Post-Graduation Program in Health Sciences, Faculty of Medical Sciences, Federal University of Mato Grosso, Cuiabá, Mato Grosso, Brazil.
Postgraduate Program in Pharmaceutical Sciences, Faculty of Pharmaceutical Science, Federal University of Rio Grande do Sul, Brazil.
Eur J Pharm Sci. 2020 Jul 1;150:105356. doi: 10.1016/j.ejps.2020.105356. Epub 2020 May 7.
Cutaneous lesions lead to complications in patients, since they may be recurrent and also represent risk of progression to infection and/or amputation. Therefore, effective, protective, and topical treatments of easy application and removal need to be developed to provide effective alternatives to patients. The Caryocar brasiliense Cambess (CBC) presents important pharmacological activities and proved in the healing process. This paper reports the improvement of the CBC nanostructured (LNC and LNC) activity in dermal wounds in vivo. The oil was physico-chemically characterized and used in the development of lipid-core nanocapsules (LNCs), coated (LNC) or without chitosan (LNC), in concentration of 1.0 mg mL. Hydrogel (HG) was tested in vivo on lesions in the back of male Wistar rats for 14 days. The oil presented appropriate physico-chemical characteristics for its use, such as moisture 0.76 %, acidity 0.85 % and oleic acid 25.90 %. The LNCs showed nanometric size (around 200 nm), monomodal distribution, slight acid pH and zeta potential of + 22.1 mV in accordance with the composition. The nanostructured oil induced dermal healing in vivo showing significantly better improvement than free oil. LNC showed best results showing the higher increase of the production of type 1 collagen, an important protein to the healing repair. These results suggest that development of formulations LNC and LNC are promising and important alternative for the treatment of dermal wounds, avoiding complications related to cutaneous lesions.
皮肤损伤会导致患者出现并发症,因为它们可能会反复发作,并且还会增加感染和/或截肢的风险。因此,需要开发出有效、保护、易于应用和去除的局部治疗方法,为患者提供有效的替代方案。巴西栗(Caryocar brasiliense Cambess)具有重要的药理活性,并已在愈合过程中得到证实。本文报道了改善巴西栗纳米结构(LNC 和 LNC)在体内皮肤伤口中的活性。对油进行了物理化学性质的表征,并将其用于开发脂质核纳米胶囊(LNCs),用或不用壳聚糖(LNC)进行包被,浓度为 1.0 mg/mL。水凝胶(HG)在背部皮肤损伤的雄性 Wistar 大鼠体内进行了 14 天的测试。该油具有适当的物理化学性质,可用于治疗,例如水分 0.76%、酸度 0.85%和油酸 25.90%。LNCs 粒径为纳米级(约 200nm),单分散性,轻微酸性 pH 值和+22.1mV 的 ζ 电位,符合其组成。纳米结构油在体内诱导皮肤愈合,表现出明显优于游离油的改善效果。LNC 显示出最佳的结果,显示出 1 型胶原蛋白产生的更高增加,这是愈合修复的重要蛋白。这些结果表明,LNC 和 LNC 制剂的开发具有很大的应用前景,是治疗皮肤损伤的重要替代方法,可避免与皮肤损伤相关的并发症。