (PEG)-coated copper(II) sulfide nanoparticles (PEG-CuS NPs) with their peak absorption tuned to 1064 nm could be used both as a contrast agent for photoacoustic tomographic imaging of mouse tumor vasculature and as a mediator for confined phothermolysis of tumor cells in an orthotopic syngeneic 4T1 breast tumor model. PEG-CuS NPs showed stronger photoacoustic signal than hollow gold nanospheres and single-wall carbon nanotubes at 1064 nm. MicroPET imaging of 4T1 tumor-bearing mice showed a gradual accumulation of the NPs in the tumor over time. About 6.5% of injected dose were taken up in each gram of tumor tissue at 24 h after intravenous injection of 64Cu-labeled PEG-CuS NPs. For both photoacoustic imaging and therapeutic studies, nanosecond (ns)-pulsed laser was delivered with Q-switched Nd:YAG at a wavelength of 1064 nm. Unlike conventional photothermal ablation therapy mediated by continuous wave laser with which heat could spread to the surrounding normal tissue, interaction of CuS NPs with short pulsed laser deliver heat rapidly to the treatment volume keeping the thermal damage confined to the target tissues. Our data demonstrated that it is possible to use a single-compartment nanoplatform to achieve both photoacoustic tomography and highly selective tumor destruction at 1064 nm in small animals.
机译:在这里,我们报道聚乙二醇(PEG)涂层的硫化铜(II)纳米粒子(PEG-CuS NPs)的峰吸收被调整为1064 nm,既可以用作小鼠肿瘤血管的光声层析成像的造影剂,也可以用作在原位同基因4T1乳腺肿瘤模型中肿瘤细胞的有限热解的介体。 PEG-CuS NPs在1064 nm处比空心金纳米球和单壁碳纳米管显示出更强的光声信号。携带4T1肿瘤的小鼠的MicroPET成像显示,随着时间的推移,NP在肿瘤中逐渐积累。静脉注射 64 Cu标记的PEG-CuS NP后24小时,每克肿瘤组织吸收约6.5%的注射剂量。对于光声成像和治疗研究,都使用了Q开关Nd:YAG发射的纳秒(ns)脉冲激光,波长为1064 nm。与连续波激光介导的传统光热消融疗法不同,连续波激光可以将热量散布到周围的正常组织,而CuS NPs与短脉冲激光的相互作用将热量迅速传递至治疗体积,从而将热损伤限制在目标组织内。我们的数据表明,有可能使用单室纳米平台在小型动物中实现光声层析成像和在1064 nm处高度选择性的肿瘤破坏。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(6),24
  • 年度 -1
  • 页码 15228–15235
  • 总页数 17
  • 原文格式 PDF
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