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A preliminary evaluation of self-made nanobubble in contrast-enhanced ultrasound imaging

机译:对比增强超声成像中纳米气泡的初步评估

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Nanoscale bubbles (nanobubbles) have been reported to improve contrast in tumor-targeted ultrasound imaging due to the enhanced permeation and retention effects at tumor vascular leaks. In this work, a self-made nanobubble ultrasound contrast agent was preliminarily characterized and evaluated in-vitro and in-vivo. Fundamental properties such as morphology appearance, size distribution, zeta potential, bubble concentration (bubble numbers per milliliter contrast agent suspension) and the stability of nanobubbles were assessed by light microscope and particle sizing analysis. Then the concentration intensity curve and time intensity curves (TICs) were acquired by ultrasound imaging experiment in-vitro. Finally, the contrast-enhanced ultrasonography was performed on rat to investigate the procedure of liver perfusion. The results showed that the nanobubbles had good shape and uniform distribution with the average diameter of 507.9 nm, polydispersity index (PDI) of 0.527, and zeta potential of -19.17 mV. Significant contrast enhancement was observed in in-vitro ultrasound imaging, demonstrating that the self-made nanobubbles can enhance the contrast effect of ultrasound imaging efficiently in-vitro. Slightly contrast enhancement was observed in in-vivo ultrasound imaging, indicating that the nanobubbles are not stable enough in-vivo. Future work will be focused on improving the ultrasonic imaging performance, stability, and antibody binding of the nanoscale ultrasound contrast agent.
机译:据报道,由于在肿瘤血管渗漏处增强的渗透和保留作用,纳米级气泡(纳米气泡)可改善肿瘤靶向超声成像的对比度。在这项工作中,对自制的纳米气泡超声造影剂进行了初步表征,并进行了体内和体外评估。通过光学显微镜和颗粒尺寸分析评估基本性质,例如形态外观,尺寸分布,ζ电势,气泡浓度(每毫升造影剂悬浮液的气泡数)和纳米气泡的稳定性。然后通过体外超声成像实验获得浓度强度曲线和时间强度曲线(TICs)。最后,在大鼠上进行了超声造影,以研究肝脏灌注的过程。结果表明,纳米气泡具有良好的形状和均匀的分布,平均直径为507.9 nm,多分散指数(PDI)为0.527,ζ电位为-19.17 mV。在体外超声成像中观察到明显的对比度增强,表明自制的纳米气泡可以在体外有效地增强超声成像的对比度效果。在体内超声成像中观察到轻微的对比度增强,表明纳米气泡在体内不够稳定。未来的工作将集中在改善超声成像性能,稳定性和纳米级超声造影剂的抗体结合上。

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