a Graduate Program in Pharmaceutical Sciences, Faculty of Pharmacy, Universidade Federal do Rio Grande do Sul (UFRGS) , Porto Alegre , Brazil.
b Department of Dermatology , Brazilian Society of Dermatology, Santa Clara Hospital, Santa Casa de Misericórdia de Porto Alegre , Porto Alegre , Brazil.
Drug Dev Ind Pharm. 2019 Apr;45(4):642-650. doi: 10.1080/03639045.2019.1569032. Epub 2019 Jan 28.
To develop an azelaic acid (AzA)-loaded nanoemulsion with hyaluronic acid (HA) as a double targeting strategy to increase drug retention and tyrosinase inhibition activity.
Dermic melasma is a recalcitrant disease. Therefore, the development of new technologies that allow a deeper penetration in the skin while enhancing the efficacy of a safe and well-known dermatological active, like AzA, is a very promising alternative to improve the treatment of this disease.
An oil-in-water nanoemulsion was developed and characterized according to its droplet size distribution, zeta potential, pH value, drug content, encapsulation efficiency, spectroscopic characteristics, morphology, and stability. In vitro mushroom tyrosinase inhibition assay, cytotoxicity, and permeation studies were performed. A descriptive sensory evaluation was also carried out.
Drug content was 10 mg/ml, particle size 419 ± 23 nm with monomodal distribution, encapsulation efficiency was 84.65%, zeta potential -10.9 ± 0.44 mV and pH 5.01 ± 0.01. The nanoemulsion was stable for 30 days (30 °C/65% RH). The nanoemulsion decreased tyrosinase activity and permeated through the skin, reaching viable epidermis and dermis and did not show signs of cytotoxicity. Sensory evaluation profile showed a higher spreadability with lesser whitening residue.
The nanoemulsion presented characteristics within the nanoscale and reached the deeper layers of the skin while improving in vitro tyrosinase inhibition; hence, it could be a promising treatment to dermic melasma.
开发一种载有壬二酸(AzA)的纳米乳,并用透明质酸(HA)作为双重靶向策略,以增加药物保留和酪氨酸酶抑制活性。
皮肤性黄褐斑是一种难治性疾病。因此,开发新的技术,使药物更深地渗透皮肤,同时提高安全且众所周知的皮肤科活性物质(如 AzA)的疗效,是改善这种疾病治疗的一种很有前途的替代方法。
根据其粒径分布、Zeta 电位、pH 值、药物含量、包封效率、光谱特性、形态和稳定性,开发并表征了一种油包水型纳米乳。进行了体外蘑菇酪氨酸酶抑制试验、细胞毒性和渗透研究。还进行了描述性感官评价。
药物含量为 10mg/ml,粒径为 419±23nm,呈单峰分布,包封效率为 84.65%,Zeta 电位为-10.9±0.44mV,pH 值为 5.01±0.01。纳米乳在 30°C/65%RH 条件下稳定 30 天。纳米乳降低了酪氨酸酶的活性并渗透到皮肤中,到达有活力的表皮和真皮,且没有表现出细胞毒性的迹象。感官评价结果显示,纳米乳具有更好的铺展性,残留的白色更少。
该纳米乳具有纳米级的特性,可到达皮肤的深层,同时提高体外酪氨酸酶抑制作用;因此,它可能是治疗皮肤性黄褐斑的一种有前途的方法。