| Literature DB >> 24487567 |
Jiaqi Wu1, Wei Peng1, Rongxin Qin1, Hong Zhou2.
Abstract
Crataegus pinnatifida (Hawthorn) is widely distributed in China and has a long history of use as a traditional medicine. The fruit of C. pinnatifida has been used for the treatment of cardiodynia, hernia, dyspepsia, postpartum blood stasis, and hemafecia and thus increasing interest in this plant has emerged in recent years. Between 1966 and 2013, numerous articles have been published on the chemical constituents, pharmacology or pharmacologic effects and toxicology of C. pinnatifida. To review the pharmacologic advances and to discuss the potential perspective for future investigation, we have summarized the main literature findings of these publications. So far, over 150 compounds including flavonoids, triterpenoids, steroids, monoterpenoids, sesquiterpenoids, lignans, hydroxycinnamic acids, organic acids and nitrogen-containing compounds have been isolated and identified from C. pinnatifida. It has been found that these constituents and extracts of C. pinnatifida have broad pharmacological effects with low toxicity on, for example, the cardiovascular, digestive, and endocrine systems, and pathogenic microorganisms, supporting the view that C. pinnatifida has favorable therapeutic effects. Thus, although C. pinnatifida has already been widely used as pharmacological therapy, due to its various active compounds, further research is warranted to develop new drugs.Entities:
Mesh:
Substances:
Year: 2014 PMID: 24487567 PMCID: PMC6271784 DOI: 10.3390/molecules19021685
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Chemical compounds isolated from Chinese Hawthorn.
| Classification | No. | Chemical component | Part of Plant | Reference |
|---|---|---|---|---|
| Flavonoids | Apigenin | Leaves | [ | |
| Luteolin | Leaves | [ | ||
| Orientin | Leaves | [ | ||
| Isoorientin | Leaves | [ | ||
| Vitexin | Flower | [ | ||
| Vitexin rhamnoside | Flower | [ | ||
| Isovitexin | Leaves | [ | ||
| Hyperoside | Leaves | [ | ||
| Pinnatifinoside A | Leaves | [ | ||
| Pinnatifinoside B | Leaves | [ | ||
| Pinnatifinoside C | Leaves | [ | ||
| Pinnatifinoside D | Leaves | [ | ||
| Pinnatifinoside I | Leaves | [ | ||
| 3′′′, 4′′′-di- | Leaves | [ | ||
| Schaftoside | Leaves | [ | ||
| Isoschaftoside | Leaves | [ | ||
| Neoschaftoside | Leaves | [ | ||
| Neoisoschaftoside | Leaves | [ | ||
| Cratenacin | Leaves | [ | ||
| Acetylvitexin | Flower | [ | ||
| Crataequinone B | Leaves | [ | ||
| Kaempferol | Leaves | [ | ||
| Quercetin | Leaves | [ | ||
| Bioquercetin | Leaves | [ | ||
| Herbacetin | Leaves | [ | ||
| Santin | Leaves | [ | ||
| 5-Hydroxyauranetin | Leaves | [ | ||
| Rutin | Leaves | [ | ||
| 8-Methoxykaempferol | Flower | [ | ||
| Pinnatifidin | Flower | [ | ||
| Kaempferol 3-neohesperidoside | Leaves,Fruit | [ | ||
| 8-Methoxykaempferol 3-neohesperidoside | Leaves,Fruit | [ | ||
| Naringenin-5,7-di-glucoside | Leaves | [ | ||
| Eriodictyol-5,3′-di-glucoside | Leaves | [ | ||
| (+)-Taxifolin | Leaves | [ | ||
| (+)-Taxifolin 3- | Leaves | [ | ||
| (+)-Taxifolin 3- | Leaves | [ | ||
| Crateside | Leaves | [ | ||
| (+)-Catechin | Leaves | [ | ||
| (−) | Leaves | [ | ||
| Leucocyanidin | Fruit | [ | ||
| Proanthocyanidin A2 | Leaves, Flower | [ | ||
| Procyanidin B2 | Leaves, Flower | [ | ||
| Procyanidin B4 | Leaves, Flower | [ | ||
| Procyanidin B5 | Leaves, Flower | [ | ||
| Procyanidin C1 | Leaves, Flower | [ | ||
| Procyanidin D1 | Leaves, Flower | [ | ||
| Epicatechin-(4β→6)-Epicatechin-(4β→8)- epicatechin | Leaves, Flower | [ | ||
| Epicatechin-(4β→8)- epicatechin-(4β→6)-epicatechin | Leaves, Flower | [ | ||
| Procyanidin E1 | Leaves, Flower | [ | ||
| Triterpenoids & Steroids | Ursolic acid | Fruit | [ | |
| 2α,3β,19α-trihydroxyl ursolic acid | Leaves | [ | ||
| Corosolic acid | Fruit | [ | ||
| Cuneataol | Fruit | [ | ||
| Cycloartenol | Stem, Leaves | [ | ||
| Uvaol | Fruit | [ | ||
| Oleanolic acid | Seeds | [ | ||
| Maslinic acid | Fruit | [ | ||
| Butyrospermol | Stem, Leaves | [ | ||
| 24-Methylene-24-dihydrolanosterol | Stem, Leaves | [ | ||
| Betulin | Fruit | [ | ||
| 18,19-seco,2α,3β-Dihydroxy-19-oxo-urs-11,13(18)-dien-28-oic acid | Leaves | [ | ||
| β-Sitosterol | Fruit | [ | ||
| β-Daucosterol | Fruit | [ | ||
| Stigmosterol | Fruit | [ | ||
| 24-Methylene-24-dihydrolanosterol | Stem, Leaves | [ | ||
| Monoterpenes & sesquiterpenes | 3,9-Dihydroxymegastigma-5-ene | Leaves | [ | |
| (3 | Leaves | [ | ||
| (3 | Leaves | [ | ||
| (6 | Leaves | [ | ||
| Linarionoside C | Leaves | [ | ||
| Linarionoside A | Leaves | [ | ||
| Linarionoside B | Leaves | [ | ||
| 3β- | Leaves | [ | ||
| Icariside B6 | Leaves | [ | ||
| Pisumionoside | Leaves | [ | ||
| (3 | Leaves | [ | ||
| (6 | Leaves | [ | ||
| (6 | Leaves | [ | ||
| 4-[4β-O-β- | Leaves | [ | ||
| (3 | Leaves | [ | ||
| (3 | Leaves | [ | ||
| 1β,9α-Dihydroxyeudesm-3-en-5β,6α,7α,11α H-12,6-olide | Fruit | [ | ||
| (5 | Leaves | [ | ||
| (5 | Leaves | [ | ||
| 5-Ethenyl-2-[2-O-β- | Leaves | [ | ||
| Gibberellic acid | Fruit | [ | ||
| Lignans | (2,3-Dihydro-2-(4- | Leaves | [ | |
| Shanyenoside A | Leaves | [ | ||
| (7 | Leaves | [ | ||
| (−)-2a- | Leaves | [ | ||
| Tortoside A | Leaves | [ | ||
| Verbascoside | Leaves | [ | ||
| Acernikol-4′′- | Leaves | [ | ||
| Leaves | [ | |||
| (7 | Leaves | [ | ||
| Pinnatifidanin C I | Seeds | [ | ||
| Pinnatifidanin C II | Seeds | [ | ||
| Pinnatifidanin C III | Seeds | [ | ||
| Pinnatifidanin C IV | Seeds | [ | ||
| Pinnatifidanin C V | Seeds | [ | ||
| Pinnatifidanin C VI | Seeds | [ | ||
| Pinnatifidanin C VII | Seeds | [ | ||
| Pinnatifidanin C VIII | Seeds | [ | ||
| Pinnatifidanin B I | Seeds | [ | ||
| Pinnatifidanin B II | Seeds | [ | ||
| Pinnatifidanin B III | Seeds | [ | ||
| Pinnatifidanin B IV | Seeds | [ | ||
| Pinnatifidanin B V | Seeds | [ | ||
| Pinnatifidanin B VI | Seeds | [ | ||
| Pinnatifidanin B VII | Seeds | [ | ||
| Pinnatifidanin B VIII | Seeds | [ | ||
| Pinnatifidanin B IX | Seeds | [ | ||
| Hydroxycinnamic acids | Chlorogenic acid | Leaves | [ | |
| β-Coumaric acid | Fruit | [ | ||
| Caffeic acid | Fruit | [ | ||
| Ferulic acid | Fruit | [ | ||
| Organic acids | Benzoic acid | Leaves | [ | |
| ( | Seed | [ | ||
| Gallic acid | Seed | [ | ||
| Protocatechuic acid | Seed | [ | ||
| Anisic acid | Fruit | [ | ||
| Vanillic acid | Fruit | [ | ||
| Syringic acid | Fruit | [ | ||
| Gentisic acid | Fruit | [ | ||
| Malic acid | Fruit | [ | ||
| Citric acid | Fruit | [ | ||
| Quinic acid | Fruit | [ | ||
| Pyruvic acid | Fruit | [ | ||
| Tartaric acid | Fruit | [ | ||
| Succinic acid | Fruit | [ | ||
| Fumaric acid | Seed | [ | ||
| Ascorbic acid | Shoot | [ | ||
| 2-(4-Hydroxy-2-benzyl) malic acid | Seed | [ | ||
| Palmitic acid | Fruit | [ | ||
| Stearic acid | Fruit | [ | ||
| Oleic acid | Fruit | [ | ||
| Linoleic acid | Fruit | [ | ||
| Nitrogenous compounds | Isobutylamine | Leaves | [ | |
| Ethylamine | Leaves | [ | ||
| Dimethylamine | Leaves | [ | ||
| Trimethylamine | Leaves | [ | ||
| Isoamyl amine | Leaves | [ | ||
| Ethanolamine | Leaves | [ | ||
| Choline | Leaves | [ | ||
| Acetylcholine | Leaves | [ | ||
| Spermindine | Leaves | [ | ||
| Leaves | [ | |||
| Tyramine | Leaves | [ | ||
| Phenylethylamine | Leaves | [ | ||
|
| Hentriacontane | Fruit | [ | |
| Hexadecanoic acid, octaconsyl ester | Fruit | [ | ||
| Eicosanoic acid, octatriacontyl ester | Fruit | [ | ||
| Nonacosan-10-ol | Fruit | [ | ||
| 2,8-Dihydroxy-3,4,7-trimethoxydibenzofuran | Bark, sapwood | [ | ||
| ( | Leaves | [ | ||
| ( | Leaves | [ | ||
| ( | Leaves | [ |
Figure 1Chemical structures of flavones in C. pinnatifida.
Figure 2Chemical structures of flavonols in C. pinnatifida.
Figure 3Chemical structures of flavanones and flavanonols.
Figure 4Chemical structures of flavanols and the polymers of flavanols in C. pinnatifida.
Figure 5Chemical structures of triterpenoids in C. pinnatifida.
Figure 6Chemical structures of steroids in C. pinnatifida.
Figure 7Chemical structures of monoterpenoids and sesquiterpenoids in C. pinnatifida.
Figure 8Chemical structures of lignans in C. pinnatifida.
Figure 9Chemical structures of hydroxycinnamic acids in C. pinnatifida.
Figure 10Chemical structures of organic acids in C. pinnatifida.
Figure 11Chemical structures of nitrogen-containing compounds in C. pinnatifida.
Figure 12Chemical structures of other compounds in C. pinnatifida.