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Design and development of a topical dosage form for the convenient delivery of electrospun drug loaded nanofibers

机译:设计和开发局部剂型,以方便递送载有电纺药物的纳米纤维

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摘要

In the recent years, nanofiber based delivery systems have gained a lot of importance in the biomedical field. However, convenient administration of nanofibers and development of a dosage form for nanofibers is a great challenge to the formulation scientist. Topical application of nanofibers has its own disadvantages such as vehicle deployment, spreading and retention in the specific site of action. Thus, in this study, we have attempted to develop a topical gel for the effective application and administration of fluconazole loaded eudragit nanofibers. The electrospun nanofiber loaded topical gel was evaluated for the drug content, rheological behavior, permeation efficiency and antifungal activity. Controlled release of the drug up to 24 h was observed in the in vitro diffusion studies and a better drug release was obtained in the nanofiber loaded gel based delivery system when compared to the release profile of nanofibers alone. Antifungal study confirmed the efficiency of the developed system in controlling fungal growth. Thus, an efficient dosage form for the delivery of drug loaded nanofibers has been developed and it opens up new avenues for the treatment of topical infections using nanofiber based therapeutics.
机译:近年来,基于纳米纤维的递送系统在生物医学领域中变得非常重要。然而,方便地施用纳米纤维和开发用于纳米纤维的剂型是制剂科学家的巨大挑战。纳米纤维的局部应用具有其自身的缺点,例如车辆展开,在特定作用部位散布和保留。因此,在这项研究中,我们尝试开发一种局部用凝胶,以有效地应用和施用氟康唑负载的eudragit纳米纤维。评价电纺纳米纤维负载局部凝胶的药物含量,流变行为,渗透效率和抗真菌活性。在体外扩散研究中观察到药物的控制释放长达24小时,并且与仅纳米纤维的释放曲线相比,在基于纳米纤维的凝胶基递送系统中获得了更好的药物释放。抗真菌研究证实了开发的系统在控制真菌生长方面的效率。因此,已经开发了用于递送载有药物的纳米纤维的有效剂型,并且它开辟了使用基于纳米纤维的疗法来治疗局部感染的新途径。

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