Laboratory of Plant Chemistry, Organic and Bioorganic Synthesis, Faculty of Sciences, Mohammed V University in Rabat, 4 Avenue Ibn Battouta B.P., RP 1014, Morocco.
Laboratory of Applied Organic Chemistry, Faculty of Sciences and Techniques, Sidi Mohamed Ben Abdellah University in Fez, BP 2626, Fes, 30000, Morocco.
Fitoterapia. 2024 Jan;172:105707. doi: 10.1016/j.fitote.2023.105707. Epub 2023 Oct 20.
Dittrichia viscosa belongs to the Dittrichia genus, it grows abundantly in the east and northeast of Morocco, and traditionally its fresh leaves are crushed and given for topical application after burns, wounds, and infections. In this study, we examine the wound-healing activity of Dittrichia viscosa lipidic extract in vivo, assess its anti-microbial effect, and explore the specific compounds that contribute to these effects. To assess the effectiveness of wound healing, a burn-induced wound model was employed in Wistar rats, and the levels of hydroxyproline as well as histopathological changes in the skin tissues were evaluated. Furthermore, the antimicrobial potential against Bacillus subtilis, Staphylococcus aureus, Escherichia coli, Pseudomonas aeruginosa, Candida albicans, Candida glabrata, and Malassezia furfur was investigated using the agar disc diffusion method. Gas Chromatography-mass spectrometry (GC-MS) and high-performance liquid chromatography (HPLC) techniques were employed to analyze the composition of fatty acids, phytosterols, and tocopherols. Topical application of Dittrichia viscosa lipidic fraction ointment exhibited significant improvements in wound contraction, achieving an impressive rate of 82% within 21 days. Additionally, the lipidic extract of Dittrichia viscosa displayed notable efficacy against various microbial strains, including Candida albicans (25.07 ± 0.2), Candida glabrata (24 ± 0.6), and Malassezia furfur (22 ± 0.7). The primary fatty acids identified in the sample were linolenic acid (58.95% ± 0), oleic acid (16.75% ±0.04), and linoleic acid (11.97% ± 0.1). Notably, the sample contained significant amounts of γ-Tocopherols (732.08 ± 21mg/kg), while the sterol fraction primarily consisted of 7-Campesterol (1937 ± 0 mg/kg), 7-β-Sitosterol (1621 ± 0 mg/kg), and Stigmasterol (1439 ± 26 mg/kg). By its richness in active compound content, Dittrichia viscosa effectively accelerates wound healing while safeguarding against microbial infections.
粘叶蓟属于粘叶蓟属,广泛生长在摩洛哥东部和东北部,传统上,其新鲜叶子被压碎后,用于治疗烧伤、伤口和感染。在这项研究中,我们检查了粘叶蓟脂溶性提取物的体内愈合活性,评估了它的抗微生物作用,并探索了促进这些作用的特定化合物。为了评估伤口愈合的效果,我们在 Wistar 大鼠中建立了烧伤诱导的伤口模型,评估了羟脯氨酸水平以及皮肤组织的组织学变化。此外,我们还使用琼脂圆盘扩散法研究了粘叶蓟脂溶性提取物对枯草芽孢杆菌、金黄色葡萄球菌、大肠杆菌、铜绿假单胞菌、白色念珠菌、光滑念珠菌和糠秕马拉色菌的抗菌潜力。气相色谱-质谱联用(GC-MS)和高效液相色谱(HPLC)技术用于分析脂肪酸、植物甾醇和生育酚的组成。粘叶蓟脂溶性部分软膏的局部应用显著改善了伤口收缩,在 21 天内达到了 82%的令人印象深刻的收缩率。此外,粘叶蓟脂溶性提取物对各种微生物菌株表现出显著的疗效,包括白色念珠菌(25.07 ± 0.2)、光滑念珠菌(24 ± 0.6)和糠秕马拉色菌(22 ± 0.7)。样品中鉴定的主要脂肪酸是亚油酸(58.95% ± 0)、油酸(16.75% ± 0.04)和亚麻酸(11.97% ± 0.1)。值得注意的是,该样品含有大量的γ-生育酚(732.08 ± 21mg/kg),而甾醇部分主要由 7-菜油甾醇(1937 ± 0mg/kg)、7-β-谷甾醇(1621 ± 0mg/kg)和豆甾醇(1439 ± 26mg/kg)组成。粘叶蓟富含活性化合物,能有效加速伤口愈合,同时防止微生物感染。