首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Tumor Accumulation and Off-Target Biodistribution of an Indocyanine-Green Fluorescent Nanotracer: An Ex Vivo Study on an Orthotopic Murine Model of Breast Cancer
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Tumor Accumulation and Off-Target Biodistribution of an Indocyanine-Green Fluorescent Nanotracer: An Ex Vivo Study on an Orthotopic Murine Model of Breast Cancer

机译:诱导吲哚菁 - 绿色荧光纳米机的肿瘤积累和脱靶生物分布:乳腺癌原位小鼠模型的前体内研究

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摘要

Indocyanine green (ICG) is a near infrared fluorescent tracer used in image-guided surgery to assist surgeons during resection. Despite appearing as a very promising tool for surgical oncology, its employment in this area is limited to lymph node mapping or to laparoscopic surgery, as it lacks tumor targeting specificity. Recently, a nanoformulation of this dye has been proposed with the aim toward tumor targeting specificity in order to expand its employment in surgical oncology. This nanosystem is constituted by 24 monomers of H-Ferritin (HFn), which self-assemble into a spherical cage structure enclosing the indocyanine green fluorescent tracer. These HFn nanocages were demonstrated to display tumor homing due to the specific interaction between the HFn nanocage and transferrin receptor 1, which is overexpressed in most tumor tissues. Here, we provide an ex vivo detailed comparison between the biodistribution of this nanotracer and free ICG, combining the results obtained with the Karl Storz endoscope that is currently used in clinical practice and the quantification of the ICG signal derived from the fluorescence imaging system IVIS Lumina II. These insights demonstrate the suitability of this novel HFn-based nanosystem in fluorescence-guided oncological surgery.
机译:吲哚菁绿(ICG)是在图像引导手术中使用的近红外荧光示踪剂,用于协助切除过程中的外科医生。尽管出现了作为外科肿瘤的非常有前途的工具,但它在该地区的就业仅限于淋巴结映射或腹腔镜手术,因为它缺乏靶向靶向特异性。最近,已经提出了这种染料的纳米型靶向靶向靶向特异性的旨在扩大其在外科肿瘤中的就业。该纳米系统由24个H-铁蛋白(HFN)的单体构成,其自组装成封闭吲哚菁绿荧光示踪剂的球形笼子结构。证明这些HFN纳米病毒由于HFN纳米腔和转移素受体1之间的特异性相互作用而显示出肿瘤归乳,其在大多数肿瘤组织中过表达。在这里,我们提供了这种纳米分子器和游离ICG的生物分布之间的前体内比较,与当前用于临床实践中目前用于临床实践中的结果和源自荧光成像系统IVIS Lumina的ICG信号的定量所获得的结果之间的exvivo II。这些见解证明了这种新型HFN基纳米系统在荧光引导的肿瘤手术中的适用性。

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