Issue 22, 2020

Rhenium and technetium-complexed silicon rhodamines as near-infrared imaging probes for bimodal SPECT- and optical imaging

Abstract

Fluorescent Si-rhodamines were modified to enable complexation with the Re(I)- and 99mTc(I)-tricarbonyl core. The corresponding complexes exhibit suitable properties as bimodal imaging probes for SPECT- and optical imaging in vitro. Importantly, the novel in- aqueous-solution-stable, functionalized Si-rhodamines retain favourable optical properties after complexation (QY = 0.09, λabs = 654 nm, λem = 669 nm in PBS) and show promising near-infrared optical properties for potential in vivo applications enabling bimodal scintigraphic imaging and optical imaging, e.g. used in radio- and fluorescence-guided tumour resection.

Graphical abstract: Rhenium and technetium-complexed silicon rhodamines as near-infrared imaging probes for bimodal SPECT- and optical imaging

Supplementary files

Article information

Article type
Communication
Submitted
23 Mar 2020
Accepted
08 May 2020
First published
08 May 2020

Dalton Trans., 2020,49, 7294-7298

Rhenium and technetium-complexed silicon rhodamines as near-infrared imaging probes for bimodal SPECT- and optical imaging

T. Kanagasundaram, C. S. Kramer, E. Boros and K. Kopka, Dalton Trans., 2020, 49, 7294 DOI: 10.1039/D0DT01084G

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