Antibacterial activity against Staphylococcus aureus of chitosan/chondroitin sulfate nanocomplex aerogels alone and enriched with erythromycin and elephant garlic (Allium ampeloprasum L. var. ampeloprasum) extract

Author:

Gómez María Angélica1,Bonilla Jennifer Marcela1,Coronel María Alejandra1,Martínez Jonathan1,Morán-Trujillo Luis2,Orellana Sandra L.2,Vidal Alejandra3,Giacaman Annesi3,Morales Carlos2,Torres-Gallegos César2,Concha Miguel3,Oyarzun-Ampuero Felipe4,Godoy Patricio5,Lisoni Judit G.6,Henríquez-Báez Carla6,Bustos Carlos2,Moreno-Villoslada Ignacio7

Affiliation:

1. Facultad de Ciencias de la Salud , Universidad Colegio Mayor de Cundinamarca , Bogotá , Colombia

2. Instituto de Ciencias Químicas, Facultad de Ciencias , Universidad Austral de Chile , Valdivia , Chile

3. Instituto de Anatomía, Histología y Patología, Facultad de Medicina , Universidad Austral de Chile , Valdivia , Chile

4. Department of Sciences and Pharmaceutical Technologies , Universidad de Chile , Santiago , Chile

5. Instituto de Microbiología Clínica, Facultad de Medicina , Universidad Austral de Chile , Valdivia , Chile

6. Instituto de Ciencias Físicas y Matemáticas, Facultad de Ciencias , Universidad Austral de Chile , Valdivia , Chile

7. Instituto de Ciencias Químicas, Facultad de Ciencias , Universidad Austral de Chile , Isla Teja, Casilla 567 , Valdivia , Chile , Tel.: +56 63 2293520

Abstract

Abstract The antibacterial activity against Staphylococcus aureus of aerogels fabricated from colloidal suspensions of chitosan/chondroitin sulfate nanocomplexes is analyzed. Upon freeze-drying the colloidal suspensions, the aerogels presented a porous structure made of microsheets and microfibers. The aerogels could, in addition, be loaded with antimicrobial agents. Loaded with the antibiotic erythromycin, the aerogels showed crystalline deposits, affecting the topography of the samples as well as their mechanical properties, showing a decrease on the apparent Young’s modulus and hardness at 40% deformation. Loaded with elephant garlic (Allium ampeloprasum L. var. ampeloprasum) extract, the aerogels showed texturization of the microsheets and microfibers, and the higher relative mass allowed an increase on the apparent Young’s modulus and hardness at 40% deformation with respect to pristine aerogels. Unloaded aerogels showed activity against Staphylococcus aureus, including a methicillin-resistant strain. The release of erythromycin from the aerogels to an agar environment is governed by equilibrium forces with the polysaccharides, which allow modulating the load of antibiotic and its concomitant diffusion from the material. The diffusion of the active components of the elephant garlic extract did not show a dependence on the polysaccharide content, revealing a week interaction. The elephant garlic extract resulted active against the methicillin-resistant Staphylococcus aureus strain, while resistance was found for the antibiotic, revealing the therapeutic potential of the natural extract. The antimicrobial aerogels may be used for several therapeutic purposes, such as healing of infected chronic wounds.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry

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