Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, Qassim University, Qassim 51452, Saudi Arabia.
Department of Pharmacognosy, Faculty of Pharmacy, Al-Azhar University, Cairo 11371, Egypt.
Molecules. 2020 Jun 19;25(12):2830. doi: 10.3390/molecules25122830.
The natural drying of Linn. herbs severely affects its volatile oil quality and yields, which is reported here for the first time. The oils obtained through hydrodistillation from fresh, one, two, and three-weeks dried herbs were analyzed by gas chromatography-mass spectroscopy (GC-MS) and gas chromatography-flame ionization detector (GC-FID), and the yields were 198 ± 3.45, 168.7 ± 5.11, and 97.8 ± 1.27 mg, respectively, as compared to the internal referral standard of 327 ± 5.91 mg yield of the one-week dried herbs' oil. Camphor, the major constituent, significantly depleted from 20.96% to 13.84%, while bornyl acetate yields increased from 1.42% to 12.46% ( values < 0.0001) in three-weeks drying, reflecting the redox processes undergoing within the oil during drying. Several constituents (25) were found in one-week dried herbs' oil as compared to the fresh, two-, and three-weeks oils, which consisted of 23, 19, and 14 constituents, respectively, leading to the recommendation of the one-week drying of the herb for maximum oil yield. The DPPH (2, 2-diphenyl-1-picryl-hydrazyl) reactivity was highest for the two- and three-weeks dried herb-based oils, followed by the one-week dried- and fresh-herb-based oils ( < 0.0001), again indicating major chemical changes during herbs' dryings, affecting the free-radical scavenging capacity of these batches of oils obtained after different drying times.
林奈草本植物的自然干燥严重影响其挥发油的质量和产量,这是首次报道。通过新鲜、干燥 1 周、2 周和 3 周的植物进行水蒸馏得到的油,用气相色谱-质谱(GC-MS)和气相色谱-火焰离子化检测器(GC-FID)进行分析,与 1 周干燥植物油的内部参考标准(327 ± 5.91mg)相比,其产率分别为 198 ± 3.45mg、168.7 ± 5.11mg 和 97.8 ± 1.27mg。樟脑是主要成分,从 20.96%显著减少到 13.84%,而乙酸龙脑酯的产量从 1.42%增加到 12.46%(值<0.0001),这反映了油在干燥过程中发生的氧化还原过程。与新鲜、2 周和 3 周干燥的植物油相比,在 1 周干燥的植物油中发现了 25 种成分,而新鲜、2 周和 3 周干燥的植物油分别包含 23、19 和 14 种成分,这导致推荐对植物进行 1 周干燥,以获得最大的油产量。二苯代苦味肼基自由基(DPPH)反应性以 2 周和 3 周干燥的植物基油最高,其次是 1 周干燥和新鲜植物基油(值<0.0001),这再次表明在干燥过程中植物发生了主要的化学变化,影响了不同干燥时间获得的这些批次油的自由基清除能力。