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Copper Sulfide Perfluorocarbon Nanodroplets as Clinically Relevant Photoacoustic/Ultrasound Imaging Agents

机译:硫化铜全氟碳纳米纳多片作为临床相关的光声/超声成像剂

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摘要

We have developed laser-activated perfluorocarbon nanodroplets containing copper sulfide nanoparticles (CuS NPs) for contrast-enhanced ultrasound and photoacoustic imaging. As potential clinical contrast agents, CuS NPs have favorable properties including biocompatibility, biodegradability, and enhance contrast in photoacoustic images at clinically relevant depths. However, CuS NPs are not efficient optical absorbers when compared to plasmonic nanoparticles and therefore, contrast enhancement with CuS NPs is limited, requiring high concentrations to generate images with sufficient signal-to-noise ratio. We have combined CuS NPs with laser-activated perfluorocarbon nanodroplets (PFCnDs) to achieve enhanced photoacoustic contrast and, more importantly, ultrasound contrast while retaining the favorable clinical characteristics of CuS NPs. The imaging characteristics of synthesized CuS-PFCnD constructs were first tested in tissue-mimicking phantoms and then in in vivo murine models. The results demonstrate that CuS-PFCnDs enhance contrast in photoacoustic (PA) and ultrasound (US) imaging. Upon systemic administration in vivo, CuS-PFCnDs remain stable and their unique vaporization provides sufficient PA/US contrast that can be further exploited for contrast-enhanced background-free imaging. The conducted studies provide a solid foundation for further development of CuS-PFCnDs as PA/US diagnostic and eventually therapeutic agents for clinical applications.
机译:我们开发了含有硫化铜纳米颗粒(CUS)的激光激活的全氟碳纳米坯用于对比增强的超声波和光声成像。作为潜在的临床造影剂,CUS NPS具有有利的性质,包括在临床相关深度的光声图像中的生物相容性,生物降解性和增强对比度。然而,与等离子体纳米颗粒相比,CUS NPS不是高效的光学吸收器,因此,用CUS NPS的对比增强有限,需要高浓度以产生具有足够信噪比的图像。我们将CUS NPS与激光激活的全氟碳纳米轧块(PFCNDS)组合,以实现增强的光声对比,更重要的是超声对比,同时保留了CUS NPS的有利临床特征。首先在组织模拟幽灵中进行合成的CUS-PFCND构建体的成像特性,然后在体内鼠模型中进行测试。结果表明,CUS-PFCNDS增强光声(PA)和超声(US)成像中的对比度。在体内的全身管理时,CUS-PFCNDS保持稳定,其独特的蒸发提供足够的PA /美国对比,可以进一步利用以进行对比增强的背景 - 自由影像。进行的研究为进一步发展CUS-PFCNDS作为PA / US诊断和最终治疗剂提供了坚实的基础,用于临床应用。

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