Molecular Tuning of Cyanine 5 Dyes to Improve the Pharmacokinetic Profile of Nanobody-Based Fluorescent Tracers.

IF 4.9 Q1 CHEMISTRY, MEDICINAL
ACS Pharmacology and Translational Science Pub Date : 2025-05-28 eCollection Date: 2025-06-13 DOI:10.1021/acsptsci.5c00024
Łukasz Mateusiak, Dora M Chigoho, Sam Floru, Sofie Pollenus, Pieterjan Debie, Danny M van Willigen, Fijs W B van Leeuwen, Sophie Hernot
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Abstract

Over the past two decades, it has become evident that fluorescence imaging holds substantial value in preclinical research and could also play a pivotal role in clinical applications such as intraoperative molecular imaging. The latter relies on applying targeted fluorescent agents designed to recognize specific biomarkers expressed in diseased tissues. Targeting moieties, such as camelid-derived nanobodies (Nbs), exhibit remarkable pharmacokinetics for molecular imaging owing to their robustness and compact size. However, the relatively small size of Nbs makes their pharmacokinetics sensitive to the chemical structure of attached fluorophores. In this study, we conducted a comparative analysis between Nbs labeled with three different sulfoCy5 derivatives (Cy52- (charge -2), Cy5- (charge -1), and Cy5° (charge 0)). Nb-Cy52- and Nb-Cy5° allowed specific in vivo visualization of subcutaneous tumors in mice within 1 h with minimal background. Conversely, Nb-Cy5- required at least 3 h to achieve sufficient contrast and exhibited nonspecific liver accumulation. Remarkably, Nb-Cy52- was able to overcome the renal retention typically observed for Nbs. Microscopy analyses of kidney sections revealed differential accumulation for Nb-Cy52- and Nb-Cy5° at the level of the proximal tubule cells, with only Nb-Cy52- showing internalization in lysosomes and endosomes and subsequent metabolization. In conclusion, this study underscores the significant influence of dye charges on the biodistribution profile and tumor-targeting capabilities of Nb tracers. Among the tested variants, the fluorescent dye Cy52- emerged as a promising choice to use in combination with Nbs for molecular imaging applications, in particular due to its low renal retention.

菁5染料的分子调控以改善纳米体荧光示踪剂的药动学特征。
在过去的二十年中,荧光成像在临床前研究中具有重要的价值,并且在临床应用中也可以发挥关键作用,例如术中分子成像。后者依赖于应用靶向荧光剂来识别病变组织中表达的特定生物标志物。靶向部分,如骆驼源纳米体(Nbs),由于其坚固性和紧凑的尺寸,在分子成像中表现出显著的药代动力学。然而,Nbs相对较小的尺寸使其药代动力学对附着的荧光团的化学结构敏感。在本研究中,我们对三种不同的sulfoCy5衍生物(Cy52-(电荷-2),Cy5-(电荷-1)和Cy5°(电荷0))标记的Nbs进行了比较分析。Nb-Cy52-和Nb-Cy5°可以在最小背景下在1小时内对小鼠皮下肿瘤进行特异性体内可视化。相反,Nb-Cy5-需要至少3小时才能达到充分的造影剂,并表现出非特异性的肝脏积聚。值得注意的是,Nb-Cy52-能够克服Nbs通常观察到的肾潴留。肾脏切片的显微镜分析显示Nb-Cy52-和Nb-Cy5°在近端小管细胞水平的不同积累,只有Nb-Cy52-在溶酶体和核内体中内化并随后代谢。总之,本研究强调了染料电荷对Nb示踪剂的生物分布和肿瘤靶向能力的重要影响。在测试的变体中,荧光染料Cy52-成为与Nbs联合用于分子成像应用的有希望的选择,特别是由于其低肾潴留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Pharmacology and Translational Science
ACS Pharmacology and Translational Science Medicine-Pharmacology (medical)
CiteScore
10.00
自引率
3.30%
发文量
133
期刊介绍: ACS Pharmacology & Translational Science publishes high quality, innovative, and impactful research across the broad spectrum of biological sciences, covering basic and molecular sciences through to translational preclinical studies. Clinical studies that address novel mechanisms of action, and methodological papers that provide innovation, and advance translation, will also be considered. We give priority to studies that fully integrate basic pharmacological and/or biochemical findings into physiological processes that have translational potential in a broad range of biomedical disciplines. Therefore, studies that employ a complementary blend of in vitro and in vivo systems are of particular interest to the journal. Nonetheless, all innovative and impactful research that has an articulated translational relevance will be considered. ACS Pharmacology & Translational Science does not publish research on biological extracts that have unknown concentration or unknown chemical composition. Authors are encouraged to use the pre-submission inquiry mechanism to ensure relevance and appropriateness of research.
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