Russell P S, Velivolu R, Maldonado Zimbrón V E, Hong J, Kavianinia I, Hickey A J R, Windsor J A, Phillips A R J
Applied Surgery and Metabolism Laboratory, School of Biological Sciences, Faculty of Science, University of Auckland, Auckland, New Zealand.
Surgical and Translational Research Centre, Department of Surgery, Faculty of Medical and Health Sciences, University of Auckland, Auckland, New Zealand.
Front Pharmacol. 2022 Jul 22;13:952581. doi: 10.3389/fphar.2022.952581. eCollection 2022.
The lymphatic system continues to gain importance in a range of conditions, and therefore, imaging of lymphatic vessels is becoming more widespread for research, diagnosis, and treatment. Fluorescent lymphatic imaging offers advantages over other methods in that it is affordable, has higher resolution, and does not require radiation exposure. However, because the lymphatic system is a one-way drainage system, the successful delivery of fluorescent tracers to lymphatic vessels represents a unique challenge. Each fluorescent tracer used for lymphatic imaging has distinct characteristics, including size, shape, charge, weight, conjugates, excitation/emission wavelength, stability, and quantum yield. These characteristics in combination with the properties of the target tissue affect the uptake of the dye into lymphatic vessels and the fluorescence quality. Here, we review the characteristics of visible wavelength and near-infrared fluorescent tracers used for lymphatic imaging and describe the various techniques used to specifically target them to lymphatic vessels for high-quality lymphatic imaging in both clinical and pre-clinical applications. We also discuss potential areas of future research to improve the lymphatic fluorescent tracer design.
淋巴系统在一系列病症中愈发重要,因此,淋巴管成像在研究、诊断和治疗方面的应用越来越广泛。荧光淋巴成像相较于其他方法具有诸多优势,如成本低廉、分辨率更高且无需接受辐射。然而,由于淋巴系统是单向引流系统,将荧光示踪剂成功输送至淋巴管是一项独特的挑战。用于淋巴成像的每种荧光示踪剂都具有独特的特性,包括大小、形状、电荷、重量、共轭物、激发/发射波长、稳定性和量子产率。这些特性与靶组织的性质共同影响染料在淋巴管中的摄取以及荧光质量。在此,我们综述用于淋巴成像的可见波长和近红外荧光示踪剂的特性,并描述在临床和临床前应用中用于将它们特异性靶向淋巴管以实现高质量淋巴成像的各种技术。我们还讨论了未来研究中改善淋巴荧光示踪剂设计的潜在领域。