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Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity

Quinone methide precursors 1a–e, with different alkyl linkers between the naphthol and the naphthalimide chromophore, were synthesized. Their photophysical properties and photochemical reactivity were investigated and connected with biological activity. Upon excitation of the naphthol, Förster reson...

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Autores principales: Sambol, Matija, Benčić, Patricia, Erben, Antonija, Matković, Marija, Mihaljević, Branka, Piantanida, Ivo, Kralj, Marijeta, Basarić, Nikola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199699/
https://www.ncbi.nlm.nih.gov/pubmed/34199541
http://dx.doi.org/10.3390/molecules26113355
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author Sambol, Matija
Benčić, Patricia
Erben, Antonija
Matković, Marija
Mihaljević, Branka
Piantanida, Ivo
Kralj, Marijeta
Basarić, Nikola
author_facet Sambol, Matija
Benčić, Patricia
Erben, Antonija
Matković, Marija
Mihaljević, Branka
Piantanida, Ivo
Kralj, Marijeta
Basarić, Nikola
author_sort Sambol, Matija
collection PubMed
description Quinone methide precursors 1a–e, with different alkyl linkers between the naphthol and the naphthalimide chromophore, were synthesized. Their photophysical properties and photochemical reactivity were investigated and connected with biological activity. Upon excitation of the naphthol, Förster resonance energy transfer (FRET) to the naphthalimide takes place and the quantum yields of fluorescence are low (Φ(F) ≈ 10(−2)). Due to FRET, photodehydration of naphthols to QMs takes place inefficiently (Φ(R) ≈ 10(−5)). However, the formation of QMs can also be initiated upon excitation of naphthalimide, the lower energy chromophore, in a process that involves photoinduced electron transfer (PET) from the naphthol to the naphthalimide. Fluorescence titrations revealed that 1a and 1e form complexes with ct-DNA with moderate association constants K(a) ≈ 10(5)–10(6) M(−1), as well as with bovine serum albumin (BSA) K(a) ≈ 10(5) M(−1) (1:1 complex). The irradiation of the complex 1e@BSA resulted in the alkylation of the protein, probably via QM. The antiproliferative activity of 1a–e against two human cancer cell lines (H460 and MCF 7) was investigated with the cells kept in the dark or irradiated at 350 nm, whereupon cytotoxicity increased, particularly for 1e (>100 times). Although the enhancement of this activity upon UV irradiation has no imminent therapeutic application, the results presented have importance in the rational design of new generations of anticancer phototherapeutics that absorb visible light.
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spelling pubmed-81996992021-06-14 Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity Sambol, Matija Benčić, Patricia Erben, Antonija Matković, Marija Mihaljević, Branka Piantanida, Ivo Kralj, Marijeta Basarić, Nikola Molecules Article Quinone methide precursors 1a–e, with different alkyl linkers between the naphthol and the naphthalimide chromophore, were synthesized. Their photophysical properties and photochemical reactivity were investigated and connected with biological activity. Upon excitation of the naphthol, Förster resonance energy transfer (FRET) to the naphthalimide takes place and the quantum yields of fluorescence are low (Φ(F) ≈ 10(−2)). Due to FRET, photodehydration of naphthols to QMs takes place inefficiently (Φ(R) ≈ 10(−5)). However, the formation of QMs can also be initiated upon excitation of naphthalimide, the lower energy chromophore, in a process that involves photoinduced electron transfer (PET) from the naphthol to the naphthalimide. Fluorescence titrations revealed that 1a and 1e form complexes with ct-DNA with moderate association constants K(a) ≈ 10(5)–10(6) M(−1), as well as with bovine serum albumin (BSA) K(a) ≈ 10(5) M(−1) (1:1 complex). The irradiation of the complex 1e@BSA resulted in the alkylation of the protein, probably via QM. The antiproliferative activity of 1a–e against two human cancer cell lines (H460 and MCF 7) was investigated with the cells kept in the dark or irradiated at 350 nm, whereupon cytotoxicity increased, particularly for 1e (>100 times). Although the enhancement of this activity upon UV irradiation has no imminent therapeutic application, the results presented have importance in the rational design of new generations of anticancer phototherapeutics that absorb visible light. MDPI 2021-06-02 /pmc/articles/PMC8199699/ /pubmed/34199541 http://dx.doi.org/10.3390/molecules26113355 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sambol, Matija
Benčić, Patricia
Erben, Antonija
Matković, Marija
Mihaljević, Branka
Piantanida, Ivo
Kralj, Marijeta
Basarić, Nikola
Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title_full Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title_fullStr Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title_full_unstemmed Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title_short Photochemical Reactivity of Naphthol-Naphthalimide Conjugates and Their Biological Activity
title_sort photochemical reactivity of naphthol-naphthalimide conjugates and their biological activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8199699/
https://www.ncbi.nlm.nih.gov/pubmed/34199541
http://dx.doi.org/10.3390/molecules26113355
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