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一种用于微生物感染成像的、与小靶向分子合成近红外荧光共轭物的简便且可重复的方法。

A Facile and Reproducible Synthesis of Near-Infrared Fluorescent Conjugates with Small Targeting Molecules for Microbial Infection Imaging.

作者信息

Reeßing Friederike, Bispo Mafalda, López-Álvarez Marina, van Oosten Marleen, Feringa Ben L, van Dijl Jan Maarten, Szymański Wiktor

机构信息

Department of Radiology, Medical Imaging Center, University of Groningen, University Medical Center Groningen, Hanzeplein 1, Groningen 9713GZ, The Netherlands.

Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, Groningen 9747 AG, The Netherlands.

出版信息

ACS Omega. 2020 Aug 26;5(35):22071-22080. doi: 10.1021/acsomega.0c02094. eCollection 2020 Sep 8.

Abstract

Optical imaging of microbial infections, based on the detection of targeted fluorescent probes, offers high sensitivity and resolution with a relatively simple and portable setup. As the absorbance of near-infrared (NIR) light by human tissues is minimal, using respective tracers, such as IRdye800CW, enables imaging deeper target sites in the body. Herein, we present a general strategy for the conjugation of IRdye800CW and IRdye700DX to small molecules (vancomycin and amphotericin B) to provide conjugates targeted toward bacterial and fungal infections for optical imaging and photodynamic therapy. In particular, we present how the use of coupling agents (such as HBTU or HATU) leads to high yields (over 50%) in the reactions of amines and IRDye-NHS esters and how precipitation can be used as a convenient purification strategy to remove excess of the targeting molecule after the reaction. The high selectivity of the synthesized model compound Vanco-800CW has been proven , and the development of analogous agents opens up new possibilities for diagnostic and theranostic purposes. In times of increasing microbial resistance, this research gives us access to a platform of new fluorescent tracers for the imaging of infections, enabling early diagnosis and respective treatment.

摘要

基于靶向荧光探针检测的微生物感染光学成像,通过相对简单且便携的装置提供了高灵敏度和分辨率。由于人体组织对近红外(NIR)光的吸收极小,使用诸如IRdye800CW等相应的示踪剂能够对体内更深的靶位点进行成像。在此,我们提出了一种将IRdye800CW和IRdye700DX与小分子(万古霉素和两性霉素B)偶联的通用策略,以提供针对细菌和真菌感染的偶联物用于光学成像和光动力治疗。特别是,我们展示了使用偶联剂(如HBTU或HATU)如何在胺与IRDye-NHS酯的反应中获得高产率(超过50%),以及沉淀如何用作一种方便的纯化策略,在反应后去除过量的靶向分子。已证实合成的模型化合物Vanco-800CW具有高选择性,类似试剂的开发为诊断和治疗诊断目的开辟了新的可能性。在微生物耐药性不断增加的时代,这项研究为我们提供了一个用于感染成像的新型荧光示踪剂平台,能够实现早期诊断和相应治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5d/7482087/80e921f01d97/ao0c02094_0002.jpg

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