Chitosan/Gelatin Scaffolds Loaded with Jatropha mollissima Extract as Potential Skin Tissue Engineering Materials

Author:

de Souza Matheus Ferreira1ORCID,da Silva Henrique Nunes1ORCID,Rodrigues José Filipe Bacalhau1ORCID,Macêdo Maria Dennise Medeiros1ORCID,de Sousa Wladymyr Jefferson Bacalhau2ORCID,Barbosa Rossemberg Cardoso2,Fook Marcus Vinícius Lia2

Affiliation:

1. Postgraduate Program in Materials Science and Engineering, Department of Materials Engineering, Federal University of Campina Grande, Campina Grande 58429-900, PB, Brazil

2. Department of Materials Engineering, Federal University of Campina Grande, Campina Grande 58429-900, PB, Brazil

Abstract

This work aimed to develop chitosan/gelatin scaffolds loaded with ethanolic extract of Jatropha mollissima (EEJM) to evaluate the influence of its content on the properties of these structures. The scaffolds were prepared by freeze-drying, with different EEJM contents (0–10% (w/w)) and crosslinked with genipin (0.5% (w/w)). The EEJM were characterized through High Performance Liquid Chromatography coupled to a Diode Array Detector (HPLC-DAD), and the determination of three secondary metabolites contents was accomplished. The physical, chemical and biological properties of the scaffolds were investigated. From the HPLC-DAD, six main substances were evidenced, and from the quantification of the total concentration, the condensed tannins were the highest (431.68 ± 33.43 mg·g−1). Spectroscopy showed good mixing between the scaffolds’ components. Adding and increasing the EEJM content did not significantly influence the properties of swelling and porosity, but did affect the biodegradation and average pore size. The enzymatic biodegradation test showed a maximum weight loss of 42.89 within 28 days and reinforced the efficiency of genipin in crosslinking chitosan-based materials. The addition of the extract promoted the average pore sizes at a range of 138.44–227.67 µm, which is compatible with those reported for skin regeneration. All of the scaffolds proved to be biocompatible for L929 cells, supporting their potential application as skin tissue engineering materials.

Funder

Coordenação de Aperfeiçoamento de Pessoal de 472 Nível Superior

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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