白茅根为禾本科植物白茅Imperata cylindricavar. major的干燥根茎,为传统的药食同源中药材,具有极大的药用和食用价值,且在民间使用广泛。该药材现已分离鉴定出149个化学成分,其中主要含有三萜类、酚酸类及黄酮类化学成分。研究表明,白茅根具有凉血止血,清热利尿、抗菌抗炎、抗肿瘤及抗氧化等药理活性。本文对近年来白茅根的化学成分及药理活性予以综述。 Imperata cylindricavar. major belongs to Poaceae family, its rhizome is a traditional medicinal and food homologous Chinese medicinal herb, which has great medicinal and edible value, and is widely used in Chinese folk. To date, 149 chemical constituents have been isolated and identified from the rhizome of I. cylindrica. Among these compounds, triterpenoids, phenolic acids, and flavonoids are the major constituents. Pharmacological activity research shows that the rhizome of I. cylindrica has a wide range of therapeutic potential, such as cooling blood and hemostasis, clearing heat and diuresis, antibacterial and anti-inflammatory, anti-tumor and antioxidant. This work reviews its chemical components and pharmacological activities in recent years.
白茅根为禾本科植物白茅Imperata cylindricavar. major的干燥根茎,为传统的药食同源中药材,具有极大的药用和食用价值,且在民间使用广泛。该药材现已分离鉴定出149个化学成分,其中主要含有三萜类、酚酸类及黄酮类化学成分。研究表明,白茅根具有凉血止血,清热利尿、抗菌抗炎、抗肿瘤及抗氧化等药理活性。本文对近年来白茅根的化学成分及药理活性予以综述。
白茅根,化学成分,药理活性
Jia Li
School of Pharmaceutical Sciences and Yunnan Provincial Key Laboratory of Pharmacology for Natural Products, Kunming Medical University, Kunming Yunnan
Received: Jul. 12th, 2023; accepted: Jul. 21st, 2023; published: Aug. 11th, 2023
Imperata cylindricavar. major belongs to Poaceae family, its rhizome is a traditional medicinal and food homologous Chinese medicinal herb, which has great medicinal and edible value, and is widely used in Chinese folk. To date, 149 chemical constituents have been isolated and identified from the rhizome of I. cylindrica. Among these compounds, triterpenoids, phenolic acids, and flavonoids are the major constituents. Pharmacological activity research shows that the rhizome of I. cylindrica has a wide range of therapeutic potential, such as cooling blood and hemostasis, clearing heat and diuresis, antibacterial and anti-inflammatory, anti-tumor and antioxidant. This work reviews its chemical components and pharmacological activities in recent years.
Keywords:Imperata cylindrica, Chemical Components, Pharmacological Activities
Copyright © 2023 by author(s) and beplay安卓登录
This work is licensed under the Creative Commons Attribution International License (CC BY 4.0).
http://creativecommons.org/licenses/by/4.0/
白茅Imperata cylindrica var. major (I. cylindrica)为禾本科白茅属植物,其根茎可以食用,处于花苞时期的花穗亦可鲜食,白茅根为白茅的干燥根茎,如图1所示,是传统常用药食同源中药材之一,始载于《神农本草经》 [
图1. 白茅根。2023年1月,作者摄于四川泸州
三萜类化合物广泛存在于药用植物之中,是以异戊二烯为结构单元的一类天然化合物,其具有降血糖、抗氧化保肝等药理活性 [
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 芦竹素 | C31H52O | 440.40 | [
|
2 | 羊齿烯醇 | C30H50O | 426.39 | [
|
3 | 白茅素 | C31H52O | 440.40 | [
|
4 | 异乔木萜醇 | C30H50O | 426.39 | [
|
5 | 西米杜鹃醇 | C30H50O | 426.39 | [
|
6 | 木醛酮 | C30H50O | 426.39 | [
|
7 | 乔木萜醇 | C30H50O | 426.39 | [
|
8 | 乔木萜醇甲醚 | C31H52O | 440.40 | [
|
9 | 乔木萜酮 | C30H48O | 424.37 | [
|
10 | 粘霉酮 | C30H48O | 424.37 | [
|
11 | 14-epiarbor-7-en-3β-ol | C30H50O | 426.39 | [
|
12 | 14-epiarbor-7-en-3β-yl formate | C31H50O2 | 454.38 | [
|
13 | 14-epiarbor-7-en-3-one | C30H48O | 424.37 | [
|
14 | α-香树脂酮 | C30H48O | 424.37 | [
|
15 | β-香树脂酮 | C30H48O | 424.37 | [
|
16 | impallidin | C31H50O | 440.40 | [
|
17 | impallidol | C30H50O | 426.39 | [
|
18 | impallidin ozonide (3a, 3b) | C31H52O4 | 488.39 | [
|
19 | trisnorimpallidin aldehyde | C28H46O2 | 414.35 | [
|
20 | tetranorimpallidin aldehyde | C27H44O2 | 400.33 | [
|
21 | 3-episimiarenol | C30H50O | 426.39 | [
|
22 | fern-9(11)-en-3-one | C30H40O8 | 424.37 | [
|
23 | fern-9(11)-en-3β-ol | C30H50O | 426.39 | [
|
24 | α-香树素 | C30H50O | 426.39 | [
|
25 | β-香树脂醇 | C30H50O | 426.39 | [
|
26 | gultinol | C30H50O | 426.39 | [
|
27 | fernenone | C30H48O | 424.37 | [
|
28 | 羽扇豆醇 | C30H50O | 426.39 | [
|
29 | 环阿屯醇 | C30H50O | 426.39 | [
|
表1. 白茅根中三萜类化合物
白茅根中的酚类成分可能为其发挥体外抗炎活性的主要成分 [
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 4-羟基-3-甲氧基苯基-β-d-吡喃木糖基(1→6)-O-β-d-吡喃葡萄糖苷 | C18H26O12 | 434.14 | [
|
2 | cuneataside D | C19H28O12 | 448.16 | [
|
3 | 3,4-二甲氧基苯基-β-d-吡喃葡萄糖苷 | C14H20O8 | 316.12 | [
|
4 | 3,4-dimethoxyphenyl-1-O-β-d-apiofuranosyl(1→6)-β-d-glucopyranoside | C19H28O12 | 448.16 | [
|
5 | 3,4-dimethoxyphenyl-O-α-L-rhamnopyranosyl(1→6)-β-d-glucopyranoside | C20H30O12 | 462.17 | [
|
6 | 3,4,5-trimethoxyphenyl 1-O-β-apiofuranosyl(1''→6')-β-glucopyranoside | C20H30O13 | 478.17 | [
|
7 | 水杨苷 | C13H18O7 | 286.11 | [
|
8 | 2'-O-(E)-p-coumaroylsalicin | C22H24O9 | 432.14 | [
|
9 | poliothrysoside | C20H22O9 | 406.13 | [
|
10 | salireposide | C20H22O9 | 406.13 | [
|
11 | 4'-hydroxybenzyl-2-hydroxybenzoate-1'-O-β-d-glucopyranoside | C20H22O12 | 422.12 | [
|
12 | 对羟基苯甲醛 | C7H6O2 | 122.04 | [
|
13 | 对羟基苯甲酸 | C7H6O3 | 138.03 | [
|
14 | 3,4-二羟基苯甲酸 | C7H6O4 | 154.03 | [
|
15 | 4-羟基-3,5-二甲氧基苯甲醛 | C9H10O4 | 182.06 | [
|
16 | 紫丁香酸 | C9H10O5 | 198.05 | [
|
17 | 丁香酸葡萄糖苷 | C15H20O10 | 360.11 | [
|
18 | 紫花松果菊苷A | C20H30O11 | 446.18 | [
|
19 | imperphenoside A | C20H28O12 | 460.16 | [
|
20 | imperphenol B | C13H16O7 | 284.09 | [
|
21 | imperphenol C | C13H14O7 | 282.07 | [
|
22 | imperphenoside D | C18H28O11 | 420.16 | [
|
23 | imperphenoside E | C18H28O11 | 420.16 | [
|
24 | imperphenoside F | C33H44O19 | 744.25 | [
|
25 | 异香兰素 | C8H8O3 | 152.05 | [
|
26 | cylindol A | C16H14O7 | 318.07 | [
|
27 | cylindol B | C16H14O7 | 318.07 | [
|
28 | α-联苯双酯 | C20H18O10 | 418.09 | [
|
表2. 白茅根中酚酸类化合物
白茅根中富含黄酮类化合物,其具有抗菌消炎、镇痛作用、止血作用和保肝作用等药理作用 [
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 5-甲氧基黄酮 | C16H12O3 | 252.08 | [
|
2 | 6-羟基-5-甲氧基黄酮 | C16H12O4 | 268.07 | [
|
3 | 5,2'-二甲氧基黄酮 | C17H14O4 | 282.09 | [
|
4 | tricin 4'-O-(erythro-β-guaiacylglyceryl) ether | C27H26O11 | 526.15 | [
|
5 | tricin 4'-O-(erythro-β-4-hydroxyphenylglyceryl) ether | C26H24O10 | 496.14 | [
|
6 | 黄酮 | C15H10O2 | 222.07 | [
|
7 | 4'-羟基-5-甲氧基黄酮 | C16H12O4 | 268.07 | [
|
8 | 5-羟基黄酮 | C15H10O3 | 238.06 | [
|
9 | 苜蓿素 | C17H14O7 | 330.07 | [
|
10 | 棕鳞矢车菊黄酮素 | C18H16O8 | 360.08 | [
|
11 | 汉黄芩素 | C16H12O5 | 284.07 | [
|
12 | quercetagetin-3,5,6,3'-tetramethyl ether | C19H18O8 | 374.10 | [
|
13 | 3,5-di-O-methyl-kaempferol | C17H14O6 | 314.08 | [
|
14 | 4'-甲氧基黄酮-6-O-β-d-吡喃葡萄糖苷 | C22H22O9 | 430.13 | [
|
15 | 5-羟基-8-O-β-d-吡喃葡萄糖基-2-(2-苯乙基)色酮 | C23H24O9 | 444.14 | [
|
16 | 5-羟基-2-苯乙烯基色酮 | C17H14O3 | 266.09 | [
|
17 | 5-2-[2-(2-羟基苯基)乙基]色酮 | C17H14O4 | 280.11 | [
|
18 | 8-羟基-2-(2-苯乙基)色酮 | C17H14O3 | 266.09 | [
|
19 | 2-(2-苯乙基)色酮-8-O-β-d-吡喃葡萄糖苷 | C23H24O8 | 428.15 | [
|
20 | 2-(2-苯乙基)色酮 | C17H14O2 | 250.10 | [
|
21 | 5-羟基-2-(2-苯乙基)色酮 | C17H14O3 | 266.09 | [
|
22 | 7-羟基-5-甲氧基-2-甲基色酮 | C11H10O4 | 206.07 | [
|
23 | 6-羟基-2-(2-苯乙基)色酮 | C17H14O3 | 266.09 | [
|
表3. 白茅根中黄酮类化合物
白茅根中分离鉴定的甾体类化合物较少,现只从中发现了7种甾体类化合物(见表4)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 谷甾醇 | C29H50O | 414.39 | [
|
2 | 油菜甾醇 | C28H50O | 402.39 | [
|
3 | 豆甾醇 | C29H48O | 412.37 | [
|
4 | 胡萝卜苷 | C35H60O6 | 576.44 | [
|
5 | 2-甲氧基雌酮 | C19H24O3 | 300.17 | [
|
6 | 11, 16-dihydroxypregn-4-ene-3, 20-dione | C21H30O4 | 346.21 | [
|
7 | β-谷甾醇-3-O-β-d-吡喃葡萄糖苷-6'-十四烷酸盐 | C21H30O4 | 346.21 | [
|
表4. 白茅根中甾体类化合物
据文献报道,现已从白茅根中分离出15种木脂素类化合物(见表5)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | imperlignanoside A | C31H42O14 | 638.26 | [
|
2 | imperlignanoside B | C31H42O15 | 654.25 | [
|
3 | imperlignanoside C | C31H42O15 | 654.25 | [
|
4 | imperlignanoside D | C34H40O18 | 736.22 | [
|
5 | imperlignanoside E | C25H30O12 | 522.17 | [
|
6 | impecyloside | C34H40O18 | 736.22 | [
|
7 | (7R,8R)-4,7,9,9'-tetrahydroxy-3,3'-dimethoxy-8-4'-oxyneolignan-7-O-β-d-glucopyranoside | C26H36O12 | 540.22 | [
|
8 | (7R,8S)-4,7,9,9'-tetrahydroxy-3,3'-dimethoxy-8-4'-oxyneolignan-7-O-β-d-glucopyranoside | C26H36O12 | 540.22 | [
|
9 | (–)-(7R,8R)-4,7,9,9'-tetrahydroxy-3,5,3'-trimethoxy-8-4'-oxyneolignan-7-O-β-d-gluco-pyranoside | C27H38O13 | 570.23 | [
|
10 | graminone A | C20H20O7 | 372.12 | [
|
11 | graminone B | C21H22O8 | 402.13 | [
|
12 | 1,2',4',6''-四乙酰基-3,6-二阿魏酸蔗糖苷 | C40H46O21 | 862.25 | [
|
13 | sucrose diester of 4,4'-dihydroxy-3,3'-dimethoxy-β-truxinic acid | C32H38O17 | 694.21 | [
|
14 | (–)-syringaresinol-4-O-β-d-glucopyranoside | C28H36O13 | 580.22 | [
|
15 | (6R,7S,8S)-7α-[(β-glucopyranosyl)oxy]lyoniresinol | C28H38O13 | 582.23 | [
|
表5. 白茅根中木脂素类化合物
据文献报道,现已从白茅根中分离出17种苯丙素类化合物(见表6)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 1-(3,4,5-三甲氧基苯基)-1,2,3-丙三醇 | C12H18O6 | 258.11 | [
|
2 | 1-O-对香豆酰基甘油酯 | C12H14O5 | 238.08 | [
|
3 | imperanene | C19H22O5 | 330.15 | [
|
4 | 4-羟基肉桂酸 | C9H8O3 | 164.05 | [
|
5 | 咖啡酸乙酯 | C11H12O4 | 208.07 | [
|
6 | 松柏醛 | C10H10O3 | 178.06 | [
|
7 | (+)-(7S,8S)-4-羟基-3-甲氧基苯基丙三醇 | C10H14O5 | 214.08 | [
|
8 | (+)-(7S,8S)-3-甲氧基-4-羟基苯基丙三醇-8-O-β-d-吡喃葡萄糖苷 | C16H24O10 | 376.14 | [
|
9 | (7S,8S)-syringoylglycerol | C11H16O6 | 244.09 | [
|
10 | 1-咖啡酰奎尼酸 | C16H18O9 | 354.10 | [
|
11 | 4-咖啡酰奎尼酸 | C16H18O9 | 354.10 | [
|
12 | 5-咖啡酰奎尼酸 | C16H18O9 | 354.10 | [
|
13 | 1-阿魏酰奎尼酸 | C17H20O9 | 368.11 | [
|
14 | 咖啡酸 | C9H8O4 | 180.04 | [
|
15 | 3-咖啡酰奎尼酸 | C16H18O9 | 354.10 | [
|
16 | 阿魏酸 | C10H10O4 | 194.06 | [
|
17 | 绿原酸 | C16H18O9 | 354.10 | [
|
表6. 白茅根中苯丙素类化合物
据文献报道,现已从白茅根中分离出5种香豆素类化合物(见表7)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 7-O-β-d-吡喃葡萄糖基-4-甲氧基-5-甲基香豆素 | C17H20O9 | 368.11 | [
|
2 | 4,7-二甲氧基-5-甲基香豆素 | C12H12O4 | 220.07 | [
|
3 | 5-甲基香豆酸甲酯3-O-β-吡喃葡萄糖苷 | C17H20O9 | 368.11 | [
|
4 | 5-methyl coumarilic acid methyl ester 3-O-α-L-rhamnopyranosyl(1→6)-β-d-glucopyranoside | C23H30O13 | 514.17 | [
|
5 | 7-羟基-4-甲氧基-5-甲基香豆素 | C11H10O4 | 206.06 | [
|
表7. 白茅根中香豆素类化合物
白茅根中含有部分小分子物质,如内酯类的白头翁素和薏苡素(见表8)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 白头翁素 | C10H8O4 | 192.04 | [
|
2 | 薏苡素 | C8H7NO3 | 165.04 | [
|
表8. 白茅根中内酯类化合物
白茅根多糖为白茅根的主要化学成分,其含量约占总提取物的80% [
宋伟峰 [
此外,据文献报道,白茅根中还含有有机酸类等化学成分(见表9)。
序号 | 化合物 | 分子式 | 分子量 | 参考文献 |
---|---|---|---|---|
1 | 草酸 | C2H2O4 | 90.03 | [
|
2 | 苹果酸 | C4H6O5 | 134.02 | [
|
3 | 柠檬酸 | C6H8O7 | 192.03 | [
|
4 | 酒石酸 | C4H6O6 | 150.02 | [
|
5 | 二咖啡酰奎尼酸 | C25H24O12 | 516.13 | [
|
6 | 3,4-二羟基丁酸 | C4H8O4 | 120.04 | [
|
7 | 香草酸 | C8H8O4 | 168.04 | [
|
8 | 对羟基苯甲酸乙酯 | C9H10O3 | 166.06 | [
|
9 | 5-羟甲基糠醛 | C6H6O3 | 126.03 | [
|
10 | 白茅根萜 | C15H20O2 | 232.15 | [
|
11 | 烟叶酮 | C13H18O | 190.14 | [
|
12 | impecylone | C14H14O4 | 245.09 | [
|
13 | de-acetylimpecyloside | C32H38O17 | 694.21 | [
|
14 | seguinoside K-4-methylether | C27H34O15 | 598.16 | [
|
15 | impecylenolide | C20H20O7 | 372.12 | [
|
16 | seguinoside K | C26H36O15 | 584.17 | [
|
17 | 3-O-咖啡酰基奎宁酸甲酯 | C17H20O9 | 368.11 | [
|
18 | (–)-4-O-阿魏酰奎宁酸甲酯 | C18H22O9 | 382.13 | [
|
19 | 5-O-阿魏酰奎宁酸 | C17H20O9 | 368.11 | [
|
20 | (6R,9S)-13-nor-5-carboxyblumenol C-9-O-β-glucoside | C19H30O9 | 402.19 | [
|
21 | (6S,9S)-roseoside | C19H30O8 | 386.19 | [
|
22 | (1R,2S)-2-hydroxycyclohexyl-2’-O-trans-p-coumaroyl-β-d-glucopyranoside | C21H28O9 | 424.17 | [
|
23 | glycerol-1-O-α-d-glucuronide 3-O-benzoyl ester | C16H20O10 | 372.11 | [
|
表9. 白茅根中有机酸及其它类化合物
白茅根化学成分的复杂性致使其药理活性的多样性。现代药理学研究表明,白茅根具有止血、抗菌、抗炎、保肝、利尿降压、免疫调节、抗氧化、抗癌、改善肾功能、神经保护和改善糖脂代谢等作用。
白茅根属于凉血止血药,在前期研究中对其止血作用描述颇多。韦乃球 [
李昌灵 [
已有多篇文献报道白茅根中酚酸类化学成分具有良好的抗炎作用。Ruan [
《本草纲目》中有关于白茅根“止吐衄诸血……肺热喘急,水肿,黄疸,解酒毒”的记载 [
前期研究表明白茅根水煎液能够治疗由湿热和阴虚生热导致的小便不利 [
吴浩 [
翁梁 [
Nayim [
卢渊 [
Ssempijja [
崔珏 [
白茅根不仅具有丰富的药用价值,而且还具有极大的食用价值。现国内已经开发了许多以白茅根为主的保健型饮料 [
白茅根作为传统常用药食同源的中药材之一,在药用和食用上均具有很大的开发前景。由于白茅根化学成分复杂,使其具有多种药理作用,近年来,关于白茅根及其提取物的抗氧化、抗肿瘤、抗炎、免疫调节、止血等药理作用研究已较为深入,然而,现未见关于白茅根的药物代谢与药代动力学的研究,因此,有待对其进一步研究,为后续白茅根的开发利用提供理论依据。
李 佳. 白茅根的研究进展Research Progress of Imperata cylindrica var. major[J]. 药物化学, 2023, 11(03): 174-187. https://doi.org/10.12677/HJMCe.2023.113022
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