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Nanostructured Lipid Carriers Engineered as Topical Delivery of Etodolac: Optimization and Cytotoxicity Studies

机译:纳米结构脂质载体作为Etodolac的局部递送:优化和细胞毒性研究

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摘要

Etodolac (ETD), a nonsteroidal anti-inflammatory drug, exhibits antinflammatory, analgesic, and antipyretic activity. The main type of ETD administration is oral route, which is associated with significant systemic side effects. Nanostructured lipid carriers (NLC), a modern lipid formulation, are non-toxic, biocompatible, can improve the solubility and stability of drugs. Nanostructured lipid carriers (NLC) containing etodolac were prepared by a melt-emulsification and ultrasonication technique. Full factorial design (FFD) was applied to optimize the composition of NLC and their properties such as zeta potential, polidyspersity index, and entrapment efficiency. Formulations consisting of Capryol 90, glicerol monostearate, and Tween 20 displayed particle size below 300 nm, encapsulated drug with efficiency of approximately 87% and prolonged drug release up to 24 h. Stable formulations displayed moderately negative surface charge suggesting their limited ability to interact with skin surface but simultaneously presenting their lower risk to cause cell-membrane disruption. In fact, cytotoxicity assessment using human dermal fibroblasts and human epidermal keratinocytes revealed that etodolac-loaded NLC had no important impact on skin cells viability evaluated in vitro, which might evidence that NLC formulations are safe for dermal delivery. The studies developed were relatively fast and simple, requiring no specialized equipment method to prepare NLC as ETD carriers ensuring better solubility and prolonged drug release.
机译:eTodolac(ETD),一种非甾体抗炎药,表现出抗炎,镇痛和解热活性。 ETD给药的主要类型是口服途径,其与显着的系统性副作用有关。纳米结构脂质载体(NLC),一种现代脂质制剂,是无毒的生物相容性,可以改善药物的溶解度和稳定性。通过熔融乳化和超声波技术制备含纳米结构的脂质载体(NLC)含有Etodolac。应用完整的因子设计(FFD)以优化NLC的组成及其属性,如Zeta电位,导线指数和熵效率。由烷醇卷发90,Glicerol单硬脂酸盐和吐温20显示出低于300nm的粒径,效率约为87%,延长药物释放至24小时。稳定的配方显示适度的负面表面,表明它们有限的与皮肤表面相互作用,而是同时呈现其降低风险,以引起细胞膜破坏。实际上,使用人的皮肤成纤维细胞和人表皮角质形成细胞的细胞毒性评估显示,替代醇负载的NLC对体外评估的皮肤细胞的活力没有重要影响,这可能证明NLC配方对于皮肤递送是安全的。开发的研究比较快捷,简单,不需要专门的设备方法,以制备NLC作为ETD载体,确保更好的溶解性和延长的药物释放。

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