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Anti-Inflammatory Antidiabetic Properties and In Silico Modeling of Cucurbitane-Type Triterpene Glycosides from Fruits of an Indian Cultivar of

机译:印度栽培品种果实抗炎症抗糖尿病性能和甘草型三萜糖苷的硅型

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摘要

Diabetes mellitus is a chronic disease and one of the fastest-growing health challenges of the last decades. Studies have shown that chronic low-grade inflammation and activation of the innate immune system are intimately involved in type 2 diabetes pathogenesis. Momordica charantia L. fruits are used in traditional medicine to manage diabetes. Herein, we report the purification of a new 23-O-β-d-allopyranosyl-5β,19-epoxycucurbitane-6,24-diene triterpene (charantoside XV, 6) along with 25ξ-isopropenylchole-5(6)-ene-3-O-β-d-glucopyranoside (1), karaviloside VI (2), karaviloside VIII (3), momordicoside L (4), momordicoside A (5) and kuguaglycoside C (7) from an Indian cultivar of Momordica charantia. At 50 µM compounds, 2–6 differentially affected the expression of pro-inflammatory markers IL-6, TNF-α, and iNOS, and mitochondrial marker COX-2. Compounds tested for the inhibition of α-amylase and α-glucosidase enzymes at 0.87 mM and 1.33 mM, respectively. Compounds showed similar α-amylase inhibitory activity than acarbose (0.13 mM) of control (68.0–76.6%). Karaviloside VIII (56.5%) was the most active compound in the α-glucosidase assay, followed by karaviloside VI (40.3%), while momordicoside L (23.7%), A (33.5%), and charantoside XV (23.9%) were the least active compounds. To better understand the mode of binding of cucurbitane-triterpenes to these enzymes, in silico docking of the isolated compounds was evaluated with α-amylase and α-glucosidase.
机译:糖尿病是一种慢性疾病,以及过去几十年的增长最快的健康挑战之一。研究表明,慢性低级炎症和先天免疫系统的激活密切相关,患2型糖尿病发病机制。 Momordica Charantia L.果实用于传统医学以管理糖尿病。在此,我们报告了新的23-O-β-D-丙酸酯-5β,19-环氧毛细血管-6,24-二烯三萜(Charantoside XV,6)以及25-异烯基糠-5(6) - 3-O-β-D-吡喃吡喃糖苷(1),karaviloside vi(2),卡拉金脲viii(3),MomordicoSide L(4),MomordicoIne A(5)和Kuguaglycoside C(7)来自苦瓜的印度美品种。在50μM化合物中,2-6差异地影响促炎标记物IL-6,TNF-α和InOS的表达,以及线粒体标记COX-2。用于抑制α-淀粉酶和α-葡糖苷酶的化合物,分别为0.87mm和1.33mm。化合物显示出与对照(68.0-76.6%)的氨基糖(0.13mm)相似的α-淀粉酶抑制活性。 Karaviloside VIII(56.5%)是α-葡糖苷酶测定中最活性的化合物,其次是karaviloside VI(40.3%),而MOLORDICOSIDE L(23.7%),A(33.5%)和Charantoside XV(23.9%)是最不活跃的化合物。为了更好地理解葫芦烷 - 三萜烯对这些酶的结合模式,用α-淀粉酶和α-葡萄糖苷酶评价分离的化合物的硅对接。

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