THE CO-CULTURE OF KERATINOCYTES AND FIBROBLASTS ON A MULTI-LAYERED POLYESTER NANOFIBROUS MEMBRANE ENRICHED WITH PLATELET LYSATE

1 BLANQUER Andreu
Co-authors:
1 FILOVA Elena 2 JENCOVA Vera 1 BROZ Antonin 2 KUZELOVA KOSTAKOVA Eva 2 LISNENKO Maxim 3 PROCHAZKOVA Renata 1 BACAKOVA Lucie
Institutions:
1 Institute of Physiology of the Czech Academy of Sciences, Prague, Czech Republic, EU, andreu.blanquerjerez@fgu.cas.cz
2 Technical University of Liberec, Faculty of Sciences, Liberec, Czech Republic, EU, vera.jencova@tul.cz
3 Regional Hospital in Liberec, Liberec, Czech Republic, EU, renata.prochazkova@nemlib.cz
Conference:
13th International Conference on Nanomaterials - Research & Application, Orea Congress Hotel Brno, Czech Republic, EU, October 20 - 22, 2021
Proceedings:
Proceedings 13th International Conference on Nanomaterials - Research & Application
Pages:
234-239
ISBN:
978-80-88365-00-6
ISSN:
2694-930X
Published:
22nd November 2021
Proceedings of the conference were published in Scopus.
Metrics:
334 views / 221 downloads
Abstract

The prevalence of chronic wounds is increasing due to the population ageing and specific illnesses like diabetes mellitus and vascular diseases. Nanofibrous membranes fabricated using synthetic polymers are promising materials to enhance skin wound healing. PCL and PVA membranes are being studied to be used as scaffolds for skin tissue engineering and hydrogels for controlled drug delivery, respectively. The present study considers the development of a multi-layered membrane made of PCL and PVA loaded with platelet lysate (PL). PCL nanofibers allowed cell adhesion and growth, whereas PVA acted as a hydrogel that releases the bioactive compounds of platelet lysate. The cytocompatibility of the membranes containing PL and without it was demonstrated on two cell types involved in wound healing, i.e. keratinocytes and fibroblasts. Both cell types were able to adhere and proliferate on the membranes. In addition, the membrane containing PL enhanced the proliferation of fibroblasts. A co-culture study was also performed by seeding each cell type on one side of the membrane. The cells were co-cultured for 7 days and the results showed that PL increased the proliferation of cells achieving a monolayer of keratinocytes or fibroblasts on each side of the membrane. Thus, the beneficial effect of PCL-PVA+PL membranes on monocultures and co-cultures of skin cells was demonstrated, and these membranes can be considered potential scaffolds for treatment of chronic wounds.

Keywords: Skin wound healing, electrospun nanofibers, platelet lysate, keratinocytes, fibroblasts

© This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Scroll to Top