Polyphenol Iongel Patches with Antimicrobial, Antioxidant and Anti-Inflammatory Properties

Author:

Luque Gisela C.1,Moya Melissa23ORCID,Picchio Matias L.14ORCID,Bagnarello Vanessa25,Valerio Idalia236,Bolaños José2,Vethencourt María2,Gamboa Sue-Hellen36,Tomé Liliana C.7ORCID,Minari Roque J.18ORCID,Mecerreyes David49ORCID

Affiliation:

1. Instituto de Desarrollo Tecnológico para la Industria Química (INTEC), CONICET, Güemes 3450, Santa Fe 3000, Argentina

2. Laboratorio de Investigación, Universidad de Ciencias Médicas, San José 10108, Costa Rica

3. Facultad de Microbiología, Universidad de Ciencias Médicas, San José 10108, Costa Rica

4. POLYMAT, University of the Basque Country UPV/EHU, Joxe Mari Korta Center, Avda. Tolosa 72, 20018 Donostia-San Sebastian, Spain

5. Escuela de Fisioterapia, Universidad de Ciencias Médicas, San José 10108, Costa Rica

6. Facultad de Medicina, Universidad de Ciencias Médicas, San José 10108, Costa Rica

7. LAQV-REQUIMTE, Chemistry Department, NOVA School of Science and Technology, FCT NOVA, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal

8. Facultad de Ingeniería Química, Universidad Nacional del Litoral, Santiago del Estero 2829, Santa Fe 3000, Argentina

9. Ikerbasque, Basque Foundation for Science, 48013 Bilbao, Spain

Abstract

There is an actual need for developing materials for wound healing applications with anti-inflammatory, antioxidant, or antibacterial properties in order to improve the healing performance. In this work, we report the preparation and characterization of soft and bioactive iongel materials for patches, based on polymeric poly(vinyl alcohol) (PVA) and four ionic liquids containing the cholinium cation and different phenolic acid anions, namely cholinium salicylate ([Ch][Sal]), cholinium gallate ([Ch][Ga]), cholinium vanillate ([Ch][Van]), and cholinium caffeate ([Ch][Caff]). Within the iongels, the phenolic motif in the ionic liquids plays a dual role, acting as a PVA crosslinker and a bioactive compound. The obtained iongels are flexible, elastic, ionic conducting, and thermoreversible materials. Moreover, the iongels demonstrated high biocompatibility, non-hemolytic activity, and non-agglutination in mice blood, which are key-sought material specifications in wound healing applications. All the iongels have shown antibacterial properties, being PVA-[Ch][Sal], the one with higher inhibition halo for Escherichia Coli. The iongels also revealed high values of antioxidant activity due to the presence of the polyphenol, with the PVA-[Ch][Van] iongel having the highest activity. Finally, the iongels show a decrease in NO production in LPS-stimulated macrophages, with the PVA-[Ch][Sal] iongel displaying the best anti-inflammatory activity (>63% at 200 µg/mL).

Funder

Marie Sklodowska-Curie Research and Innovation Staff Exchanges

CONICET

ANPCyT

National University of the Litoral

Fundação para a Ciência e a Tecnologia

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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