Functionalized silica-based nanoparticles for photodynamic therapy.
Identifieur interne : 000089 ( PubMed/Checkpoint ); précédent : 000088; suivant : 000090Functionalized silica-based nanoparticles for photodynamic therapy.
Auteurs : Pierre Couleaud [France] ; Denise Bechet ; Régis Vanderesse ; Muriel Barberi-Heyob ; Anne-Charlotte Faure ; Stéphane Roux ; Olivier Tillement ; Sabine Porhel ; François Guillemin ; Céline FrochotSource :
- Nanomedicine (London, England) [ 1748-6963 ] ; 2011.
Descripteurs français
- KwdFr :
- Humains, Lignée cellulaire tumorale, Nanoparticules (), Neuropiline 1 (), Peptides (), Peptides (pharmacologie), Peptides (synthèse chimique), Photosensibilisants (), Photosensibilisants (pharmacologie), Photosensibilisants (synthèse chimique), Photothérapie dynamique (), Protéines recombinantes (), Silice (), Structure moléculaire, Survie cellulaire ().
- MESH :
- pharmacologie : Peptides, Photosensibilisants.
- synthèse chimique : Peptides, Photosensibilisants.
- Humains, Lignée cellulaire tumorale, Nanoparticules, Neuropiline 1, Peptides, Photosensibilisants, Photothérapie dynamique, Protéines recombinantes, Silice, Structure moléculaire, Survie cellulaire.
English descriptors
- KwdEn :
- Cell Line, Tumor, Cell Survival (drug effects), Humans, Molecular Structure, Nanoparticles (chemistry), Neuropilin-1 (chemistry), Peptides (chemical synthesis), Peptides (chemistry), Peptides (pharmacology), Photochemotherapy (methods), Photosensitizing Agents (chemical synthesis), Photosensitizing Agents (chemistry), Photosensitizing Agents (pharmacology), Recombinant Proteins (chemistry), Silicon Dioxide (chemistry).
- MESH :
- chemical , chemical synthesis : Peptides, Photosensitizing Agents.
- chemical , chemistry : Neuropilin-1, Peptides, Photosensitizing Agents, Recombinant Proteins, Silicon Dioxide.
- chemistry : Nanoparticles.
- drug effects : Cell Survival.
- methods : Photochemotherapy.
- chemical , pharmacology : Peptides, Photosensitizing Agents.
- Cell Line, Tumor, Humans, Molecular Structure.
Abstract
The strategy developed aims to favor the vascular effect of photodynamic therapy by targeting tumor-associated vascularization using peptide-functionalized nanoparticles. We previously described the conjugation of a photosensitizer to a peptide targeting neuropilin-1 overexpressed in tumor angiogenic vessels.
DOI: 10.2217/nnm.11.31
PubMed: 21726134
Affiliations:
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pubmed:21726134Le document en format XML
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<term>Photosensitizing Agents (pharmacology)</term>
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<term>Silicon Dioxide (chemistry)</term>
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<front><div type="abstract" xml:lang="en">The strategy developed aims to favor the vascular effect of photodynamic therapy by targeting tumor-associated vascularization using peptide-functionalized nanoparticles. We previously described the conjugation of a photosensitizer to a peptide targeting neuropilin-1 overexpressed in tumor angiogenic vessels.</div>
</front>
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<Abstract><AbstractText Label="AIM" NlmCategory="OBJECTIVE">The strategy developed aims to favor the vascular effect of photodynamic therapy by targeting tumor-associated vascularization using peptide-functionalized nanoparticles. We previously described the conjugation of a photosensitizer to a peptide targeting neuropilin-1 overexpressed in tumor angiogenic vessels.</AbstractText>
<AbstractText Label="MATERIALS & METHODS" NlmCategory="METHODS">In this study, we have designed and photophysically characterized a multifunctional nanoparticle consisting of a surface-localized tumor vasculature targeting peptides and encapsulated photodynamic therapy and imaging agents.</AbstractText>
<AbstractText Label="RESULTS & CONCLUSION" NlmCategory="CONCLUSIONS">The elaboration of these multifunctional silica-based nanoparticles is reported. Nanoparticles functionalized with approximately 4.2 peptides bound to recombinant neuropilin-1 protein. Nanoparticles conferred photosensitivity to cells overexpressing neuropilin-1, providing evidence that the chlorin grafted within the nanoparticle matrix can be photoactivated to yield photocytotoxic effects in vitro.</AbstractText>
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