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Structural modification of NIR-II fluorophores for angiography beyond 1300 nm: Expanding the xanthene universe

Authors
Zhang, ChuangliAn, JusungWu, JiashengLiu, WeiminRha, HyeonjiKim, Jong SeungWang, Pengfei
Issue Date
1-12월-2022
Publisher
ELSEVIER ADVANCED TECHNOLOGY
Keywords
Xanthene derivatives; Reduced ACQ effect; Angiography; NIR-II fluorescence Imaging
Citation
BIOSENSORS & BIOELECTRONICS, v.217
Indexed
SCIE
SCOPUS
Journal Title
BIOSENSORS & BIOELECTRONICS
Volume
217
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/145619
DOI
10.1016/j.bios.2022.114701
ISSN
0956-5663
Abstract
Fluorescence bioimaging via the second near-infrared (NIR-II) window can provide precise images with a low background signal due to attenuated absorption and scattering in biological tissues. However, it is challenging to realize organic fluorophores' absorption/emission wavelength beyond 1300 nm depending on their intrinsic emission of monomers. Reducing parasitic aggregation caused quenching (ACQ) effect is expected as an efficient strategy to achieve fluorescence bioimaging in an ideal region. Herein, two NIR-II xanthene fluorophores (CM1 and CM2) with different side chains on identical skeletons were synthesized. Besides, their corresponding as-semblies (CM1 NPs and CM2 NPs) were subsequently prepared, which exhibited distinct spectroscopic prop-erties. Notably, CM2 NPs exhibited a significantly reduced ACQ effect with maximal absorption/emission extended to 1235/1250 nm. Molecular dynamics simulations revealed that intermolecular hydrogen bond, pi-pi interaction, and CH-pi interaction of CM2 were essential for the reduced ACQ effect. In vivo hindlimb angiography showed that CM2 NPs could distinguish the neighboring artery and vein in high resolution. Besides, CM2 NPs could achieve angiography beyond 1300 nm and even resolve capillaries as small as 0.23 mm. This study pro-vides a new strategy for reducing the ACQ effect by controlling different side chains of NIR-II xanthene dyes for angiography beyond 1300 nm.
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