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Inclusion Complexes of Citronella Oil with β-Cyclodextrin for Controlled Release in Biofunctional Textiles

机译:香茅油与β-环糊精的包合物用于生物功能纺织品的控释

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摘要

Biofunctional textiles with integrated drug-delivery systems can help in the fight against vector-borne diseases. The use of repellent agents derived from plants and oils is an alternative to DEET (N,N-diethyl-m-methylbenzamide), which has disadvantages that include toxic reactions and skin damage. However, some researchers report that oils can be ineffective due to reasons related to uncontrolled release. In this work, the mechanism of control of citronella oil (OC) complexed with β-cyclodextrin (βCD) on cotton (COT) and polyester (PES) textiles was investigated. The results obtained reveal that finishing cotton and polyester with β-cyclodextrin complexes allows for control of the release mechanism of the drug from the fabric. To assess the complexes formed, optical microscopy, SEM, and FTIR were carried out; the yield of complex formation was obtained by spectroscopy in the ultraviolet region; and controlled release was performed in vitro. Oil complexation with βCD had a yield of 63.79%, and it was observed that the release, which was in seconds, moved to hours when applied to fabrics. The results show that complexes seem to be a promising basis when it comes to immobilizing oils and controlling their release when modified with chemical crosslinking agents.
机译:具有集成药物输送系统的生物功能纺织品可以帮助抵抗媒介传播的疾病。使用衍生自植物和植物油的驱避剂是DEET(N,N-二乙基-间甲基苯甲酰胺)的替代品,它具有包括毒性反应和皮肤损害的缺点。但是,一些研究人员报告说,由于与不受控制的释放有关的原因,油脂可能无效。在这项工作中,研究了在棉(COT)和聚酯(PES)纺织品上与β-环糊精(βCD)络合的香茅油(OC)的控制机理。获得的结果表明,用β-环糊精复合物整理棉和聚酯后,可以控制药物从织物上的释放机理。为了评估形成的复合物,进行了光学显微镜,SEM和FTIR。通过光谱法在紫外区获得配合物形成的产率。并在体外进行控释。与βCD的油络合收率为63.79%,观察到将其释放到织物上后,释放时间(以秒为单位)移动至数小时。结果表明,当固定化油类并用化学交联剂改性时控制其释放时,复合物似乎是有希望的基础。

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