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Fabrication of Electrospun Mucoadhesive Membranes for Therapeutic Applications in Oral Medicine

机译:静电淘粘膜制备口腔医学治疗应用

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摘要

Oral mucosal lesions are related to several etiologies, including trauma, infection, and immunologic and neoplastic diseases. Their prevalence varies greatly depending on ethnicity, gender, and exposure to risk factors. Currently, most oral mucosal lesions are treated with creams, mouthwashes, or gels containing suitable drugs. However, topical medications may be relatively ineffective as they are removed rapidly from oral surfaces, limiting drug contact times. Systemic medications might be more effective but are associated with unacceptable off-target side effects. The aim of this study was to produce novel polymeric mucoadhesive membranes for therapeutic applications on the oral mucosa using electrospinning. Poly(vinylpyrrolidone) (PVP) and Eudragit RS100 (RS100) were used for the fabrication of membranes, whereas dextran (Dex) or poly(ethylene oxide) (PEO) particles were incorporated to enhance their mucoadhesive properties. An electrospun poly(caprolactone) (PCL) backing layer (BL) was added to create a dual-layer system. Solution properties were studied using rheometry, and membranes were characterized using differential thermal analysis and scanning electron microscopy. Solubility, surface hydrophobicity, and adhesion properties were also investigated. The solution viscosity varied depending on the composition and concentration, affecting fiber production. The addition of RS100 to PVP resulted in reduced membrane porosity and solubility, and increased surface hydrophobicity and in vitro adhesion times. Dex and PEO particles were located on the surface of the fibers. A PCL BL was successfully produced, with enhanced attachment between layers achieved through thermal treatment. PVP homopolymer membranes did not adhere to plastic or porcine mucosa, whereas PVP/RS100 membranes with and without PEO or Dex were tightly adherent. In conclusion, PVP and RS100 may be combined to tailor membrane properties. Furthermore, electrospinning facilitated the production of membranes consisting of mucoadhesive-fabricated fibers displaying increased surface area and long-lasting adhesive properties. These novel compositions exhibit great potential for the fabrication of mucoadhesive patches for therapeutic applications in oral medicine.
机译:口腔粘膜病变与几种病因有关,包括创伤,感染和免疫学和肿瘤疾病。他们的患病率取决于种族,性别和暴露于风险因素。目前,大多数口腔粘膜病变用乳膏,漱口水或含有合适药物的凝胶处理。然而,局部药物可能相对无效,因为它们从口腔表面迅速移除,限制药物接触时间。系统性药物可能更有效,但与不可接受的偏离目标副作用有关。本研究的目的是生产用于使用静电纺丝在口腔粘膜上的治疗应用的新型聚合物粘膜膜。聚(乙烯基吡咯烷酮)(PVP)和Eudragit RS100(RS100)用于制造膜,而葡聚糖(DEX)或聚(环氧乙烷)(乙烯)颗粒(PEO)颗粒含有以增强它们的粘接性能。加入电纺聚(己内酯)(PCL)背衬层(BL)以产生双层系统。使用流变学研究溶液性质,使用差分热分析和扫描电子显微镜表征膜的特征。还研究了溶解度,表面疏水性和粘附性。溶液粘度根据组合物和浓度而变化,影响纤维生产。加入RS100至PVP导致膜孔隙率和溶解度降低,以及增加的表面疏水性和体外粘附时间。 DEX和PEO颗粒位于纤维的表面上。成功生产了PCL BL,通过热处理实现的层之间的增强附着。 PVP均聚物膜不粘附在塑料或猪粘膜上,而PVP / RS100膜与且没有PEO或DEX的粘附性紧密粘附。总之,PVP和RS100可以组合为定制膜特性。此外,静电纺丝促进了由粘膜制造的薄膜的产生,所述粘膜制造的纤维显示出增加的表面积和长持久的粘合性能。这些新型组合物表现出在口腔医学中制备粘膜粘附贴片的巨大潜力。

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