School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Av. do Café s/n, Campus USP, 14040-903, Ribeirão Preto, São Paulo, Brazil.
AAPS PharmSciTech. 2017 Oct;18(7):2505-2516. doi: 10.1208/s12249-017-0737-x. Epub 2017 Feb 17.
Lipid nanoparticles have shown many advantages for treatment/prevention of skin disorders with damaged skin barrier function. Beeswax is a favorable candidate for the development of nanosystems in the cosmetic and dermatological fields because of its advantages for the development of products for topical application. In the present study, beeswax-based nanoparticles (BNs) were prepared using the hot melt microemulsion technique and incorporated to a gel-cream formulation. The formulation was subsequently evaluated for its rheological stability and effect on stratum corneum water content (SCWC) and transepidermal water loss (TEWL) using in vivo biophysical techniques. BNs resulted in mean particle size of 95.72 ± 9.63 nm and zeta potential of -9.85 ± 0.57 mV. BN-loaded formulation showed shear thinning behavior, well adjusted by the Herschel-Bulkley model, and a small thixotropy index that were stable for 28 days at different temperatures. BN-loaded formulation was also able to simultaneously decrease the TEWL and increase the SCWC values 28 days after treatment. In conclusion, the novel beeswax-based nanoparticles showed potential for barrier recovery and open the perspective for its commercial use as a novel natural active as yet unexplored in the field of dermatology and cosmetics for treatment of skin diseases with damaged skin barrier function.
脂质纳米粒在治疗/预防皮肤屏障功能受损的皮肤疾病方面具有许多优势。蜂蜡因其有利于开发局部应用产品的优势,成为化妆品和皮肤病学领域纳米系统开发的理想候选材料。在本研究中,使用热熔微乳液技术制备了基于蜂蜡的纳米粒(BNs),并将其掺入凝胶-乳膏制剂中。随后,使用体内生物物理技术评估制剂的流变稳定性以及对角质层含水量(SCWC)和经皮水分流失(TEWL)的影响。BNs 的平均粒径为 95.72 ± 9.63nm,zeta 电位为-9.85 ± 0.57mV。BN 负载的制剂表现出剪切变稀行为,通过赫谢尔-布尔克利模型得到很好的调整,并且在不同温度下 28 天内的小触变性指数稳定。BN 负载的制剂还能够在治疗 28 天后同时降低 TEWL 和增加 SCWC 值。总之,新型蜂蜡基纳米粒具有恢复屏障的潜力,为其作为一种新型天然活性物质的商业应用开辟了前景,而这种天然活性物质在皮肤病学和化妆品领域尚未得到探索,可用于治疗皮肤屏障功能受损的皮肤疾病。