Pervej Alom Barbhuiya, Diamond Pariong, Asif Pervice Alam, Tausif Mohammed Sanaur Rahman Mazumder, Satyabrat Sarma, Saikat Sen, Manash Pratim Pathak
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This review aims to summarize some potential EOs that have been reported to have anti-diabetic activity both in preclinical and clinical aspects while summarizing the probable mechanism of action. The authors went through a vast number of articles from various scientific databases like Google Scholar, PubMed, and Web of Science. It was found that EO from a total of 20 plants has been pre-clinically investigated to have anti-diabetic potential. Besides this, clinical studies have reported the antidiabetic efficacy of EOs from <i>Nigella sativa</i> and <i>Cuminum cyminum</i> at different concentrations. Bioactive phytoconstituents like carvacrol, thymol, α- pinene, <i>via</i> . obtained from EOs ameliorate DM by inhibiting α-GLUC, α-amylase, lipase enzymes and increasing GLUT-4 expression, AKT phosphorylation, <i>via</i> . Although fewer in number, EOs from plant sources have demonstrated significant efficacy in DM. 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引用次数: 0
摘要
糖尿病(DM)是一种代谢性疾病,2019 年有超过 420 万人死于此病。据报道,二甲双胍等治疗糖尿病的合成药物会诱发多种并发症和副作用。有报告称,植物精油已被用作降低血糖水平的草药。植物精油(EOs)是通过蒸汽蒸馏和多种溶剂从植物中提取的小分子的复杂组合。精油已显示出抗菌、消炎、保肝和降压的巨大功效。本综述旨在总结一些在临床前和临床方面被报道具有抗糖尿病活性的潜在环氧乙烷,同时总结其可能的作用机制。作者查阅了谷歌学术、PubMed 和 Web of Science 等各种科学数据库中的大量文章。结果发现,共有 20 种植物的环氧乙烷被临床前研究证实具有抗糖尿病的潜力。此外,临床研究还报告了不同浓度的 Nigella sativa 和 Cuminum cyminum 的环氧乙烷的抗糖尿病功效。从环氧乙烷中提取的生物活性植物成分,如香芹酚、百里酚、α-蒎烯等,通过抑制α-GLUC、α-淀粉酶、脂肪酶,增加GLUT-4的表达和AKT磷酸化,从而改善糖尿病。来自植物的环氧乙烷虽然数量较少,但对 DM 有显著疗效。适当阐明环氧乙烷的抗糖尿病功效可为药物发现和开发以及临床研究开辟新的途径。
Ameliorative Effects of Essential Oils on Diabetes Mellitus: A Review.
Diabetes mellitus (DM) is a metabolic disorder and is responsible for the death of more than 4.2 million people in 2019. Synthetic drugs for DM like metformin have been reported to induce numerous complications and side effects. Reports suggested that essential plant oil has been used as an herbal remedy to lower blood glucose levels. Essential oils (EOs) are complex combinations of small molecules obtained from plants via the process of steam distillation and several solvents. EOs have already shown great efficacy as antimicrobials, anti-inflammatory, hepatoprotective, and anti-hypertensive. This review aims to summarize some potential EOs that have been reported to have anti-diabetic activity both in preclinical and clinical aspects while summarizing the probable mechanism of action. The authors went through a vast number of articles from various scientific databases like Google Scholar, PubMed, and Web of Science. It was found that EO from a total of 20 plants has been pre-clinically investigated to have anti-diabetic potential. Besides this, clinical studies have reported the antidiabetic efficacy of EOs from Nigella sativa and Cuminum cyminum at different concentrations. Bioactive phytoconstituents like carvacrol, thymol, α- pinene, via . obtained from EOs ameliorate DM by inhibiting α-GLUC, α-amylase, lipase enzymes and increasing GLUT-4 expression, AKT phosphorylation, via . Although fewer in number, EOs from plant sources have demonstrated significant efficacy in DM. Proper elucidation of the anti-diabetic efficacy of the EOs may open up new avenues for drug discovery and development subjected to clinical studies.
期刊介绍:
Current Topics in Medicinal Chemistry is a forum for the review of areas of keen and topical interest to medicinal chemists and others in the allied disciplines. Each issue is solely devoted to a specific topic, containing six to nine reviews, which provide the reader a comprehensive survey of that area. A Guest Editor who is an expert in the topic under review, will assemble each issue. The scope of Current Topics in Medicinal Chemistry will cover all areas of medicinal chemistry, including current developments in rational drug design, synthetic chemistry, bioorganic chemistry, high-throughput screening, combinatorial chemistry, compound diversity measurements, drug absorption, drug distribution, metabolism, new and emerging drug targets, natural products, pharmacogenomics, and structure-activity relationships. Medicinal chemistry is a rapidly maturing discipline. The study of how structure and function are related is absolutely essential to understanding the molecular basis of life. Current Topics in Medicinal Chemistry aims to contribute to the growth of scientific knowledge and insight, and facilitate the discovery and development of new therapeutic agents to treat debilitating human disorders. The journal is essential for every medicinal chemist who wishes to be kept informed and up-to-date with the latest and most important advances.