首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Design of a nanostructured mucoadhesive system containing curcumin for buccal application: from physicochemical to biological aspects
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Design of a nanostructured mucoadhesive system containing curcumin for buccal application: from physicochemical to biological aspects

机译:含姜黄素的颊黏膜纳米结构粘膜粘附系统的设计:从物理化学到生物学

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摘要

Mucoadhesive nanostructured systems comprising poloxamer 407 and Carbopol 974P have already demonstrated good mucoadhesion, as well as improved mechanical and rheological properties. Curcumin displays excellent biological activity, mainly in oral squamous cancer; however, its physicochemical characteristics hinder its application. Therefore, the aim of this study was to develop nanostructured formulations containing curcumin for oral cancer therapy. The photophysical interactions between curcumin and the formulations were elucidated by incorporation kinetics and location studies. They revealed that the drug was quickly incorporated and located in the hydrophobic portion of nanometer-sized polymeric micelles. Moreover, the systems displayed plastic behavior with rheopexy characteristics at 37 °C, viscoelastic properties and a gelation temperature of 36 °C, which ensures increased retention after application in the oral cavity. The mucoadhesion results confirmed the previous findings with the nanostructured systems showing a residence time of 20 min in porcine oral mucosa under flow system conditions. Curcumin was released after 8 h and could permeate through the porcine oral mucosa. Cytotoxicity testing revealed that the formulations were selective to cancer cells over healthy cells. Therefore, these systems could improve the physicochemical characteristics of curcumin by providing improved release and permeation, while selectivity targeting cancer cells.
机译:包含泊洛沙姆407和Carbopol 974P的粘膜粘附性纳米结构系统已显示出良好的粘膜粘附性,并改善了机械和流变性能。姜黄素具有出色的生物活性,主要在口腔鳞状细胞癌中。但是,其理化特性阻碍了其应用。因此,本研究的目的是开发用于口腔癌治疗的含有姜黄素的纳米结构制剂。姜黄素与制剂之间的光物理相互作用通过结合动力学和位置研究得以阐明。他们发现,该药物被迅速掺入并位于纳米级聚合物胶束的疏水部分。此外,该系统在37°C时具有流变特性,粘弹性和36°C的胶凝温度,从而表现出可塑性,从而确保了在口腔中使用后的滞留性增加。粘膜粘附结果证实了先前的发现,其与纳米结构系统在流动系统条件下在猪口腔粘膜中的停留时间为20分钟。姜黄素在8小时后释放,可透过猪口腔粘膜渗透。细胞毒性测试表明,与健康细胞相比,该制剂对癌细胞具有选择性。因此,这些系统可通过提供改善的释放和渗透性,同时针对癌细胞的选择性来改善姜黄素的理化特性。

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