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Topical drug delivery by a polymeric nanosphere gel: Formulation optimization and in vitro and in vivo skin distribution studies

机译:通过聚合物纳米球凝胶进行局部药物递送:配方优化以及体外和体内皮肤分布研究

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Tyrosine-derived nanospheres have demonstrated potential as effective carriers for the topical delivery of lipophilic molecules. In this investigation, a gel formulation containing nanospheres was developed for effective skin application and enhanced permeation. Carbopol and HPMC hydrophilic gels were evaluated for dispersion of these nanospheres. Sparingly water soluble diclofenac sodium (DS) and lipophilic Nile Red were used as model compounds. DS was used to determine the optimum polymer type, viscosity and release properties of the gel while fluorescent Nile Red was used in in vitro and in vivo skin distribution studies. In addition, the effect of a penetration enhancer, Azone, on the skin delivery was investigated. Dispersion of Nile Red-loaded nanospheres in 1% w/v HPMC gel produced a uniform and stable dispersion with suitable rheological properties for topical application, without any short-term cellular toxicity or tissue irritation. In vitro permeation studies using human cadaver skin revealed that the deposition of Nile Red via the nanosphere gel in the upper and lower dermis was 1.4 and 1.8 fold higher, respectively, than the amount of Nile Red deposited via an aqueous nanosphere formulation. In vivo, the HPMC gel containing Nile Red-loaded nanospheres significantly enhanced (1.4 fold) the permeation of Nile Red to the porcine stratum corneum/epidermis compared to the aqueous Nile Red-loaded nanospheres. An additional increase (1.4 fold) of Nile Red deposition in porcine stratum corneum/epidermis was achieved by incorporation of Azone (0.2 M) into the nanosphere gel formulation. Therefore, tyrosine-derived nanospheres dispersed in gels offer promise for the topical delivery of lipophilic drugs and personal care agents to skin for treatment of cancers, psoriasis, eczema, and microbial infections.
机译:酪氨酸衍生的纳米球已被证明是潜在的亲脂分子局部递送的有效载体的潜力。在这项研究中,开发了一种包含纳米球的凝胶制剂,可有效地应用于皮肤并增强渗透性。评估了Carbopol和HPMC亲水性凝胶对这些纳米球的分散性。将少量水溶性双氯芬酸钠(DS)和亲脂性尼罗红用作模型化合物。 DS用于确定凝胶的最佳聚合物类型,粘度和释放特性,而荧光尼罗红则用于体外和体内皮肤分布研究。此外,研究了渗透促进剂Azone对皮肤输送的影响。负载1%w / v HPMC凝胶的尼罗红负载纳米球的分散体产生了均匀稳定的分散体,具有适合局部应用的流变特性,没有任何短期细胞毒性或组织刺激性。使用人体尸体皮肤进行的体外渗透研究表明,通过纳米球凝胶在上部和下部真皮中沉积的尼罗红分别比通过水性纳米球制剂沉积的尼罗红的含量高1.4倍和1.8倍。在体内,与含水尼罗红负载的纳米球相比,含有尼罗红负载的纳米球的HPMC凝胶显着增强(1.4倍)尼罗红向猪角质层/表皮的渗透。通过将Azone(0.2 M)掺入纳米球凝胶制剂中,猪角质层/表皮中尼罗红的沉积进一步增加(1.4倍)。因此,分散在凝胶中的酪氨酸衍生的纳米球有望将亲脂性药物和个人护理剂局部递送至皮肤,以治疗癌症,牛皮癣,湿疹和微生物感染。

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