1. Pharmacy College, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China
2. Key Laboratory of Modern Chinese Herbal Preparations Ministry of Education Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China
3. Basic Medical College, Jiangxi University of Traditional Chinese Medicine, Nanchang 330004, China
| Abstract: | Type 2 diabetes mellitus (T2D) is a heterogeneous disease with insulin deficiency and insulin resistance (IR) as the main etiology, and is often accompanied by complications. Volatile oil is a volatile oil liquid extracted from natural plants, which has many pharmacological effects such as regulating qi, relieving pain, inhibiting bacteria and reducing inflammation. In recent years, there have been numerous reports on the treatment of type 2 diabetes by natural plant volatile oil and its effective components, which has become one of the new directions in the treatment of type 2 diabetes. In this paper, the essential oil and its active components of natural plants are taken as the starting point, and the material basis, mechanism and signaling pathway of the essential oil in the treatment of type 2 diabetes mellitus and its complications at home and abroad in recent years are comprehensively analyzed and summarized. The essential oil and its active components such as carvacrol, paeonol, β-caryophylene are emphatically elaborated. IR is inhibited by protecting pancreaticβ-cells, inhibiting α-glucosidase activity, regulating the abundance and diversity of intestinal microbiota, and regulating glucose transporter 4 (GLUT4), adenylate activated protein kinase (AMPK), phosphatidylinositol-3 kinase (PI3K)/protein kinase B (AKT) signaling pathways. Various mechanisms of action can improve type 2 diabetes mellitus, in order to provide some reference and basis for the intervention of volatile oil in type 2 diabetes mellitus and the development of new green antidiabetic drugs. |
| Keywords: | Essential Oil; T2DM; IR; MAPK; PI3K/AKT |
| DOI: | 10.57237/j.cmrd.2022.01.003 |
| [1] | Palumbo C, Nicolaci N, Manna A, et al. Association between central diabetes insipidus and type 2 diabetes mellitus [J]. Medicina, 2018, 78 (2): 127-130. |
| [2] | Wan J, Liu B. Construction of lncRNA-related ceRNA regulatory network in diabetic subdermal endothelial cells [J]. Bioengineered, 2021, 12 (1): 2592-2602. |
| [3] | Zumin S. Prevalence of diabetes among men and women in China [J]. The New England journal of medicine, 2010, 362 (25): 2425- 2426. |
| [4] | 中华医学会糖尿病学分会. 中国2型糖尿病防治指南(2017年版) [J]. 中国实用内科杂志, 2018, 38 (04): 292-344. |
| [5] | Xu Y, Wang L, He J, et al. Prevalence and Control of Diabetes in Chinese Adults [J]. Jama the Journal of the American Medical Association, 2013, 310 (9): 948-958. |
| [6] | 李海玲, 董陆玲, 杨亚萍, 等. 清肺泻肝汤治疗2型糖尿病合并非酒精性脂肪性肝病的疗效观察 [J]. 辽宁中医杂志, 2022: 1-9. |
| [7] | 黄洁桦. 大柴胡汤合桂枝茯苓丸治疗肥胖2型糖尿病肝胃郁热夹瘀证的临床研究 [D]. 2020, 广西中医药大学. |
| [8] | 黄妍, 刘秀, 陶薇, 等. 五味子化学成分及抗2型糖尿病活性研究进展 [J]. 中草药, 2019, 50(07): 1739-1744. |
| [9] | Alkhalidy H, Sarhan W, Al-Gharaibeh M, et al. Mentha Longifolia L. Improves Antioxidant Status, Glucose Tolerance, Insulin Resistance and Hepatic Glucose Production In Diet-Induced Obesity. Current Developments in Nutrition, 2021, 5 (Supplement_2): 294-294. |
| [10] | Karegar S J, Sattari R, Ghavamzadeh S. Evaluation the effect of 50 and 100mg doses of Cuminum cyminum essential oil on glycemic indices, insulin resistance and serum inflammatory factors on patients with diabetes type II: A double-blind randomized placebo-controlled clinical trial. Journal of Traditional & Complementary Medicine, 2017, 7 (3): 332-338. |
| [11] | Singh P, Jayaramaiah R H, Agawane S B, et al. Potential Dual Role of Eugenol in Inhibiting Advanced Glycation End Products in Diabetes: Proteomic and Mechanistic Insights. Scientific Reports, 2016, 6 (1): 18798-18811. |
| [12] | 臧皓, 张露云, 于帅,等. 百里香挥发油及其主成分的生物活性研究 [J]. 通化师范学院学报, 2020, 41(10): 19-24. |
| [13] | 姚伟列, 颜雅青, 欧典强,等. 三酰甘油/高密度脂蛋白胆固醇比值与糖尿病并发症的关系研究进展 [J]. 中国全科医学, 2021, 24 (17): 2232-2237. |
| [14] | 白颖, 暴雪丽, 赵丹丹,等. 中医药干预胰岛素抵抗机制研究进展 [J]. 世界中医药, 2021, 16 (7): 1156-1160+1165. |
| [15] | 段浩茹, 李瑞, 李秋艳,等. 电针调节肝脏PPARα, GLUT4表达改善ZDF大鼠糖脂代谢的机制研究 [J]. 针灸临床杂志, 2021, 37 (8): 64-69. |
| [16] | 柴可夫, 覃志成, 王亚丽. 北五味子油对糖尿病小鼠抗氧化及葡萄糖转运蛋白4mRNA表达的影响[J]. 中医药学刊, 2006, 24 (07): 1199-1201. |
| [17] | Anand P, Murali K Y, Tandon V, et al. Insulinotropic effect of cinnamaldehyde on transcriptional regulation of pyruvate kinase, phosphoenolpyruvate carboxykinase, and GLUT4 translocation in experimental diabetic rats [J]. Chemico-Biological Interactions, 2010, 186(1):72-81. |
| [18] | Camacho S, Michlig S, Senarclens-Bezen C D, et al. Anti-Obesity and Anti-Hyperglycemic Effects of Cinnamaldehyde via altered Ghrelin Secretion and Functional impact on Food Intake and Gastric Emptying [J]. Scientific Reports, 2015, 5 (1): 1-10. |
| [19] | Zuo J, Zhao D, Yu N, et al. Cinnamaldehyde Ameliorates Diet-Induced Obesity in Mice by Inducing Browning of White Adipose Tissue[J]. Cellular Physiology and Biochemistry, 2017, 42(4):1514-1525. |
| [20] | Jansen T, M Kvandová, Daiber A, et al. The AMP-Activated Protein Kinase Plays a Role in Antioxidant Defense and Regulation of Vascular Inflammation [J]. Antioxidants, 2020, 9(6):525-541. |
| [21] | 李泳洁, 王江. AMPK在糖尿病缺血性心肌病中的作用研究进展[J]. 医学综述, 2021, 27(08): 1601-1605. |
| [22] | Al-Trad B, Alkhateeb H, Alsmadi W, et al. Eugenol ameliorates insulin resistance, oxidative stress and inflammation in high fat-diet/streptozotocin-induced diabetic rat [J]. Life Sciences, 2018, 216(1): 183-188. |
| [23] | Ha D T, Trung T N, Hien T T, et al. Selected compounds derived from Moutan Cortex stimulated glucose uptake and glycogen synthesis via AMPK activation in human HepG2 cells [J]. Journal of Ethnopharmacology, 2010, 131 (2): 417-424. |
| [24] | Huang X, Liu G, Guo J, et al. The PI3K/AKT pathway in obesity and type 2 diabetes [J]. International journal of biological sciences, 2018, 14 (11): 1483-1496. |
| [25] | 吴金梅, 范颖, 刘倩, 等. 基于PI3K/Akt信号通路探讨黄芪葛根配伍对糖尿病大鼠骨骼肌糖代谢的影响 [J]. 辽宁中医杂志, 2019, 46 (06): 1308-1311. |
| [26] | 彭孟凡, 任珍, 李鸣,等. 基于PI3K/AKT通路的小茴香总黄酮对多囊卵巢综合征伴胰岛素抵抗模型大鼠的影响 [J]. 中华中医药杂志, 2021. 36(06): 3229-3234. |
| [27] | 刘芸, 马凯婷, 袁晓悦, 等. 香芹酚对STZ诱导的1型糖尿病小鼠主动脉血管重构的影响 [J]. 中国药理学通报, 2018, 34 (10): 1439-1443. |
| [28] | Murali R, Karthikeyan A, Saravanan R, et al. Protective Effects of d-Limonene on Lipid Peroxidation and Antioxidant Enzymes in Streptozotocin-Induced Diabetic Rats. Basic & Clinical Pharmacology & Toxicology, 2013. 112 (3): 175-181. |
| [29] | Bacanli M, AH Gül, Aydin S, et al. d-limonene ameliorates diabetes and its complications in streptozotocin-induced diabetic rats. [J]. Food & Chemical Toxicology An International Journal Published for the British Industrial Biological Research Association, 2017, 110 (1): 434-442. |
| [30] | 王丽婧, 孙浩. 丹皮酚对PA诱导的大鼠血管内皮细胞的胰岛素抵抗和氧化应激的拮抗作用 [J]. 毒理学杂志, 2020, 34 (02): 69-73+94. |
| [31] | 苏祖清, 曾科学, 孙朝跃,等. 白术挥发油对代谢综合征大鼠糖脂代谢的影响 [J]. 亚太传统医药, 2018, 14(10): 10-13. |
| [32] | Han X, Wang Y, Zhang P, et al. Kazak faecal microbiota transplantation induces short-chain fatty acids that promote glucagon-like peptide-1 secretion by regulating gut microbiota in db/db mice. [J]. Pharmaceutical biology, 2021, 59(1): 1077-1087. |
| [33] | 郑礼胜, 邰文, 兰新新,等. 基于肠道菌群新靶点的中药防治糖尿病研究进展 [J]. 药物评价研究, 2017, 40 (8): 1173-1181. |
| [34] | Hui S, Huang L, Wang X L, et al. Capsaicin improves glucose homeostasis by enhancing glucagon-like peptide-1 secretion through the regulation of bile acid metabolism via the remodeling of the gut microbiota in male mice. [J]. FASEB journal: official publication of the Federation of American Societies for Experimental Biology, 2020, 34 (6). 8558-8573. |
| [35] | 彭喜春, 张志超, 黄丽珠,等. 肉桂精油对大鼠肠道梭菌属Ⅳ簇菌群和拟杆菌群的影响 [J]. 中草药, 2013, 44 (4): 437-442. |
| [36] | Wang J, He Y, Yu D, et al. Perilla oil regulates intestinal microbiota and alleviates insulin resistance through the PI3K/AKT signaling pathway in type-2 diabetic KKAy mice [J]. Food and Chemical Toxicology, 2020, 135 (4): 110965-110974. |
| [37] | Sanna S, Zuydam N V, Mahajan A, et al. Causal relationships among the gut microbiome, short-chain fatty acids and metabolic diseases [J]. Nature Genetics, 2019, 51 (4): 600-605. |
| [38] | 张晓霞, 穆静, 杨正飞. 富含α-亚麻酸的亚麻籽油通过调节肠道菌群和抑制炎症改善大鼠2型糖尿病 [J]. 中国药理学与毒理学杂志, 2021, 35 (10): 805. |
| [39] | Akolade J O, Usman L A, Okereke O E, et al. Antidiabetic potentials of essential oil extracted from the leaves of Hoslundia opposita Vahl. [J]. Journal of Medicinal Food, 2014, 17 (10): 1122-1128. |
| [40] | Liping A, Yingping W, Chunmei W, et al. Protective effect of Schisandrae chinensis oil on pancreatic β-cells in diabetic rats. Endocrine, 2015, 48 (3): 818-825. |
| [41] | Peng C H, Ker Y B, Weng C F, et al. Insulin Secretagogue Bioactivity of Finger Citron Fruit (Citrus medicaL. var.SarcodactylisHort, Rutaceae) [J]. Journal of Agricultural and Food Chemistry, 2009.57(19): 8812-8819. |
| [42] | Mahendran G, Rahman L. Ethnomedicinal, phytochemical and pharmacological updates on Peppermint (Mentha × piperita L.)—A review [J]. Phytotherapy Research, 2020, 34 (9): 2088-2139. |
| [43] | Figueroa-Pérez M G, Pérez-Ramírez I F, Enciso-Moreno J A, et al. Diabetic nephropathy is ameliorated with peppermint (Mentha piperita ) infusions prepared from salicylic acid-elicited plants[J]. Journal of Functional Foods, 2018, 43 (1): 55-61. |
| [44] | 王娣, 程柏, 丁莉, 等. 百里香精油的提取工艺及化学成分分析[J]. 中国调味品,2019. 44 (07): 76-80+94. |
| [45] | 何燕珊, 王秋红. 白术及其复方治疗糖尿病的药理研究及临床应用研究进展 [J]. 广东药科大学学报, 2020, 36 (01): 155-159. |
| [46] | Wang Z, Tu Z, Xie X, et al. Perilla frutescens Leaf Extract and Fractions: Polyphenol Composition, Antioxidant, Enzymes (alpha-Glucosidase, Acetylcholinesterase, and Tyrosinase) Inhibitory, Anticancer, and Antidiabetic Activities. Foods, 2021. 10 (2): 315-334. |
| [47] | 鲁翠芳, 杨斌, 姚冬梅,等. 香芹酚对2型糖尿病小鼠星形胶质细胞损伤的保护作用 [J]. 重庆医科大学学报, 2021, 46 (12): 1486-1491. |
| [48] | 韩飞, 陈泣, 舒积成, 等. 湖北产牛至药材不同提取部位挥发油GC-MS分析 [J]. 中草药, 2015, 46 (13): 1887-1891. |
| [49] | 张淑雅, 李勇慧, 李佳, 等. 五种方法提取的牡丹皮挥发油成分比较 [J]. 现代食品科技, 2020, 36 (12): 103-110. |
| [50] | 王晓峰, 陈德斌, 刘美, 等. 利用GC-MS法测定不同产地化橘红的挥发油成分 [J]. 大众科技, 2019, 21 (10): 32-34. |
| [51] | 邸胜达, 姜子涛,李荣, 天然调味香料白豆蔻精油的研究进展[J]. 中国调味品, 2015. 40 (01): 123-127. |
| [52] | 俞浩,辛华夏,陈浩,等. 薄荷挥发油成分的气相色谱-质谱联用分析及抗衰老作用 [J]. 中药新药与临床药理, 2021, 32 (1): 73-78. |
| [53] | 美丽, 朱懿敏, 罗晶, 等. 丁香化学成分、药效及临床应用研究进展 [J]. 中国实验方剂学杂志, 2019, 25 (15): 222-227. |
| [54] | 卫克昭, 姚平安, 刘晓宁,等. 干姜对糖尿病性心肌病大鼠的心脏保护作用 [J]. 上海中医药杂志, 2018, 52 (7): 69-74. |
| [55] | 麦云珮, 张淑允, 窦纪梁, 等. 香芹酚对STZ诱导的1型糖尿病小鼠糖脂代谢的影响 [J]. 中国药理学通报, 2016, 32 (9): 1306-1310. |
| [56] | 陈红梅, 苏都那布其, 长春, 等. 白豆蔻挥发油对糖尿病肾病大鼠肾脏保护作用[J]. 中华中医药杂志,2017, 32 (9): 4227-4230. |
| [57] | 顾琦, 魏旭超, 刘露, 等. 基于网络药理学探讨辛热中药挥发油外用的药效物质基础及潜在分子机制 [J]. 中草药,2021, 52 (5): 1383-1392. |
| [58] | Sanna S, Zuydam N V, ahajan A, et al. Causal relationships among the gut microbiome, short-chain fatty acids and metabolic diseases [J]. Nature Genetics, 2019, 51 (4): 600-605. |
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