Incorporation of Elastin to Improve Polycaprolactone-Based Scaffolds for Skeletal Muscle via Electrospinning

Author:

Perez-Puyana Victor,Villanueva Paula,Jiménez-Rosado MercedesORCID,de la Portilla Fernando,Romero AlbertoORCID

Abstract

Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number of studies that are focused on improving the scaffolds used for such regeneration, as well as the incubation protocol. The main objective of this work was to improve the characteristics of polycaprolactone (PCL) scaffolds by incorporating elastin to achieve better cell proliferation and biocompatibility. In addition, two cell incubation protocols (with and without dynamic mechanical stimulation) were evaluated to improve the activity and functionality yields of the regenerated cells. The results indicate that the incorporation of elastin generates aligned and more hydrophilic scaffolds with smaller fiber size. In addition, the mechanical properties of the resulting scaffolds make them adequate for use in both bioreactors and patients. All these characteristics increase the biocompatibility of these systems, generating a better interconnection with the tissue. However, due to the low maturation achieved in biological tests, no differences could be found between the incubation with and without dynamic mechanical stimulation.

Funder

Ministerio de Ciencia e Innovación, Gobierno de España

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference41 articles.

1. Allowable limits for toxic leachables: Practical use of ISO 10993-17 standard. The recommendations offered in this chapter should not be construed as guidance from the US Food and Drug Administration (FDA). The mention of commercial products, their sour;Brown,2012

2. Tissue Engineering and Its Potential Impact on Surgery

3. Biphasic calcium phosphates bioceramics (HA/TCP): Concept, physicochemical properties and the impact of standardization of study protocols in biomaterials research

4. A proposed protocol for the standardized preparation of PRF membranes for clinical use

5. A protocol for rheological characterization of hydrogels for tissue engineering strategies

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