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Polysaccharide Thin Solid Films for Analgesic Drug Delivery and Growth of Human Skin Cells

机译:用于人类皮肤细胞镇痛药物递送和生长的多糖固体薄膜

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Chronic wounds not only lower the patient`s quality of life significantly, but also present a huge financial burden for the healthcare systems around the world. Treatment of larger wounds often requires the use of more complex materials, which can ensure a successful renewal or replacement of damaged or destroyed tissues. Despite a range of advanced wound dressings that can facilitate wound healing, there are still no clinically used dressings for effective local pain management. Herein, alginate (ALG) and carboxymethyl cellulose (CMC), two of the most commonly used materials in the field of chronic wound care, and combination of ALG-CMC were used to create a model wound dressing system in the form of multi-layered thin solid films using the spin-assisted layer-by-layer (LBL) coating technique. The latter multi-layer system was used to incorporate and study the release kinetics of analgesic drugs such as diclofenac and lidocaine at physiological conditions. The wettability, morphology, physicochemical and surface properties of the coated films were evaluated using different surface sensitive analytical tools. The influence of in situ incorporated drug molecules on the surface properties (e.g. roughness) and on the proliferation of human skin cells (keratinocytes and skin fibroblasts) was further evaluated. The results obtained from this preliminary study should be considered as the basis for the development ‘real’ wound dressing materials and for 3D bio-printing applications.
机译:慢性伤口不仅大大降低了患者的生活质量,而且给全球医疗系统带来了巨大的经济负担。大伤口的治疗通常需要使用更复杂的材料,这可以确保成功更新或更换受损或破坏的组织。尽管有一系列先进的伤口敷料可以促进伤口愈合,但仍然没有可用于有效局部疼痛管理的临床敷料。在此,使用藻酸盐(ALG)和羧甲基纤维素(CMC),这是慢性伤口护理领域中最常用的两种材料,并结合使用ALG-CMC来创建多层形式的模型伤口敷料系统使用自旋辅助逐层(LBL)涂层技术形成的固体薄膜。后者的多层系统用于结合和研究止痛药(如双氯芬酸和利多卡因)在生理条件下的释放动力学。使用不同的表面敏感性分析工具评估了涂膜的润湿性,形态,物理化学和表面性质。进一步评估了原位掺入的药物分子对表面性质(例如粗糙度)和对人皮肤细胞(角质形成细胞和皮肤成纤维细胞)增殖的影响。这项初步研究获得的结果应被视为开发“真实”伤口敷料和3D生物打印应用的基础。

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