Phosphorus dendrimers and photodynamic therapy. Spectroscopic studies on two dendrimer-photosensitizer complexes: Cationic phosphorus dendrimer with rose bengal and anionic phosphorus dendrimer with methylene blue

[Display omitted] Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and recently, photodynamic therapy as well. We investigated two dendrimer-photosensitizer systems in context of potential use of these systems in pho...

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Published inInternational journal of pharmaceutics Vol. 492; no. 1-2; pp. 266 - 274
Main Authors Dabrzalska, Monika, Zablocka, Maria, Mignani, Serge, Majoral, Jean Pierre, Klajnert-Maculewicz, Barbara
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 15.08.2015
Elsevier
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Abstract [Display omitted] Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and recently, photodynamic therapy as well. We investigated two dendrimer-photosensitizer systems in context of potential use of these systems in photodynamic therapy. The mixtures of an anionic phosphorus dendrimer of the second generation and methylene blue were studied by UV–vis spectroscopy while that of a cationic phosphorus dendrimer (third generation) and rose bengal were investigated by spectrofluorimetric methods. Spectroscopic analysis of these two systems revealed the formation of dendrimer-photosensitizer complexes via electrostatic interactions as well as π stacking. The stoichiometry of the rose bengal-cationic dendrimer complex was estimated to be 7:1 and 9:1 for the methylene blue-anionic dendrimer complex. The results suggest that these polyanionic or polycationic phosphorus dendrimers can be promising candidates as carriers in photodynamic therapy.
AbstractList Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and recently, photodynamic therapy as well. We investigated two dendrimer-photosensitizer systems in context of potential use of these systems in photodynamic therapy. The mixtures of an anionic phosphorus dendrimer of the second generation and methylene blue were studied by UV–vis spectroscopy while that of a cationic phosphorus dendrimer (third generation) and rose bengal were investigated by spectrofluorimetric methods. Spectroscopic analysis of these two systems revealed the formation of dendrimer-photosensitizer complexes via electrostatic interactions as well as π stacking. The stoichiometry of the rose bengal-cationic dendrimer complex was estimated to be 7:1 and 9:1 for the methylene blue-anionic dendrimer complex. The results suggest that these polyanionic or polycationic phosphorus dendrimers can be promising candidates as carriers in photodynamic therapy.
[Display omitted] Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and recently, photodynamic therapy as well. We investigated two dendrimer-photosensitizer systems in context of potential use of these systems in photodynamic therapy. The mixtures of an anionic phosphorus dendrimer of the second generation and methylene blue were studied by UV–vis spectroscopy while that of a cationic phosphorus dendrimer (third generation) and rose bengal were investigated by spectrofluorimetric methods. Spectroscopic analysis of these two systems revealed the formation of dendrimer-photosensitizer complexes via electrostatic interactions as well as π stacking. The stoichiometry of the rose bengal-cationic dendrimer complex was estimated to be 7:1 and 9:1 for the methylene blue-anionic dendrimer complex. The results suggest that these polyanionic or polycationic phosphorus dendrimers can be promising candidates as carriers in photodynamic therapy.
Author Klajnert-Maculewicz, Barbara
Zablocka, Maria
Majoral, Jean Pierre
Mignani, Serge
Dabrzalska, Monika
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Issue 1-2
Keywords PDT
PS
Photodynamic therapy
PPI
Phosphorus dendrimer
PpIX
Rose bengal
PAMAM
Methylene blue
RB
1cat
PEG
MB
ALA
ROS
Photosensitizer
Drug delivery system
1an
Language English
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Snippet [Display omitted] Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and...
Dendrimers due to their unique architecture may play an important role in drug delivery systems including chemotherapy, gene therapy and recently, photodynamic...
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StartPage 266
SubjectTerms Chemical Sciences
Coordination chemistry
Dendrimers - chemistry
Drug delivery system
Methylene blue
Methylene Blue - chemistry
Phosphorus - chemistry
Phosphorus dendrimer
Photochemotherapy
Photodynamic therapy
Photosensitizer
Photosensitizing Agents - chemistry
Rose bengal
Rose Bengal - chemistry
Spectrophotometry, Ultraviolet
Title Phosphorus dendrimers and photodynamic therapy. Spectroscopic studies on two dendrimer-photosensitizer complexes: Cationic phosphorus dendrimer with rose bengal and anionic phosphorus dendrimer with methylene blue
URI https://dx.doi.org/10.1016/j.ijpharm.2015.06.014
https://www.ncbi.nlm.nih.gov/pubmed/26117192
https://hal.science/hal-01923218
Volume 492
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