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Mucoadhesive electrospun nanofibers for drug delivery systems: applications of polymers and the parameters’ roles

机译:用于药物输送系统的粘膜粘着性静电纺丝纳米纤维:聚合物的应用和参数的作用

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摘要

Electrospun nanofibers have been widely studied for many medical applications. They can be designed with specific features, including mucoadhesive properties. This review summarizes the polymeric scaffolds obtained by the electrospinning process that has been applied for drug release in different mucosal sites such as oral, ocular, gastroenteric, vaginal, and nasal. We analyzed the electrospinning parameters that have to be optimized to create reproducible and efficient mucoadhesive nanofibers, among them are: electrical field, polymer concentration, viscosity, flow rate, needle-collector distance, solution conductivity, solvent, environmental parameters, and electrospinning setup. We also revised the mucoadhesive theories as well as the mucoadhesive properties of the polymers used. This review shows that the most studied mucosal site is the oral cavity, because it is accessible and easy to evaluate, while the rest are uncomfortable for the patient and difficult to assess in vivo. We found problems that need to be solved for mucoadhesive electrospun nanofibers, such as improving adhesion strength and mucosal permanence time, and the design of unidirectional release, multilayer systems for the treatment of several pathologies, to ensure the drug concentration in the tissue or target organ.
机译:电纺纳米纤维已被广泛研究用于许多医疗应用。它们可以设计成具有特定的功能,包括粘膜粘附特性​​。这篇综述总结了通过静电纺丝工艺获得的聚合物支架,该支架已被用于在不同的粘膜部位释放药物,例如口腔,眼,胃肠,阴道和鼻腔。我们分析了必须优化以创建可重现和高效的粘膜粘附纳米纤维的静电纺丝参数,其中包括:电场,聚合物浓度,粘度,流速,针头收集器距离,溶液电导率,溶剂,环境参数和静电纺丝设置。我们还修订了粘膜粘附理论以及所用聚合物的粘膜粘附特性​​。这项审查表明,研究最多的粘膜部位是口腔,因为它易于接近且易于评估,而其余部位对患者则不舒服且难以在体内进行评估。我们发现粘膜粘附电纺纳米纤维需要解决的问题,例如提高粘附强度和粘膜持久性,以及设计单向释放,多层系统以治疗多种病理情况,以确保组织或靶器官中的药物浓度。

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