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The impact of topical phenytoin loaded nanostructured lipid carriers in diabetic foot ulceration

机译:局部酚类含有纳米结构脂质携带者在糖尿病足溃疡中的影响

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Objective: The aim of this study is to develop, and characterize nanostructured lipid carriers (NLCs) of phenytoin (PHT) in order to improve its entrapment efficiency and sustained release to improve the healing process. Methods: Twenty-seven patients with neuropathic diabetic foot ulceration (DFU) were enrolled in this study. Patients were comparable regarding size, grading of ulcer and control of diabetes with no major deformity. All patients were managed by weekly sharp debridement if indicated and offloaded with cast shoes. They were equally divided into three groups: PHT-NLC-hydrogel (0.5%w/v), phenytoin hydrogel (0.5%w/v) and blank hydrogel groups. Changes in wound area were monitored over 2 months.Results: Baseline wound area of PHT-NLC, PHT and blank hydrogels were 5.50 ± 3.66, 3.94 ± 1.86 and 5.36 ± 2.14 cm2, respectively. Ulcers treated with PHT-NLC hydrogel showed smaller wound area compared to control groups (p < 0.05). The overall reduction in ulcer size were 95.82 ± 2.22% for PHT-NLC-hydrogel in comparison to 47.10 ± 4.23% and -34.91 ± 28.33% for PHT and blank-hydrogel (p < 0.001), respectively. Conclusion: PHT-NLC hydrogel speeds up the healing process of the DFU without adverse effects when compared to the positive and negative control hydrogels. Moreover, the study can open a window for topical application of NLCs loaded with PHT in the treatment of numerous dermatological disorders that resist conventional treatment. Key message: The delivery of drug molecules and their localization into the skin is the main purpose of the topical dosage forms. In this manuscript, the impact of topical phenytoin loaded nanostructured lipid carrier in improving wound healing in patients with neuropathic diabetic foot ulceration was investigated. Phenytoin loaded nanostructured lipid carrier dressing was found to be more effective than phenytoin hydrogel at the same concentration in healing of neuropathic diabetic foot ulcer.
机译:目的:该研究的目的是发展,并表征纳米脂素(PHT)的纳米结构脂质载体(NLC),以改善其熵效率和持续释放以改善愈合过程。方法:在本研究中注册了二十七名神经性糖尿病患者的神经性糖尿病患者溃疡(DFU)。患者对尺寸相当,溃疡分级和对糖尿病的控制没有重大性。如果用铸鞋卸下,所有患者均由每周急剧清创进行管理。它们同样分为三组:pHT-NLC-水凝胶(0.5%w / v),苯妥水凝胶(0.5%w / v)和空白水凝胶基团。监测伤口区域的变化超过2个月。结果:PHT-NLC,PHT和空白水凝胶的基线伤口区域分别为5.50±3.66,3.94±1.86和5.36±2.14cm2。用PHT-NLC水凝胶处理的溃疡显示与对照组相比较小的伤口面积(P <0.05)。 PHT-NLC-水凝胶的总体降低溃疡尺寸为95.82±2.22%,相对于47.10±4.23%和-34.91±28.3%和-34.91±28.33%,分别用于PHT和烧伤水凝胶(P <0.001)。结论:与阳性和阴性对照水凝胶相比,PHT-NLC水凝胶速度加速DFU的愈合过程而无劣效。此外,该研究可以打开一个窗户,用于局部施用,用于治疗抵抗常规治疗的许多皮肤病学疾病的PHT。关键消息:将药物分子的递送及其定位进入皮肤是局部剂型的主要目的。在该稿件中,研究了局部苯妥汀的影响纳米结构脂质载体在改善神经病患者患者患有神经性糖尿病足溃疡的伤口愈合方面的影响。苯妥林负载纳米结构脂质载体敷料被发现比诸如神经病糖尿病足溃疡的愈合中相同浓度的苯妥林水凝胶更有效。

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