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荧光引导前哨淋巴结活检:从当前的分子探针到未来的多模态纳米探针。

Fluorescence Guided Sentinel Lymph Node Mapping: From Current Molecular Probes to Future Multimodal Nanoprobes.

机构信息

Department of Biomedical Engineering, College of Engineering , Peking University , Beijing 100871 , China.

Department of Medicines , Gujranwala Medical College , Gujranwala 52250 , Pakistan.

出版信息

Bioconjug Chem. 2019 Jan 16;30(1):13-28. doi: 10.1021/acs.bioconjchem.8b00812. Epub 2018 Dec 17.

Abstract

For SLN lymph node biopsy (SLNB), SLN mapping has become a standard of care procedure that can accurately locate the micrometastases disseminated from primary tumor sites to the regional lymph nodes. The broad array of SLN mapping has prompted the development of a wide range of SLN tracers, rationally designed for noninvasive and high-resolution imaging of SLNs. At present, conventional SLN imaging probes (blue dyes, radiocolloids, and few other small-molecular dyes), although serving the clinical needs, are often associated with major issues such as insufficient accumulation in SLN, short retention time, staining of the surgical field, and other adverse side effects. In a recent advancement, newly designed fluorescent nanoprobes are equipped with novel features that could be of high interest in SLN mapping such as (i) a unique niche that is not met by any other conventional SLN probes, (ii) their adoptable synthesis method, and (ii) excellent sensitivity facilitating high resolution SLN mapping. Most importantly, lots of effort has been devoted for translating the fluorescent nanoprobes into a clinical setup and also imparting the multimodal imaging abilities of nanoprobes for the excellent diagnosis of life-threatening diseases such as cancer. In this review, we will provide a detailed roadmap of the progress of a wide variety of current fluorescent molecular probes and emphasize the future of nanomaterial-based single/multimodal imaging probes that have true potential translation abilities for SLN mapping.

摘要

对于前哨淋巴结活检(SLNB),SLN 绘图已成为一种标准的护理程序,可以准确地定位从原发性肿瘤部位传播到区域淋巴结的微转移。广泛的 SLN 绘图促使开发了广泛的 SLN 示踪剂,这些示踪剂经过合理设计,可用于 SLN 的非侵入性和高分辨率成像。目前,常规的 SLN 成像探针(蓝色染料、放射性胶体和其他一些小分子染料)虽然满足了临床需求,但通常存在一些主要问题,如在 SLN 中的积累不足、保留时间短、手术区域染色和其他不良反应。在最近的一项进展中,新设计的荧光纳米探针具有独特的特性,这些特性可能对 SLN 绘图具有很高的兴趣,例如 (i) 独特的生态位,这是任何其他常规 SLN 探针都无法满足的,(ii) 可采用的合成方法,以及 (iii) 高灵敏度,有助于实现高分辨率的 SLN 绘图。最重要的是,人们付出了大量努力将荧光纳米探针转化为临床设置,并赋予纳米探针的多模态成像能力,以出色地诊断癌症等危及生命的疾病。在这篇综述中,我们将提供当前各种荧光分子探针的详细进展路线图,并强调基于纳米材料的单/多模态成像探针的未来,这些探针具有真正的潜在转化能力用于 SLN 绘图。

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