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High frequency ultrasound and photoacoustic imaging for tissue characterization in vivo

机译:高频超声和光声成像用于体内组织表征

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The photoacoustic (PA) technology combined with high frequency ultrasound (HF -US) is a versatile tool to assess real-time and non-invasively the morpho-functional and molecular information of a target tissue, and to map the distribution of contrast agents. Recently a plethora of novel nanomaterials were developed as contrast agents and/or drug delivery systems. In this work, we report the use of micro-bubbles and gold nanorods (GNRs) as vascular contrast agents for the characterization of tumor micro-environment, combining HF-US and PA imaging. A bolus of 50μL of untargeted micro-bubbles and a bolus of 150μL of GNRs solution were injected intravenously in two male colon cancer xenograft mice and detected with a commercial PA-US imaging system. The subcutaneous tumor dimensions were assessed by means of B-mode images (146.48 mmn2nand 24.56 mmn2n); different perfusion parameters were estimated tracking the micro-bubbles (peak enhancement map; time to peak 51,3s, 58,7s and 39s and wash-in rate 35,5s, 5,4s and 109,4s for different tumor regions); the real time distribution of GNRs in the tumor was assessed by means of the amplitude variation of the PA signal during time (30 % increase of the PA signal 28 min after injection). The combination of HF-US and PA imaging could become an efficient and non invasive tool for the in vivo and real-time evaluation of the tissue viability, to visualize the map of perfusion and monitoring the efficacy of drugano-particle delivery. The use of targeted microbubbles and nanoparticles could open new avenues for the real-time mapping of specific cell epitopes and phenotypes.
机译:光声(PA)技术与高频超声(HF -US)结合使用是一种多功能工具,可以实时,无创地评估目标组织的形态功能和分子信息,并绘制造影剂的分布图。最近,开发了许多新颖的纳米材料作为造影剂和/或药物递送系统。在这项工作中,我们报告结合了HF-US和PA成像,使用微泡和金纳米棒(GNR)作为血管造影剂来表征肿瘤微环境。向两只雄性结肠癌异种移植小鼠中静脉内注射大剂量50μL的未靶向微泡和大剂量150μL的GNRs溶液,并使用市售PA-US成像系统进行检测。皮下肿瘤尺寸通过B模式图像评估(146.48 mmn 2nand 24.56 mmn 2 n);估计不同的灌注参数,跟踪微泡(峰值增强图;到达峰值的时间51,3s,58,7s和39s,洗入率35,5s,5,4s和109,4s,针对不同的肿瘤区域);通过一段时间内PA信号的幅度变化(注射后28分钟PA信号增加30%)评估GNR在肿瘤中的实时分布。 HF-US和PA成像的结合可以成为一种有效且无创的工具,用于体内和实时评估组织的生存能力,以可视化灌注图并监测药物/纳米颗粒的输送效率。靶向微泡和纳米粒子的使用可以为特定细胞表位和表型的实时作图开辟新途径。

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