Developing affordable and accessible pro-angiogenic wound dressings; incorporation of 2 deoxy D-ribose (2dDR) into cotton fibres and wax-coated cotton fibres
- PMID: 32473079
- DOI: 10.1002/term.3072
Developing affordable and accessible pro-angiogenic wound dressings; incorporation of 2 deoxy D-ribose (2dDR) into cotton fibres and wax-coated cotton fibres
Abstract
The absorption capacity of cotton dressings is a critical factor in their widespread use where they help absorb wound exudate. Cotton wax dressings, in contrast, are used for wounds where care is taken to avoid adhesion of dressings to sensitive wounds such as burn injuries. Accordingly, we explored the loading of 2-deoxy-D-ribose (2dDR), a small sugar, which stimulates angiogenesis and wound healing in normal and diabetic rats, into both types of dressings and measured the release of it over several days. The results showed that approximately 90% of 2dDR was released between 3 and 5 days when loaded into cotton dressings. For wax-coated cotton dressings, several methods of loading of 2dDR were explored. A strategy similar to the commercial wax coating methodology was found the best protocol which provided a sustained release over 5 days. Cytotoxicity analysis of 2dDR loaded cotton dressing showed that the dressing stimulated metabolic activity of fibroblasts over 7 days confirming the non-toxic nature of this sugar-loaded dressings. The results of the chick chorioallantoic membrane (CAM) assay demonstrated a strong angiogenic response to both 2dDR loaded cotton dressing and to 2dDR loaded cotton wax dressings. Both dressings were found to increase the number of newly formed blood vessels significantly when observed macroscopically and histologically. We conclude this study offers a simple approach to developing affordable wound dressings as both have the potential to be evaluated as pro-active dressings to stimulate wound healing in wounds where management of exudate or prevention of adherence to the wounds are clinical requirements.
Keywords: 2-deoxy-D-ribose (2dDR); angiogenesis; chick chorioallantoic membrane (CAM) assay; cotton dressings; wound healing.
© 2020 The Authors. Journal of Tissue Engineering and Regenerative Medicine published by John Wiley & Sons Ltd.
References
REFERENCES
-
- Ahluwalia, A., & Tarnawski, A. S. (2012). Critical Role of Hypoxia Sensor - HIF-1α in VEGF Gene Activation. Implications for Angiogenesis and Tissue Injury Healing. Current Medicinal Chemistry, 19, 90-97. https://doi.org/10.2174/092986712803413944
-
- Aldemir Dikici, B., Dikici, S., Reilly, G. C., MacNeil, S., & Claeyssens, F. (2019). A Novel Bilayer Polycaprolactone Membrane for Guided Bone Regeneration: Combining Electrospinning and Emulsion Templating. Materials, 12, 2643. https://doi.org/10.3390/ma12162643
-
- Azam, M., Dikici, S., Roman, S., Mehmood, A., Chaudhry, A. A., Rehman, U., … Yar, M. (2019). Addition of 2-deoxy-d-ribose to clinically used alginate dressings stimulates angiogenesis and accelerates wound healing in diabetic rats. Journal of Biomaterials Applications, 34, 463-475. https://doi.org/10.1177/0885328219859991
-
- Bessa, G., Melo-Reis, P. R., Araújo, L. A., Mrué, F., Freitas, G. B., Brandão, M. L., & Silva Júnior, N. J. (2015). Angiogenic activity of latex from Euphorbia tirucalli Linnaeus 1753 (Plantae, Euphorbiaceae). Brazilian Journal of Biology, 75, 752-758. https://doi.org/10.1590/1519-6984.01214
-
- Brown, N. S., & Bicknell, R. (1998). Thymidine phosphorylase, 2-deoxy-D-ribose and angiogenesis. The Biochemical Journal, 334, 1-8. https://doi.org/10.1042/bj3340001
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