Preparation and Investigation of Thermally Annealed Zein–Propolis Electrospun Nanofibers for Biomedical Applications

Author:

Hochheim Sabrina1ORCID,Sampaio Naiara M. F. M.1,da Cruz Anderson Fraga2,del Mercato Loretta L.3,D'Amone Eliana3,da Silva Bruno José Gonçalves1,Saul Cyro Ketzer4,de Oliveira Carolina Camargo2,Riegel‐Vidotti Izabel1

Affiliation:

1. Macromolecules and Interfaces Research Group, Department of Chemistry, Universidade Federal do Parana Av Cel Francisco H dos Santos, s/n Curitiba PR 81530 Brazil

2. Laboratory of Inflammatory and Neoplastic Cells Department of Cell Biology Section of Biological Sciences Universidade Federal do Parana Curitiba 81530 Brazil

3. Institute of Nanotechnology, National Research Council (CNR‐NANOTEC), c/o Campus Ecotekne via Monteroni Lecce 73100 Italy

4. Department of Physics Universidade Federal do Parana Curitiba 81530 Brazil

Abstract

AbstractZein, a corn‐derived protein, has a variety of applications ranging from drug delivery to tissue engineering and wound healing. This work aims to develop a biocompatible scaffold for dermal applications based on thermally annealed electrospun propolis‐loaded zein nanofibers. Pristine fibers' biocompatibility is determined in vitro. Next, propolis from Melipona quadrifasciata is added to the fibers at different concentrations (5% to 25%), and the scaffolds are studied. The physicochemical properties of zein/propolis precursor dispersions are evaluated and the results are correlated to the fibers' properties. Due to zein's and propolis' very favorable interactions, which are responsible for the increase in the dispersions surface tension, nanometric size ribbon‐like fibers ranging from 420 to 575 nm are obtained. The fiber's hydrophobicity is not dependent on propolis concentration and increases with the annealing procedure. Propolis inhibitory concentration (IC50) is determined as 61.78 µg mL−1. When loaded into fibers, propolis is gradually delivered to cells as Balb/3T3 fibroblasts and are able to adhere, grow, and interact with pristine and propolis‐loaded fibers, and cytotoxicity is not observed. Therefore, the zein–propolis nanofibers are considered biocompatible and safe. The results are promising and provide prospects for the development of wound‐healing nanofiber patches—one of propolis' main applications.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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