Department of Pharmacognosy, Faculty of Pharmacy, Badr University in Cairo (BUC), Cairo, 11829, Egypt.
Department of Pharmacognosy, Faculty of Pharmacy, Ain Shams University, Cairo, 11566, Egypt.
Chem Biodivers. 2020 Jul;17(7):e2000048. doi: 10.1002/cbdv.202000048. Epub 2020 Jun 30.
Pithecellobium dulce has been used in traditional medicine to treat various ailments owing to its restorative properties. The biological activities and chemical profiles of the lipophilic fraction of P. dulce bark and leaves were assessed herein. Fatty acid methyl esters (FAME) and unsaponifiable matter (USM) were prepared and analyzed by GC/MS. A total of 40 compounds were identified in the bark saponifiable fraction, whereas 9 compounds were annotated in the leaves. Palmitic acid methyl ester was the major compound identified accounting for 41.48 % of the bark and 19.03 % of the leaves composition. Besides, linolenic acid methyl ester (22.40 %) and linoleic acid (12.69 %) were annotated in the leaves saponifiable fraction. A total of 63 compounds were detected in the bark USM and 4 compounds were identified in the leaves. Phytol represented the major component in the leaves (52.57 %) followed by lupeol (20.68 %) and lupenone (8.60 %). Meanwhile, n-dodecane dominated in the bark USM accounting for 24.69 % of the total composition. The leaves and bark lipophilic fractions revealed moderate antioxidant and antibacterial activities. Both extracts showed no antifungal activity. No cytotoxicity was observed for both lipophilic fractions. P. dulce offers a good source of antioxidant compounds that can be introduced to food and pharmaceutical industry.
因具有修复特性,软枝黄蝉被传统医学用于治疗各种疾病。本文评估了软枝黄蝉树皮和叶子的亲脂部分的生物活性和化学特征。通过 GC/MS 制备和分析脂肪酸甲酯 (FAME) 和不可皂化物 (USM)。在树皮可皂化物部分鉴定出 40 种化合物,而在叶子中鉴定出 9 种化合物。棕榈酸甲酯是主要的化合物,占树皮的 41.48%,占叶子的 19.03%。此外,在叶子的可皂化物部分还注释了亚麻酸甲酯 (22.40%)和亚油酸 (12.69%)。在树皮 USM 中检测到 63 种化合物,在叶子中鉴定出 4 种化合物。植醇是叶子中的主要成分 (52.57%),其次是羽扇醇 (20.68%)和羽扇烯酮 (8.60%)。同时,正十二烷在树皮 USM 中占主导地位,占总成分的 24.69%。叶子和树皮亲脂部分显示出适度的抗氧化和抗菌活性。两种提取物均无抗真菌活性。两种亲脂部分均无细胞毒性。软枝黄蝉是抗氧化化合物的良好来源,可用于食品和制药行业。