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用于术中生命结构识别的 BF-吖啶并吡咯荧光团。

BF-Azadipyrromethene Fluorophores for Intraoperative Vital Structure Identification.

机构信息

Department of Chemistry, Royal College of Surgeons in Ireland (RCSI), D02 PN40 Dublin 2, Ireland.

Precision Cancer Medicine Group, Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland (RCSI), D02 PN40 Dublin 2, Ireland.

出版信息

Molecules. 2023 Feb 25;28(5):2167. doi: 10.3390/molecules28052167.

Abstract

A series of mono- and bis-polyethylene glycol (PEG)-substituted BF-azadipyrromethene fluorophores have been synthesized with emissions in the near-infrared region (700-800 nm) for the purpose of fluorescence guided intraoperative imaging; chiefly ureter imaging. The Bis-PEGylation of fluorophores resulted in higher aqueous fluorescence quantum yields, with PEG chain lengths of 2.9 to 4.6 kDa being optimal. Fluorescence ureter identification was possible in a rodent model with the preference for renal excretion notable through comparative fluorescence intensities from the ureters, kidneys and liver. Ureteral identification was also successfully performed in a larger animal porcine model under abdominal surgical conditions. Three tested doses of 0.5, 0.25 and 0.1 mg/kg all successfully identified fluorescent ureters within 20 min of administration which was sustained up to 120 min. 3-D emission heat map imaging allowed the spatial and temporal changes in intensity due to the distinctive peristaltic waves of urine being transferred from the kidneys to the bladder to be identified. As the emission of these fluorophores could be spectrally distinguished from the clinically-used perfusion dye indocyanine green, it is envisaged that their combined use could be a step towards intraoperative colour coding of different tissues.

摘要

已经合成了一系列单取代和双取代的聚乙二醇(PEG)-取代 BF-偶氮二吡咯甲川荧光团,其发射波长在近红外区域(700-800nm),目的是荧光引导术中成像;主要是输尿管成像。荧光团的双 PEG 化导致更高的水荧光量子产率,PEG 链长为 2.9 至 4.6kDa 时最佳。在啮齿动物模型中可以进行荧光输尿管识别,通过比较输尿管、肾脏和肝脏的荧光强度,明显偏爱肾排泄。在腹部手术条件下的较大动物猪模型中也成功进行了输尿管识别。在给药 20 分钟内,三种测试剂量(0.5、0.25 和 0.1mg/kg)均成功识别了荧光输尿管,持续时间长达 120 分钟。3-D 发射热图成像可以识别由于尿液的独特蠕动波从肾脏转移到膀胱而导致的强度的空间和时间变化。由于这些荧光团的发射可以与临床使用的灌注染料吲哚菁绿在光谱上区分开来,因此可以设想它们的联合使用可能是实现不同组织术中颜色编码的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b72/10004488/c3c23f13d29c/molecules-28-02167-g001.jpg

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