In vivo NIR-II fluorescence imaging for biology and medicine

F Wang, Y Zhong, O Bruns, Y Liang, H Dai - Nature Photonics, 2024‏ - nature.com
Owing to reduced light scattering and tissue autofluorescence, in vivo fluorescence imaging
in the 1,000–3,000-nm near-infrared II (NIR-II) spectral range can afford non-invasive …

Near-infrared luminescence high-contrast in vivo biomedical imaging

Y Chen, S Wang, F Zhang - Nature Reviews Bioengineering, 2023‏ - nature.com
Luminescence imaging in biomedical research has allowed new insights into the
architecture of pathological tissues, signalling networks and cell interactions, and is now …

Design of NIR-II high performance organic small molecule fluorescent probes and summary of their biomedical applications

X Liu, B Yu, Y Shen, H Cong - Coordination Chemistry Reviews, 2022‏ - Elsevier
Near-infrared fluorescence imaging has gained a lot of attention in biomedicine by virtue of
its high sensitivity, high specificity, and many other advantages. Moreover, near-infrared II …

NIRII‐HDs: A Versatile Platform for Develo** Activatable NIR‐II Fluorogenic Probes for Reliable In Vivo Analyte Sensing

Z Qin, TB Ren, H Zhou, X Zhang, L He… - Angewandte Chemie …, 2022‏ - Wiley Online Library
Small‐molecule‐based second near‐infrared (NIR‐II) activatable fluorescent probes can
potentially provide a high target‐to‐background ratio and deep tissue penetration. However …

Machine‐Learning‐Assisted Rational Design of Si─ Rhodamine as Cathepsin‐pH‐Activated Probe for Accurate Fluorescence Navigation

FF **ang, H Zhang, YL Wu, YJ Chen, YZ Liu… - Advanced …, 2024‏ - Wiley Online Library
High‐performance fluorescent probes stand as indispensable tools in fluorescence‐guided
imaging, and are crucial for precise delineation of focal tissue while minimizing unnecessary …

Second near-infrared window fluorescence nanoprobes for deep-tissue in vivo multiplexed bioimaging

Y Yang, Y **e, F Zhang - Advanced drug delivery reviews, 2023‏ - Elsevier
In vivo multiplexed bioimaging in the second near-infrared window (NIR-II, 1000–1700 nm),
owing to its superiorities of simultaneous multi-channel (multicolor) observations for multiple …

Noninvasive in vivo microscopy of single neutrophils in the mouse brain via NIR-II fluorescent nanomaterials

Y Chen, Y Yang, F Zhang - Nature Protocols, 2024‏ - nature.com
In vivo microscopy of single cells enables following pathological changes in tissues,
revealing signaling networks and cell interactions critical to disease progression. However …

An overview on recent advances of reversible fluorescent probes and their biological applications

Y Huang, X Cao, Y Deng, X Ji, W Sun, S **a, S Wan… - Talanta, 2024‏ - Elsevier
Due to the simplicity and low detection limit, fluorescent probes are widely used in both
analytical sensing and optical imaging. Compared to conventional fluorescent probes …

An activatable phototheranostic nanoplatform for tumor specific NIR‐II fluorescence imaging and synergistic NIR‐II photothermal‐chemodynamic therapy

Y Dai, F Zhang, K Chen, Z Sun, Z Wang, Y Xue, M Li… - Small, 2023‏ - Wiley Online Library
The phototheranostics in the second near‐infrared window (NIR‐II) have proven to be
promising for the precise cancer theranostics. However, the non‐responsive and “always …

Expanding NIR-II lanthanide toolboxes for improved biomedical imaging and detection

X Zhu, H Zhang, F Zhang - Accounts of Materials Research, 2023‏ - ACS Publications
Conspectus Optical imaging with high spatiotemporal resolution has been developed as a
vital technology to reveal biological mysteries. Researchers have made countless profound …