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用于从宏观到微观尺度的连续细胞示踪的溶酶体靶向生物探针。

Lysosome-Targeted Bioprobes for Sequential Cell Tracking from Macroscopic to Microscopic Scales.

机构信息

Gordon Center for Medical Imaging, Department of Radiology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, 02114, USA.

Interdisciplinary Program in Bioengineering and School of Chemical and Biological Engineering, Seoul National University, Seoul, 151-742, South Korea.

出版信息

Adv Mater. 2019 Apr;31(14):e1806216. doi: 10.1002/adma.201806216. Epub 2019 Feb 10.

Abstract

Longitudinal tracking of living cells is crucial to understanding the mechanism of action and toxicity of cell-based therapeutics. To quantify the presence of administered cells in the host tissue without sacrifice of animals, labeling of the target cells with a nontoxic and stable contrast agent is a prerequisite. However, such long-term live cell tracking is currently limited by the lack of fluorophores with steady optical and physicochemical properties in the near-infrared (NIR) window. Herein, for the first time, the design of fixable cell-tracking NIR fluorophores (CTNFs) with high optical properties, excellent cell permeation and retention, and high stability against chemical treatments is reported. Efficient cellular labeling and tracking of CTNFs using intraoperative optical fluorescence imaging by following the fate of NIR-labeled cells from the time of injection into animals to ex vivo cellular analysis after resection of the target tissue is demonstrated. Due to the lipophilic cationicity and primary amine docking group, CTNF126 outperforms the other tested fluorophores with rapid diffusion into the cytoplasmic membrane and sequestration inside the lysosomes, which prevents cellular efflux and improves cellular retention. Thus, CTNF126 will be useful to track cells in living organisms for the mechanism of action at the single cell level.

摘要

对基于细胞的治疗方法的作用机制和毒性进行深入研究,离不开对活细胞的长期追踪。为了在不处死动物的情况下,定量检测宿主组织中给药细胞的存在,需要用非毒性且稳定的对比剂对靶细胞进行标记。然而,目前由于缺乏近红外(NIR)窗口中具有稳定光学和物理化学性质的荧光团,这种长期的活细胞追踪受到了限制。在此,首次报道了具有高光物理性能、优异的细胞通透性和保留性以及对化学处理具有高稳定性的可固定细胞追踪近红外荧光团(CTNFs)的设计。通过对 NIR 标记细胞从注射到动物体内的时间到切除目标组织后的离体细胞分析,对 CTNFs 进行有效的细胞标记和追踪,实现了术中光学荧光成像。由于具有亲脂性阳离子性和伯胺对接基团,CTNF126 比其他经过测试的荧光团具有更快的扩散进入细胞质膜和被溶酶体隔离的能力,从而阻止了细胞外排并提高了细胞保留率。因此,CTNF126 将有助于在单细胞水平上对活体生物中的细胞进行跟踪,以研究其作用机制。

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本文引用的文献

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5
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