Pharmaceutical Technology Department, National Research Centre, Cairo 12622, Egypt.
Pharmacognosy Department, Faculty of Pharmacy, University of Sadat City, Sadat City 32897, Egypt.
Molecules. 2022 Sep 20;27(19):6143. doi: 10.3390/molecules27196143.
The GC-MS analysis of tea tree oil (TTO) revealed 38 volatile components with sesquiterpene hydrocarbons (43.56%) and alcohols (41.03%) as major detected classes. TTO efficacy is masked by its hydrophobicity; nanoencapsulation can address this drawback. The results showed that TTO-loaded solid lipid nanoparticles (SLN1), composed of glyceryl monostearate (2% ) and Poloxamer188 (5% ), was spherical in shape with a core-shell microstructure. TTO-SLN1 showed a high entrapment efficiency (96.26 ± 2.3%), small particle size (235.0 ± 20.4 nm), low polydispersity index (0.31 ± 0.01), and high negative Zeta potential (-32 mV). Moreover, it exhibited a faster active agent release (almost complete within 4 h) compared to other formulated TTO-SLNs as well as the plain oil. TTO-SLN1 was then incorporated into cellulose nanofibers gel, isolated from sugarcane bagasse, to form the 'TTO-loaded nanolipogel' which had a shear-thinning behavior. Second-degree thermal injuries were induced in Wistar rats, then the burned skin areas were treated daily for 7 days with the TTO-loaded nanolipogel compared to the unmedicated nanolipogel, the TTO-loaded conventional gel, and the normal saline (control). The measurement of burn contraction proved that TTO-loaded nanolipogel exhibited a significantly accelerated skin healing, this was confirmed by histopathological examination as well as quantitative assessment of inflammatory infiltrate. This study highlighted the success of the proposed nanotechnology approach in improving the efficacy of TTO used for the repair of skin damage induced by burns.
茶树油(TTO)的 GC-MS 分析显示,挥发性成分有 38 种,主要检测到的类别为倍半萜烯烃(43.56%)和醇类(41.03%)。TTO 的功效因其疏水性而受到影响;纳米封装可以解决这一缺点。结果表明,由甘油单硬脂酸酯(2%)和泊洛沙姆 188(5%)组成的 TTO 负载固体脂质纳米粒(SLN1)呈球形,具有核壳微观结构。TTO-SLN1 表现出高包封效率(96.26±2.3%)、小粒径(235.0±20.4nm)、低多分散指数(0.31±0.01)和高负 Zeta 电位(-32mV)。此外,与其他配方的 TTO-SLN 以及普通油相比,它表现出更快的活性剂释放(几乎在 4 小时内完全释放)。TTO-SLN1 随后被掺入从甘蔗渣中分离出的纤维素纳米纤维凝胶中,形成“负载 TTO 的纳米脂质体凝胶”,具有剪切稀化行为。在 Wistar 大鼠中诱导二级热损伤,然后在 7 天的时间里,每天用负载 TTO 的纳米脂质体凝胶处理烧伤皮肤区域,与未用药的纳米脂质体凝胶、负载 TTO 的常规凝胶和生理盐水(对照)进行比较。烧伤收缩的测量证明,负载 TTO 的纳米脂质体凝胶表现出显著加速皮肤愈合,这一点通过组织病理学检查以及炎症浸润的定量评估得到了证实。这项研究强调了所提出的纳米技术方法在提高 TTO 用于修复烧伤引起的皮肤损伤方面的功效的成功。