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  3. Bioactive nanoparticle-based formulations increase survival area of perforator flaps in a rat model.

Bioactive nanoparticle-based formulations increase survival area of perforator flaps in a rat model.

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DOI
10.7892/boris.121845
Publisher DOI
10.1371/journal.pone.0207802
PubMed ID
30475867
Abstract
BACKGROUND

Distal flap necrosis is a frequent complication of perforator flaps. Advances in nanotechnology offer exciting new therapeutic approaches. Anti-inflammatory and neo-angiogenic properties of certain metal oxides within the nanoparticles, including bioglass and ceria, may promote flap survival. Here, we explore the ability of various nanoparticle formulations to increase flap survival in a rat model.

MATERIALS AND METHODS

A 9 x 3 cm dorsal flap based on the posterior thigh perforator was raised in 32 Lewis rats. They were divided in 4 groups and treated with different nanoparticle suspensions: I-saline (control), II-Bioglass, III-Bioglass/ceria and IV-Zinc-doped strontium-substituted bioglass/ceria. On post-operative day 7, planimetry and laser Doppler analysis were performed to assess flap survival and various samples were collected to investigate angiogenesis, inflammation and toxicity.

RESULTS

All nanoparticle-treated groups showed a larger flap survival area as compared to the control group (69.9%), with groups IV (77,3%) and II (76%) achieving statistical significance. Blood flow measurements by laser Doppler analysis showed higher perfusion in the nanoparticle-treated flaps. Tissue analysis revealed higher number of blood vessels and increased VEGF expression in groups II and III. The cytokines CD31 and MCP-1 were decreased in groups II and IV.

CONCLUSIONS

Bioglass-based nanoparticles exert local anti-inflammatory and neo-angiogenic effects on the distal part of a perforator flap, increasing therefore its survival. Substitutions in the bioglass matrix and trace metal doping allow for further tuning of regenerative activity. These results showcase the potential utility of these nanoparticles in the clinical setting.
Date Issued
2018
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Author(s)
Lese, Ioana  orcid-logo
Universitätsklinik für Plastische- und Handchirurgie  
Department for BioMedical Research, Forschungsgruppe Plastische Chirurgie  
Graf, David Alexander
Tsai, Catherine
Taddeo, Adriano  orcid-logo
Department for BioMedical Research, Forschungsgruppe Handchirurgie  
Universitätsklinik für Plastische- und Handchirurgie, Handchirurgie und Chirurgie der peripheren Nerven  
Matter, Martin Tobias
Constantinescu, Mihai Adrian  
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie  
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie  
Universitätsklinik für Plastische- und Handchirurgie  
Herrmann, Inge Katrin
Olariu, Radu  
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie  
Department for BioMedical Research, Forschungsgruppe Plastische Chirurgie  
Additional Credits
Department for BioMedical Research, Forschungsgruppe Handchirurgie  
Department for BioMedical Research, Forschungsgruppe Plastische Chirurgie  
Universitätsklinik für Plastische- und Handchirurgie  
Universitätsklinik für Plastische- und Handchirurgie, Handchirurgie und Chirurgie der peripheren Nerven  
Universitätsklinik für Plastische- und Handchirurgie, Plastische, Rekonstruktive und Ästhetische Chirurgie  
Journal
PLoS ONE
Publisher
Public Library of Science
ISSN
1932-6203
Access(Rights)
open.access
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