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首页> 外文期刊>RSC Advances >Indocyanine-green-loaded microbubbles for localization of sentinel lymph node using near-infrared fluorescence/ultrasound imaging: a feasibility study
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Indocyanine-green-loaded microbubbles for localization of sentinel lymph node using near-infrared fluorescence/ultrasound imaging: a feasibility study

机译:使用近红外荧光/超声成像的吲哚菁 - 绿色负载微泡,用于近红外荧光/超声成像:可行性研究

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摘要

Current strategies for sentinel lymph node (SLN) biopsy to detect cancer metastasis have some limitations such as the associated radiation exposure and high false-negative rates due to rapid diffusion of the dye particles through the true SLNs to contiguous lymph nodes. In this study, we incorporated the clinically used indocyanine green (ICG) into biocompatible poly (lactic- co -glycolic acid) (PLGA) microbubbles, and filled these with perfluorocarbon gas to form near-infrared (NIR) fluorescent polymer (ICG-PLGA) microbubbles for more efficient sentinel lymph node imaging. With the encapsulation of ICG into PLGA, the photo-stability of aqueous ICG solution was markedly enhanced at both room- and body-temperature, and could be concurrently used as a contrast media to enhance near-infrared fluorescence (NIRF) imaging and ultrasound (US) imaging signals. Upon subcutaneous injection into the front paw of a mouse, ICG-PLGA microbubbles translocated via lymphatic vessels into SLNs within 5 min; the associated NIR fluorescent signal intensity and retention time in lymph node was superior to that achieved with use of ICG alone. Further, ICG-PLGA microbubbles enhanced ultrasonographic contrast of popliteal lymph nodes of rabbits, unlike a simple ICG solution. Use of ICG-PLGA microbubbles improved efficacy of SLN imaging in this study; their use as imaging contrast agents for SLN mapping in humans is expected to be of much clinical relevance.
机译:Sentinel淋巴结(SLN)活组织检查检测癌症转移的当前策略具有一些限制,例如由于染料颗粒通过真正的SLNS到典型的淋巴结迅速扩散而导致的相关辐射暴露和高假阴性速率。在这项研究中,我们将临床用过的吲哚菁绿(ICG)纳入生物相容的聚(乳酸)微泡,并用全氟化物气体填充它们以形成近红外(NIR)荧光聚合物(ICG-PLGA )Microbubbles用于更高效的Sentinel淋巴结成像。随着ICG的封装进入PLGA,在室温和体温下,ICG水溶液的光稳定性显着增强,并且可以同时用作造影剂以增强近红外荧光(NIRF)成像和超声波(美国)成像信号。在皮下注射到小鼠的前爪时,ICG-PLGA微泡通过淋巴管旋转到5分钟内的SLNS;淋巴结中的相关的NIR荧光信号强度和保留时间优于使用ICG来实现的。此外,与简单的ICG溶液不同,ICG-PLGA微泡增强了Popliteal淋巴结的超声波对比度。使用ICG-PLGA Microbubbles改善了SLN成像在本研究中的功效;它们用作人类中SLN映射的成像对比剂的用途预计将具有大量临床相关性。

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