GC-MS Bioactive Compound Identification, in vitro Nutraceutical and Pharmacological Potential of Underutilized Leafy Vegetable (Ipomoea batatas leaf)

Uzohuo Emmanuel N, A. Obinna, N. E, Enete Uchenna
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Abstract

The search for dietary sources with potent biological activities has increasingly attracted considerable attention. Sweet potato leaves (SPL) are considered to be a leafy vegetable consumed by humans, which is not currently widely used, despite it possession drought tolerance, and the ability to grow in different climates and farming systems. This study evaluated the in vitro Nutraceutical and Pharmacological potential of underutilized leafy vegetable (Ipomoea batatas leaf). The phytochemicals, in vitro antioxidant and anti-inflammatory activities; mineral and vitamins compositions of the leaf were carried out using standard method. The bioactive compounds in Ipomoea batatas were identified using GC-MS. The results of the GC-MS profiling revealed n-Hexadecanoic acid (23.43%), Cyclotrisiloxane, hexamethyl (17.73%), and 16-Pregnenolone (11.30%) as the most abundant bioactive compounds in Ipomoea batata leaves. The mineral analysis showed that Ipomoea batata leaves contains favorable amount of macro elements such as Ca (915.40±9.50), K (2083.30±15.00), P (511.26±4.70), Mg (271.25±7.20), Na (9.98±1.06) and considerable amount of trace elements such as Fe (10.60±1.30), Mn (2.55±0.27), Zinc (2.70±0.11), and Cu (1.32±0.08) in which all were measured in miligram per 100g (mg/100). The vitamins such as of Vitamin A, vitamins C, vitamin E, niacin (B3), thiamine (B1), riboflavin (B2), pyridoxine (B6), vitamin D and vitamin K are present in trace amount in the leaves. The in vitro antioxidant activities of the extract showed a significant (p<0.05) dose dependent free radical scavenging activities. The anti-inflammatory analysis showed that the percent inhibition of hemolysis (20–100 µg/mL dry weight basis) was within the range of 4.1% to 18%. Percent inhibition of protein denaturation was within the range of 29.0–71.0%, Proteinase inhibitory activity was within the range of 16–30.0% and the lipoxygenase inhibition was within the range of 8.2–34.5%. This study provide validation for the usage of Ipomoea batatas leaf as new leafy vegetable with appreciable nutritional values and also provided credence to the bioactive compounds in leaf as potential novel drug candidate for pharmaceutical industries.
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未充分利用叶菜(Ipomoea batatas叶)的GC-MS生物活性化合物鉴定、体外营养和药理潜力
寻找具有强大生物活性的膳食来源日益引起人们的重视。甘薯叶(SPL)被认为是人类食用的一种叶类蔬菜,尽管它具有耐旱性,并且能够在不同的气候和农业系统中生长,但目前尚未被广泛使用。本研究评价了未充分利用的叶菜(Ipomoea batatas leaf)的体外营养和药理潜力。植物化学成分,体外抗氧化和抗炎活性;采用标准方法测定茶叶中矿物质和维生素的含量。采用气相色谱-质谱联用技术对山药中的生物活性成分进行了鉴定。气相色谱-质谱分析结果显示,正十六酸(23.43%)、环三硅氧烷、六甲基(17.73%)和16-孕烯醇酮(11.30%)是山茱萸叶中最丰富的生物活性成分。矿物分析表明,山茱叶中含有大量的微量元素Ca(915.40±9.50)、K(2083.30±15.00)、P(511.26±4.70)、Mg(271.25±7.20)、Na(9.98±1.06),以及大量的微量元素Fe(10.60±1.30)、Mn(2.55±0.27)、zn(2.70±0.11)、Cu(1.32±0.08),均以毫克/ 100g (Mg /100)计。叶片中微量含有维生素A、维生素C、维生素E、烟酸(B3)、硫胺素(B1)、核黄素(B2)、吡哆醇(B6)、维生素D、维生素K等维生素。体外抗氧化活性显示出显著(p<0.05)剂量依赖性的自由基清除活性。抗炎分析表明,溶血抑制百分比(20-100µg/mL干重基础)在4.1% ~ 18%范围内。对蛋白质变性的抑制率为29.0 ~ 71.0%,对蛋白酶的抑制率为16 ~ 30.0%,对脂氧合酶的抑制率为8.2 ~ 34.5%。本研究为巴塔塔叶作为具有可观营养价值的新型叶菜的利用提供了依据,也为巴塔塔叶中生物活性物质作为潜在的新药候选物提供了依据。
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