Modulation of Epidermal Growth Factor Release by Biopolymer-Coated Liposomes

This work describes the development of polysaccharide-coated liposomes to modulate the delivery of epidermal growth factor (EGF), with the aim to produce different EGF release profiles depending on the milieu of infected wounds. For this purpose, cationic liposomes were coated with one layer of sodi...

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Published inJournal of pharmaceutical sciences Vol. 109; no. 7; pp. 2294 - 2301
Main Authors Parchen, Gabriela Pereira, Jacumazo, Joslaine, Koop, Heidegrid Siebert, Biscaia, Stellee Marcela Petris, Trindade, Edvaldo S., Silveira, Joana Léa Meira, de Freitas, Rilton Alves
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.07.2020
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Summary:This work describes the development of polysaccharide-coated liposomes to modulate the delivery of epidermal growth factor (EGF), with the aim to produce different EGF release profiles depending on the milieu of infected wounds. For this purpose, cationic liposomes were coated with one layer of sodium alginate (ALG) followed by one layer of chitosan (CHI) using the layer-by-layer (LbL) technique. The coated liposomes exhibited apparent hydrodynamic diameters of 278 ± 36 and 216 ± 96 nm for Lip-ALG and Lip-ALG-CHI, respectively. Thus, it appears that adding the CHI layer compacted the Lip-ALG one. The incorporation efficiency of EGF was a maximum of 55% for liposomes with a polymeric coating. In vitro release experiments showed that Lip-ALG-CHI exhibits a higher release rate constant under acidic pH conditions, resembling those of infected tissue. Using an ex vivo model of EGF release in porcine ear skin, these liposomes were found to accumulate in the epidermis. Thus, coated liposomes could represent a local EGF delivery mechanism to promote healing.
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ISSN:0022-3549
1520-6017
DOI:10.1016/j.xphs.2020.04.004