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首页> 外文期刊>European journal of pharmaceutical sciences >Co-encapsulation of imiquimod and copaiba oil in novel nanostructured systems: promising formulations against skin carcinoma
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Co-encapsulation of imiquimod and copaiba oil in novel nanostructured systems: promising formulations against skin carcinoma

机译:新型纳米结构系统中咪喹莫德和胚胎油的共封装:有前途的皮肤癌配方

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In this study, two types of cutaneous-directed nanoparticles are proposed for the co-encapsulation of imiquimod (a drug approved for the treatment of basal cell carcinoma) and copaiba oil (oil that exhibits anti-proliferative properties). Nanostructured copaiba capsules (NCCImq) were prepared using the interfacial deposition method, and nanostructured Brazilian lipids (NBLImq) were prepared by high-pressure homogenization. The formulations exhibited average diameter, zeta potential, pH and drug content of approximately 200 nm, -12 mV, 6 and 1 mg mL(-1), respectively. In addition, the formulations exhibited homogeneity regarding particle size, high encapsulation efficiency and stability. Both nanocarriers controlled imiquimod release, and NBLImq exhibited slower drug release (p < 0.05), likely due to increased interaction of the drug with the solid lipid (cupuacu seed butter). The in vitro evaluation of the imiquimod-loaded nanocarriers was performed using healthy skin cells (keratinocytes, HaCaT); no alteration was observed, suggesting the biocompatibility of the nanocarriers. In addition, in vitro skin permeation/penetration using pig skin was performed, and NCCImq led to increased drug retention in the skin layers and reduced amounts of drug found in the receiver solution. Thus, NCCImq is considered the most promising nanoformulation for the treatment of skin carcinoma. (C) 2015 Elsevier B.V. All rights reserved.
机译:在该研究中,提出了两种类型的皮肤定向纳米颗粒用于咪喹莫特(一种用于治疗基底细胞癌的药物)和Copaiba油(表现出抗增殖性质的药物)的共同包封。使用界面沉积方法制备纳米结构Copaiba胶囊(NCCIMQ),通过高压均化制备纳米结构的巴西脂质(NBLIMQ)。制剂分别表现出平均直径,Zeta电位,pH和药物含量约为200nm,-12mV,6和1mg ml(-1)。此外,制剂表现出关于粒度,高封装效率和稳定性的均匀性。纳米载体控制咪喹莫德释放,NBlimq表现出较慢的药物释放(P <0.05),可能是由于药物与固体脂质(丘比卡种子黄油)的相互作用增加。使用健康的皮肤细胞(角蛋白细胞,HACAT)进行氨基铵加载的纳米载体的体外评价;没有观察到任何改变,表明纳米载体的生物相容性。此外,进行使用猪皮肤的体外皮肤渗透/穿透,NCCIMQ导致皮肤层的药物保留增加,并且在接收器溶液中发现的药物量减少。因此,NCCIMQ被认为是用于治疗皮肤癌的最有前途的纳米型植物。 (c)2015 Elsevier B.v.保留所有权利。

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