Department of Ultrasound, The First Affiliated Hospital of Chongqing Medical University, Chongqing 400010, China.
Chongqing Key Laboratory of Ultrasound Molecular Imaging, Institute of Ultrasound Imaging, The Second Affiliated Hospital of Chongqing Medical University, Chongqing 400010, China.
Biomater Sci. 2022 Nov 8;10(22):6447-6459. doi: 10.1039/d2bm01140a.
Accurate sentinel lymph node (SLN) identification is an important prerequisite for sentinel lymph node biopsy (SLNB). However, existing SLN mapping techniques, mainly imaging-guided methods, are severely restricted by the high cost of the instruments, harmful radiation or unsatisfactory imaging depths. Herein, we prepared a new ultrasound contrast agent by filling perfluoropropane (CF) into chitosan polyacrylic acid nanobubbles for precise SLN identification. The obtained ultrasound contrast agent, coined CF-CS-PAA nanobubbles, presents a nanometer size with a diameter of approximately 120 nm. The CF-CS-PAA nanobubbles of desirable size are able to enter lymphatic vessels and accumulate in the sentinel lymph node to enhance ultrasound imaging. As a result, the injection of CF-CS-PAA nanobubbles can remarkably enhance the ultrasound imaging lymph system, providing image guidance for sentinel lymph node biopsy. Furthermore, it was shown that such CF-CS-PAA nanobubbles can effectively permeate into the tumor region the tumor-enhanced permeability and retention (EPR) effect to enhance tumor ultrasound imaging for monitoring tumorigenesis. This work highlights a novel nanoscale ultrasound contrast agent for the lymphatic system and tumor imaging, with great promise for subsequent studies and clinical applications.
准确的前哨淋巴结 (SLN) 识别是前哨淋巴结活检 (SLNB) 的重要前提。然而,现有的 SLN 定位技术主要是影像学引导方法,受到仪器成本高、放射性有害或成像深度不理想的严重限制。在此,我们通过将全氟丙烷 (CF) 填充到壳聚糖聚丙烯酸纳米气泡中来制备一种新的超声造影剂,用于精确的 SLN 识别。所得的超声造影剂命名为 CF-CS-PAA 纳米气泡,其尺寸为纳米级,直径约为 120nm。具有理想尺寸的 CF-CS-PAA 纳米气泡能够进入淋巴管并在前哨淋巴结中积聚,从而增强超声成像。因此,CF-CS-PAA 纳米气泡的注射可以显著增强超声成像的淋巴系统,为前哨淋巴结活检提供图像引导。此外,研究表明,这种 CF-CS-PAA 纳米气泡可以有效地渗透到肿瘤区域,利用肿瘤增强的通透性和滞留(EPR)效应来增强肿瘤的超声成像,以监测肿瘤的发生。这项工作突出了一种用于淋巴系统和肿瘤成像的新型纳米级超声造影剂,具有很大的后续研究和临床应用潜力。