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Tunable semiconducting polymer nanoparticles with INDT-based conjugated polymers for photoacoustic molecular imaging

机译:具有基于INDT的共轭聚合物的可调谐半导体聚合物纳米颗粒,用于光声分子成像

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摘要

Photoacoustic imaging combines both excellent spatial resolution with high contrast and specificity, without the need for patients to be exposed to ionizing radiation. This makes it ideal for the study of physiological changes occurring during tumorigenesis and cardiovascular disease. In order to fully exploit the potential of this technique, new exogenous contrast agents with strong absorbance in the near-infrared range, good stability and biocompatibility, are required. In this paper, we report the formulation and characterization of a novel series of endogenous contrast agents for photoacoustic imaging in vivo. These contrast agents are based on a recently reported series of indigoid π-conjugated organic semiconductors, coformulated with 1,2-dipalmitoyl-sn-glycero-3-phosphocholine, to give semiconducting polymer nanoparticles of about 150 nm diameter. These nanoparticles exhibited excellent absorption in the near-infrared region, with good photoacoustic signal generation efficiencies, high photostability, and extinction coefficients of up to three times higher than those previously reported. The absorption maximum is conveniently located in the spectral region of low absorption of chromophores within human tissue. Using the most promising semiconducting polymer nanoparticle, we have demonstrated wavelength-dependent differential contrast between vasculature and the nanoparticles, which can be used to unambiguously discriminate the presence of the contrast agent in vivo.
机译:光声成像将出色的空间分辨率与高对比度和特异性结合在一起,而无需让患者暴露于电离辐射下。这使其成为研究在肿瘤发生和心血管疾病期间发生的生理变化的理想选择。为了充分利用该技术的潜力,需要在近红外范围具有强吸收性,良好的稳定性和生物相容性的新型外源性造影剂。在本文中,我们报告了一系列用于体内光声成像的新型内源性造影剂。这些造影剂基于最近报道的一系列与1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱共配制的靛蓝π-共轭有机半导体,得到直径约为150 nm的半导体聚合物纳米颗粒。这些纳米颗粒在近红外区域表现出出色的吸收性能,具有良好的光声信号产生效率,高光稳定性,并且消光系数比以前报道的高三倍。吸收最大值位于人体组织中发色团低吸收的光谱区域。使用最有前途的半导体聚合物纳米粒子,我们已经证明了脉管系统和纳米粒子之间的波长相关的差异对比,可用于明确区分体内造影剂的存在。

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