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为增强生物成像而对近红外荧光染料进行的空间位阻保护。

Steric protection of near-infrared fluorescent dyes for enhanced bioimaging.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

J Mater Chem B. 2024 Aug 28;12(34):8310-8320. doi: 10.1039/d4tb01281j.

Abstract

Near-fluorescent (NIR) dyes that absorb and emit light in the wavelength range of 650-1700 nm are well-suited for bioimaging due to the improved image contrast and increased penetration of the long-wavelength light through biological tissue. However, the imaging performance of NIR fluorescent dyes is limited by several inherent photophysical and physicochemical properties including, low fluorescence quantum yield, high chemical and photochemical reactivity, propensity to self-aggregate in water, non-specific association with off-target biological sites, and non-optimal pharmacokinetic profiles in living subjects. In principle, all these drawbacks can be alleviated by steric protection which is a structural process that surrounds the fluorophore with bulky groups that block undesired intermolecular interactions. The literature methods to sterically protect a long-wavelength dye can be separated into two general strategies, non-covalent dye encapsulation and covalent steric appendage. Illustrative examples of each method show how steric protection improves bioimaging performance by providing: (a) increased fluorescence brightness, (b) higher fluorophore ground state stability, (c) decreased photobleaching, and (d) superior pharmacokinetic profile. Some sterically protected dyes are commercially available and further success with future systems will require experts in chemistry, microscopy, cell biology, medical imaging, and clinical medicine to work closely as interdisciplinary teams.

摘要

近荧光(NIR)染料在 650-1700nm 的波长范围内吸收和发射光,由于长波长光在生物组织中的改善的图像对比度和增加的穿透深度,非常适合生物成像。然而,NIR 荧光染料的成像性能受到几个固有光物理和物理化学性质的限制,包括低荧光量子产率、高化学和光化学反应性、在水中自聚集的倾向、与非靶标生物部位的非特异性结合以及在活体中的非最佳药代动力学特征。原则上,所有这些缺点都可以通过空间位阻来缓解,空间位阻是一种将荧光团用大体积基团包围的结构过程,以阻止不需要的分子间相互作用。用于空间位阻保护长波长染料的文献方法可以分为两种一般策略,非共价染料包封和共价空间位阻附加物。每种方法的说明性实例表明,空间位阻如何通过提供以下方式来改善生物成像性能:(a)增加荧光亮度,(b)更高的荧光团基态稳定性,(c)减少光漂白,以及(d)更好的药代动力学特征。一些空间位阻保护的染料可商购获得,未来系统的进一步成功将需要化学、显微镜、细胞生物学、医学成像和临床医学方面的专家密切合作作为跨学科团队。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abdf/11353684/d6fc110df844/d4tb01281j-s1.jpg

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