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Near-infrared absorbing polymer nano-particle as a sensitive contrast agent for photo-acoustic imaging

机译:近红外吸收聚合物纳米颗粒作为光声成像的敏感对比剂

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Polymer nano-particles (PNPs) with a near-infrared (NIR) light absorption were prepared by the nanoemulsion method to develop contrast agents for photo-acoustic (PA) imaging. The PNP containing silicon naphthalocyanine showed a high absorption coefficient up to 10(10) M-1 cm(-1). This is comparable to plasmonic gold nano-particles, which have been studied as PA contrast agents. For the PNP larger than 100 nm, the enhancement of the PA signal was observed compared to the gold nano-particle with a similar absorption coefficient and size. In the case of the PNP, the heat by the light absorption is confined in the particle due to the low thermal diffusivity of polymer materials. We showed that the strong thermal confinement effect of PNP results in the enhancement of the efficiency of the PA signal generation and that the PA intensity can be enhanced by the increase of the Gruneisen parameter of the matrix polymer of PNP. The PA signal from the PNP of poly(methyl methacrylate) was 9-fold larger than that of gold nano-particles with the same absorption coefficient. We demonstrated that in the in vivo PA imaging the detection limit of PNP was of the order of 10(-13) M. The NIR absorbing PNP will be a promising candidate of a sensitive contrast agent for PA imaging.
机译:通过纳米乳剂方法制备了具有近红外(NIR)光吸收的聚合物纳米颗粒(PNP),以开发用于光声(PA)成像的对比剂。含有硅萘的PNP表现出高达10(10)m-1 cm(-1)的高吸收系数。这与已研究为PA对比剂的血浆金纳米颗粒相媲美。对于大于100 nm的PNP,与具有相似吸收系数和大小的金纳米颗粒相比,观察到PA信号的增强。在PNP的情况下,由于聚合物材料的热扩散率低,光吸收的热量被限制在颗粒中。我们表明,PNP的强热限制效应导致PA信号产生效率的提高,并且可以通过PNP基质聚合物的Gruneisen参数的增加来增强PA强度。来自聚(甲基丙烯酸甲酯)PNP的PA信号比具有相同吸收系数的金纳米粒子大9倍。我们证明,在体内成像中,PNP的检测极限为10(-13)M。NIR吸收PNP将是PA成像的敏感对比剂的有前途的候选者。

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