Cargando…

Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement

[Image: see text] With the aim of developing more stable Gd(III)–porphyrin complexes, two types of ligands 1 and 2 with carboxylic acid anchors were synthesized. Due to the N-substituted pyridyl cation attached to the porphyrin core, these porphyrin ligands were highly water-soluble and formed the c...

Descripción completa

Detalles Bibliográficos
Autores principales: Nemeth, Tamas, Yoshizawa-Sugata, Naoko, Pallier, Agnes, Tajima, Youichi, Ma, Yue, Tóth, Éva, Masai, Hisao, Yamakoshi, Yoko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nanjing University and American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10207321/
https://www.ncbi.nlm.nih.gov/pubmed/37235189
http://dx.doi.org/10.1021/cbmi.3c00007
_version_ 1785046427036024832
author Nemeth, Tamas
Yoshizawa-Sugata, Naoko
Pallier, Agnes
Tajima, Youichi
Ma, Yue
Tóth, Éva
Masai, Hisao
Yamakoshi, Yoko
author_facet Nemeth, Tamas
Yoshizawa-Sugata, Naoko
Pallier, Agnes
Tajima, Youichi
Ma, Yue
Tóth, Éva
Masai, Hisao
Yamakoshi, Yoko
author_sort Nemeth, Tamas
collection PubMed
description [Image: see text] With the aim of developing more stable Gd(III)–porphyrin complexes, two types of ligands 1 and 2 with carboxylic acid anchors were synthesized. Due to the N-substituted pyridyl cation attached to the porphyrin core, these porphyrin ligands were highly water-soluble and formed the corresponding Gd(III) chelates, Gd-1 and Gd-2. Gd-1 was sufficiently stable in neutral buffer, presumably due to the preferred conformation of the carboxylate-terminated anchors connected to nitrogen in the meta position of the pyridyl group helping to stabilize Gd(III) complexation by the porphyrin center. (1)H NMRD (nuclear magnetic relaxation dispersion) measurements on Gd-1 revealed high longitudinal water proton relaxivity (r(1) = 21.2 mM(–1) s(–1) at 60 MHz and 25 °C), which originates from slow rotational motion resulting from aggregation in aqueous solution. Under visible light irradiation, Gd-1 showed extensive photoinduced DNA cleavage in line with efficient photoinduced singlet oxygen generation. Cell-based assays revealed no significant dark cytotoxicity of Gd-1, while it showed sufficient photocytotoxicity on cancer cell lines under visible light irradiation. These results indicate the potential of this Gd(III)–porphyrin complex (Gd-1) as a core for the development of bifunctional systems acting as an efficient photodynamic therapy photosensitizer (PDT-PS) with magnetic resonance imaging (MRI) detection capabilities.
format Online
Article
Text
id pubmed-10207321
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Nanjing University and American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-102073212023-05-25 Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement Nemeth, Tamas Yoshizawa-Sugata, Naoko Pallier, Agnes Tajima, Youichi Ma, Yue Tóth, Éva Masai, Hisao Yamakoshi, Yoko Chem Biomed Imaging [Image: see text] With the aim of developing more stable Gd(III)–porphyrin complexes, two types of ligands 1 and 2 with carboxylic acid anchors were synthesized. Due to the N-substituted pyridyl cation attached to the porphyrin core, these porphyrin ligands were highly water-soluble and formed the corresponding Gd(III) chelates, Gd-1 and Gd-2. Gd-1 was sufficiently stable in neutral buffer, presumably due to the preferred conformation of the carboxylate-terminated anchors connected to nitrogen in the meta position of the pyridyl group helping to stabilize Gd(III) complexation by the porphyrin center. (1)H NMRD (nuclear magnetic relaxation dispersion) measurements on Gd-1 revealed high longitudinal water proton relaxivity (r(1) = 21.2 mM(–1) s(–1) at 60 MHz and 25 °C), which originates from slow rotational motion resulting from aggregation in aqueous solution. Under visible light irradiation, Gd-1 showed extensive photoinduced DNA cleavage in line with efficient photoinduced singlet oxygen generation. Cell-based assays revealed no significant dark cytotoxicity of Gd-1, while it showed sufficient photocytotoxicity on cancer cell lines under visible light irradiation. These results indicate the potential of this Gd(III)–porphyrin complex (Gd-1) as a core for the development of bifunctional systems acting as an efficient photodynamic therapy photosensitizer (PDT-PS) with magnetic resonance imaging (MRI) detection capabilities. Nanjing University and American Chemical Society 2023-05-12 /pmc/articles/PMC10207321/ /pubmed/37235189 http://dx.doi.org/10.1021/cbmi.3c00007 Text en © 2023 The Authors. Co-published by Nanjing University and American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Nemeth, Tamas
Yoshizawa-Sugata, Naoko
Pallier, Agnes
Tajima, Youichi
Ma, Yue
Tóth, Éva
Masai, Hisao
Yamakoshi, Yoko
Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title_full Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title_fullStr Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title_full_unstemmed Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title_short Water-Soluble Gd(III)–Porphyrin Complexes Capable of Both Photosensitization and Relaxation Enhancement
title_sort water-soluble gd(iii)–porphyrin complexes capable of both photosensitization and relaxation enhancement
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10207321/
https://www.ncbi.nlm.nih.gov/pubmed/37235189
http://dx.doi.org/10.1021/cbmi.3c00007
work_keys_str_mv AT nemethtamas watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT yoshizawasugatanaoko watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT pallieragnes watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT tajimayouichi watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT mayue watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT totheva watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT masaihisao watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement
AT yamakoshiyoko watersolublegdiiiporphyrincomplexescapableofbothphotosensitizationandrelaxationenhancement