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Chitosan-Based Dressing As a Sustained Delivery System for Bioactive Cytokines

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2024 Jan 11
PMID 38203201
Authors
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Abstract

Wounds represent a common occurrence in human life. Consequently, scientific investigations are underway to advance wound healing methodologies, with a notable focus on dressings imbued with biologically active compounds capable of orchestrating the wound microenvironment through meticulously regulated release mechanisms. Among these bioactive agents are cytokines, which, when administered to the wound milieu without appropriate protection, undergo rapid loss of their functional attributes. Within the context of this research, we present a method for fabricating dressings enriched with G-CSF (granulocyte colony-stimulating factor) or GM-CSF (granulocyte-macrophage colony-stimulating factor), showcasing both biological activity and protracted release dynamics. Based on Ligasano, a commercial polyurethane foam dressing, and chitosan crosslinked with TPP (sodium tripolyphosphate), these dressings are noncytotoxic and enable cytokine incorporation. The recovery of cytokines from dressings varied based on the dressing preparation and storage techniques (without modification, drying, freeze-drying followed by storage at 4 °C or freeze-drying followed by storage at 24 °C) and cytokine type. Generally, drying reduced cytokine levels and their bioactivity, especially with G-CSF. The recovery of G-CSF from unmodified dressings was lower compared to GM-CSF (60% vs. 80%). In summary, our freeze-drying approach enables the storage of G-CSF or GM-CSF enriched dressings at 24 °C with minimal cytokine loss, preserving their biological activity and thus enhancing future clinical availability.

References
1.
Power G, Moore Z, OConnor T . Measurement of pH, exudate composition and temperature in wound healing: a systematic review. J Wound Care. 2017; 26(7):381-397. DOI: 10.12968/jowc.2017.26.7.381. View

2.
Friedrich E, Sun L, Natesan S, Zamora D, Christy R, Washburn N . Effects of hyaluronic acid conjugation on anti-TNF-α inhibition of inflammation in burns. J Biomed Mater Res A. 2013; 102(5):1527-36. PMC: 4119967. DOI: 10.1002/jbm.a.34829. View

3.
Karimi Dehkordi N, Minaiyan M, Talebi A, Akbari V, Taheri A . Nanocrystalline cellulose-hyaluronic acid composite enriched with GM-CSF loaded chitosan nanoparticles for enhanced wound healing. Biomed Mater. 2019; 14(3):035003. DOI: 10.1088/1748-605X/ab026c. View

4.
Liu H, Wang C, Li C, Qin Y, Wang Z, Yang F . A functional chitosan-based hydrogel as a wound dressing and drug delivery system in the treatment of wound healing. RSC Adv. 2022; 8(14):7533-7549. PMC: 9078458. DOI: 10.1039/c7ra13510f. View

5.
Vakilian S, Mashayekhan S, Shabani I, Khorashadizadeh M, Fallah A, Soleimani M . Structural stability and sustained release of protein from a multilayer nanofiber/nanoparticle composite. Int J Biol Macromol. 2015; 75:248-57. DOI: 10.1016/j.ijbiomac.2015.01.051. View