Venkataprasanna K S, Prakash J, Mathapati Santosh S, Bharath G, Banat Fawzi, Venkatasubbu G Devanand
University of Tübingen, Tübingen, Germany.
Department of Nanotechnology, SRM Institute of Science and Technology, Kattankulathur, Chengalpattu Dist, Tamil Nadu, India.
Int J Biol Macromol. 2021 Dec 15;193(Pt B):1430-1448. doi: 10.1016/j.ijbiomac.2021.10.207. Epub 2021 Nov 3.
Wound healing is a multi-stage process that is dynamic, interactive, and complicated. However, many nanomaterials are employed to expedite wound healing by demonstrating antibacterial activity or boosting cell proliferation. But only one phase is focused during the wound healing process. As a result, there is a need for optimum wound dressing materials that promotes different wound healing cascades with ideal properties. Herein, Graphene Oxide loaded with vanadium (V) doped titanium dioxide (TiO) blended with chitosan, and polyvinyl alcohol (CS/PVA/GO/TiO-V) patch was developed for wound healing. XRD, FTIR and FE-SEM analyses were carried out to study the morphology and structural property of the patch. The fabricated patch has a high surface porosity, excellent moisture vapor transfer rate, appropriate swelling behaviour, and oxygen permeability, which results in an excellent moist environment for wound breathing and effective management of wound exudates. The antibacterial test showed significant antibacterial efficacy against wound infections in the presence of light when compared to dark. In-vitro analysis such as hemocompatibility, cytotoxicity, cell adhesion, and scratch assay show the predicted potential wound healing application with high biocompatibility. These results suggest that CS/PVA/GO/TiO-V patch provides a microenvironment favourable to cells' growth and differentiation and positively modulates full-thickness wounds' healing.
伤口愈合是一个动态、相互作用且复杂的多阶段过程。然而,许多纳米材料通过展现抗菌活性或促进细胞增殖来加速伤口愈合。但在伤口愈合过程中仅关注一个阶段。因此,需要具有理想特性、能促进不同伤口愈合级联反应的最佳伤口敷料材料。在此,制备了负载钒(V)掺杂二氧化钛(TiO)的氧化石墨烯与壳聚糖和聚乙烯醇混合的(CS/PVA/GO/TiO-V)贴片用于伤口愈合。进行了X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和场发射扫描电子显微镜(FE-SEM)分析以研究贴片的形态和结构特性。所制备的贴片具有高表面孔隙率、优异的水汽传输速率、适当的溶胀行为和氧气渗透性,这为伤口呼吸营造了极佳的湿润环境,并能有效处理伤口渗出物。抗菌测试表明,与黑暗环境相比,在光照下对伤口感染具有显著的抗菌效果。体外分析如血液相容性、细胞毒性、细胞黏附及划痕试验显示,该贴片具有高生物相容性,在伤口愈合方面具有预期的应用潜力。这些结果表明,CS/PVA/GO/TiO-V贴片提供了有利于细胞生长和分化的微环境,并对全层伤口的愈合产生积极调节作用。