Near-infrared (NIR) lanthanide molecular probes for bioimaging and biosensing

Y Ning, M Zhu, JL Zhang - Coordination Chemistry Reviews, 2019 - Elsevier
Recent advances in NIR detector bloom the design of NIR fluorophores for bioimaging
guided diagnosis and therapeutics, with reduced light-tissue interaction, enhanced signal-to …

Lanthanide porphyrinoids as molecular theranostics

GQ Jin, CV Chau, JF Arambula, S Gao… - Chemical Society …, 2022 - pubs.rsc.org
In recent years, lanthanide (Ln) porphyrinoids have received increasing attention as
theranostics. Broadly speaking, the term 'theranostics' refers to agents designed to allow …

Multiplexed biosensing and bioimaging using lanthanide-based time-gated forster resonance energy transfer

X Qiu, J Xu, M Cardoso Dos Santos… - Accounts of chemical …, 2022 - ACS Publications
Conspectus The necessity to scrutinize more and more biological molecules and
interactions both in solution and on the cellular level has led to an increasing demand for …

Lanthanide–tetrapyrrole complexes: synthesis, redox chemistry, photophysical properties, and photonic applications

WL Chan, C Xie, WS Lo, JCG Bünzli… - Chemical Society …, 2021 - pubs.rsc.org
Tetrapyrrole derivatives such as porphyrins, phthalocyanines, naphthalocyanines, and
porpholactones, are highly stable macrocyclic compounds that play important roles in many …

Joining the journey to near infrared (NIR) imaging: the emerging role of lanthanides in the designing of molecular probes

GQ Jin, Y Ning, JX Geng, ZF Jiang, Y Wang… - Inorganic Chemistry …, 2020 - pubs.rsc.org
Near-infrared (NIR, 700–1700 nm) bioimaging has gained considerable attention in recent
years owing to its high imaging resolution and increasing penetration depth of tissues. NIR …

Bioorthogonal Lanthanide Molecular Probes for Near‐Infrared Fluorescence and Mass Spectrometry Imaging

GQ Jin, D Sun, X Xia, ZF Jiang, B Cheng… - Angewandte Chemie …, 2022 - Wiley Online Library
We report here the development of clickable and highly near‐infrared (NIR) fluorescent
lanthanide (Ln) complexes for bioorthogonal labeling of biomolecules. These azide‐or …

Chemiluminescent duplex analysis using phenoxy-1, 2-dioxetane luminophores with color modulation

S Gutkin, R Tannous, Q Jaber, M Fridman… - Chemical Science, 2023 - pubs.rsc.org
Multiplex technology is an important emerging field, in diagnostic sciences, that enables the
simultaneous detection of several analytes in a single sample. The light-emission spectrum …

Multiplex and in vivo optical imaging of discrete luminescent lanthanide complexes enabled by in situ cherenkov radiation mediated energy transfer

KE Martin, AG Cosby, E Boros - Journal of the American Chemical …, 2021 - ACS Publications
Recently, we pioneered the application of Cherenkov radiation (CR) of radionuclides for the
in situ excitation of discrete Eu (III) and Tb (III) complexes. CR is produced by isotopes …

Nonlinear optoelectronic processes in organic optoelectronic devices: Triplet-triplet annihilation and singlet fission

X Qiao, D Ma - Materials Science and Engineering: R: Reports, 2020 - Elsevier
Organic semiconductors with optoelectronic properties have attracted intensive interests in
the fields of organic light-emitting diodes, organic photovoltaics and organic photodetectors …

Fluorescence lifetime imaging of upper gastrointestinal pH in vivo with a lanthanide based near-infrared τ probe

Y Ning, S Cheng, JX Wang, YW Liu, W Feng, F Li… - Chemical …, 2019 - pubs.rsc.org
Time-resolved fluorescence lifetime imaging (FLIM) in the near-infrared region of 900–1700
nm not only allows a deep tissue penetration depth but also offers the unique benefit of the …