New ICT-Based Ratiometric Two-Photon near Infrared Probe for Imaging Tyrosinase in Living Cells, Tissues, and Whole Organisms

Author:

Valverde-Pozo Javier1,Paredes Jose Manuel1ORCID,García-Rubiño Maria Eugenia1,Widmann Thomas J.2ORCID,Griñan-Lison Carmen234ORCID,Lobon-Moles Silvia1,Marchal Juan Antonio356ORCID,Alvarez-Pez Jose Maria1,Talavera Eva Maria1

Affiliation:

1. Nanoscopy-UGR Laboratory, Department of Physical Chemistry, Faculty of Pharmacy, Unidad de Excelencia en Quimica Aplicada a Biomedicina y Medioambiente (UEQ), University of Granada, C. U. Cartuja, 18071 Granada, Spain

2. GENYO, Centre for Genomics and Oncological Research, Pfizer/University of Granada/Andalusian Regional Government, 18016 Granada, Spain

3. Instituto de Investigación Biosanitaria (ibs.GRANADA), 18012 Granada, Spain

4. UGC de Oncología Médica, Complejo Hospitalario de Jaen, 23007 Jaen, Spain

5. Centre for Biomedical Research (CIBM), Biopathology and Regenerative Medicine Institute (IBIMER), University of Granada, 18100 Granada, Spain

6. Department of Human Anatomy and Embryology, Faculty of Medicine, University of Granada, 18016 Granada, Spain

Abstract

Melanoma is a type of highly malignant and metastatic skin cancer. In situ molecular imaging of endogenous levels of the melanoma biomarker tyrosinase (TYR) may decrease the likelihood of mortality. In this study, we proposed the weakly fluorescent probe 1-(4-(2-(4-(dicyanomethylene)-4H-chromen-2-yl)vinyl)phenyl)-3-(4-hydroxybenzyl)urea (DCM-HBU), which releases a strong red-shifted fluorescent signal after a TYR-mediated oxidation followed by hydrolysis of the urea linkage. The large Stokes shift of the dye is owed to the recovery of the intramolecular charge transfer (ICT) effect. The resulting probe derivate shows a highly ratiometric fluorescence output. Furthermore, the simultaneous excitation by two near-infrared (NIR) photons of the released derivative of dicyanomethylene-4H-pyran (DCM-NH2) fluorophore could avoid the usual drawbacks, such as cellular absorption, autofluorescence, and light scattering, due to an usually short wavelength of the excitation light on biological systems, resulting in images with deeper tissue penetration. In addition, the probe is useful for the quantitative sensing of TYR activity in vivo, as demonstrated in zebrafish larvae. This new ratiometric two-photon NIR fluorescent probe is expected to be useful for the accurate detection of TYR in complex biosystems at greater depths than other one-photon excited fluorescent probes.

Funder

Ministerio de Ciencia e Innovación

FEDER/Junta de Andalucía-Consejería de Transformación Económica, Industria, Conocimiento y Universidades/Proyecto

Consejería de Economía, Conocimiento, Empresas y Universidad de la Junta de Andalucía

FPU fellowship

senior postdoctoral stipend of the Consejería de Salud y Familias (CSyF) of the Regional Government of Andalusia, Spain

posdoctoral fellowship from Plan Andaluz de Investigación, Desarrollo e Innovación

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Analytical Chemistry

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