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Functional wound dressing materials with highly tunable drug release properties

机译:具有高度可调药物释放性能的功能伤口敷料材料

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摘要

Wound dressings, capable of local controlled delivery of non-steroid anti-inflammatory pain-killing drugs (NSAIDs) to the wound bed, offer great potential to accelerate wound healing, hence increase the quality of patient life. With local NSAID delivery, unwanted side effects encountered in their systemic delivery, are drastically diminished. In this study, four functional fibrous wound dressing materials, namely viscose, alginate, sodium carboxymethyl cellulose (Na-CMC) and polyethylene terephthalate (PET) loaded with a NSAID, diclofenac sodium (DCF) are prepared, and their suitability to tune the release rate of DCF is evaluated. Through careful examination of material–drug combinations, in terms of their physicochemical properties (air permeability, wettability and water retention) and structural/morphological properties (infrared spectroscopy, wide angle X-ray scattering and scanning electron microscopy), possible wound care applications are proposed. In vitro release studies using an automated Franz diffusion cell system, combined with UV-Vis absorption spectroscopy for drug release profile determination, are performed as the final pre-formulation test. Results showed significant differences in the release profiles between different material–drug combinations, making the examined materials highly applicable for several wound care applications. The present study presents a novel cost effective approach for preparation of drug loaded wound dressing materials without a sacrifice in patient safety. Additionally, novel methods and material–drug combinations are introduced, paving the way for possible future wound treatment options.
机译:伤口敷料,能够局部控制的非类固醇抗炎止痛药(NSAIDs)对伤口床,提供促进伤口愈合的潜力,从而提高了患者生活的质量。随着当地的NSAID送货,在其系统交付中遇到的不必要的副作用急剧减少。在该研究中,制备了四种功能性纤维伤口敷料材料,即粘胶,海藻酸盐,羧甲基纤维素(Na-CMC)和加载与NSAID,双氯芬酸钠(DCF)的聚对苯二甲酸乙二醇酯(PET),并适合调整释放评估DCF的速率。通过仔细检查材料药物组合,就其物理化学性质(透气性,润湿性和水保持)和结构/形态学性能(红外光谱,广角X射线散射和扫描电子显微镜)而言,可能的伤口护理应用是建议的。使用自动化FRANZ扩散电池系统的体外释放研究,与UV-Vis吸收光谱合并用于药物释放曲线测定,作为最终预制剂测试进行。结果表明,不同材料 - 药物组合之间的释放型材差异显着差异,使得检查材料高度适用于多种伤口护理应用。本研究提出了一种新的成本有效的方法,用于制备药物负载伤口敷料材料,而不会牺牲患者安全性。此外,还引入了新的方法和材料 - 药物组合,为可能的未来伤口治疗方案铺平了道路。

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