Oleuropein multicompartment nanovesicles enriched with collagen as a natural strategy for the treatment of skin wounds connected with oxidative stress

Allaw M.;Manca M. L.
;
Manconi M.
Ultimo
2021-01-01

Abstract

Aim: Collagen-enriched transfersomes, glycerosomes and glytransfersomes were specifically tailored for skin delivery of oleuropein. Methods: Vesicles were prepared by direct sonication and their main physicochemical and technological properties were measured. Biocompatibility, protective effect and promotion of the healing of a wounded cell monolayer were tested in vitro using fibroblasts. Results: Vesicles were mainly multicompartment, small (∼108 nm), slightly polydispersed (approximately 0.27) and negatively charged (~-49 mV). Oleuropein was incorporated in high amounts (approximately 87%) and vesicles were stable during four months of storage. In vitro studies confirmed the low toxicity of formulations (viability ≥95%), their effectiveness in counteracting nitric oxide generation and damages caused by free oxygen radicals, especially when collagen glytransfersomes were used (viability ~100%). These vesicles also promoted the regeneration of a wounded area by promoting the proliferation and migration of fibroblasts. Conclusion: Collagen-enriched vesicles are promising formulations capable of speeding up the healing of the wounded skin.
2021
Inglese
16
26
2363
2376
14
Esperti anonimi
internazionale
scientifica
Collagen
Nitric oxide
Oleuropein
Oxidative damage
Phospholipid vesicles
Wound-healing activity
Fibroblasts
Iridoid Glucosides
Oxidative Stress
Skin
Collagen
Wound Healing
Allaw, M.; Manca, M. L.; Gomez-Fernandez, J. C.; Pedraz, J. L.; Terencio, M. C.; Sales, O. D.; Nacher, A.; Manconi, M.
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
8
reserved
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