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柑橘类黄酮的用途和特性更新:抗癌、心血管及抗炎活性方面的新发现

Update on uses and properties of citrus flavonoids: new findings in anticancer, cardiovascular, and anti-inflammatory activity.

作者信息

Benavente-García O, Castillo J

机构信息

Research and Development Department of Nutrafur-Furfural Español S.A., Camino Viejo de Pliego s/n, 80320 Alcantarilla, Murcia, Spain.

出版信息

J Agric Food Chem. 2008 Aug 13;56(15):6185-205. doi: 10.1021/jf8006568. Epub 2008 Jul 2.

Abstract

Significantly, much of the activity of Citrus flavonoids appears to impact blood and microvascular endothelial cells, and it is not surprising that the two main areas of research on the biological actions of Citrus flavonoids have been inflammation and cancer. Epidemiological and animal studies point to a possible protective effect of flavonoids against cardiovascular diseases and some types of cancer. Although flavonoids have been studied for about 50 years, the cellular mechanisms involved in their biological action are still not completely known. Many of the pharmacological properties of Citrus flavonoids can be linked to the abilities of these compounds to inhibit enzymes involved in cell activation. Attempts to control cancer involve a variety of means, including the use of suppressing, blocking, and transforming agents. Suppressing agents prevent the formation of new cancers from procarcinogens, and blocking agents prevent carcinogenic compounds from reaching critical initiation sites, while transformation agents act to facilitate the metabolism of carcinogenic components into less toxic materials or prevent their biological actions. Flavonoids can act as all three types of agent. Many epidemiological studies have shown that regular flavonoid intake is associated with a reduced risk of cardiovascular diseases. In coronary heart disease, the protective effects of flavonoids include mainly antithrombotic, anti-ischemic, anti-oxidant, and vasorelaxant. It is suggested that flavonoids decrease the risk of coronary heart disease by three major actions: improving coronary vasodilatation, decreasing the ability of platelets in the blood to clot, and preventing low-density lipoproteins (LDLs) from oxidizing. The anti-inflammatory properties of the Citrus flavonoids have also been studied. Several key studies have shown that the anti-inflammatory properties of Citrus flavonoids are due to its inhibition of the synthesis and biological activities of different pro-inflammatory mediators, mainly the arachidonic acid derivatives, prostaglandins E 2, F 2, and thromboxane A 2. The anti-oxidant and anti-inflammatory properties of Citrus flavonoids can play a key role in their activity against several degenerative diseases and particularly brain diseases. The most abundant Citrus flavonoids are flavanones, such as hesperidin, naringin, or neohesperidin. However, generally, the flavones, such as diosmin, apigenin, or luteolin, exhibit higher biological activity, even though they occur in much lower concentrations. Diosmin and rutin have a demonstrated activity as a venotonic agent and are present in several pharmaceutical products. Apigenin and their glucosides have been shown a good anti-inflammatory activity without the side effects of other anti-inflammatory products. In this paper, we discuss the relation between each structural factor of Citrus flavonoids and the anticancer, anti-inflammatory, and cardiovascular protection activity of Citrus flavonoids and their role in degenerative diseases.

摘要

值得注意的是,柑橘类黄酮的许多活性似乎都对血液和微血管内皮细胞产生影响,因此柑橘类黄酮生物作用的两个主要研究领域是炎症和癌症也就不足为奇了。流行病学和动物研究表明,黄酮类化合物可能对心血管疾病和某些类型的癌症具有保护作用。尽管黄酮类化合物已经被研究了大约50年,但其生物作用所涉及的细胞机制仍不完全清楚。柑橘类黄酮的许多药理特性都与这些化合物抑制参与细胞激活的酶的能力有关。控制癌症的方法多种多样,包括使用抑制剂、阻断剂和转化剂。抑制剂可防止致癌物形成新的癌症,阻断剂可防止致癌化合物到达关键的起始位点,而转化剂则可促进致癌成分代谢为毒性较小的物质或阻止其生物作用。黄酮类化合物可以发挥这三种类型的作用。许多流行病学研究表明,经常摄入黄酮类化合物与心血管疾病风险降低有关。在冠心病中,黄酮类化合物的保护作用主要包括抗血栓形成、抗缺血、抗氧化和血管舒张作用。有人认为,黄酮类化合物通过三种主要作用降低冠心病风险:改善冠状动脉扩张、降低血液中血小板的凝血能力以及防止低密度脂蛋白(LDL)氧化。柑橘类黄酮的抗炎特性也得到了研究。几项关键研究表明,柑橘类黄酮的抗炎特性是由于其抑制了不同促炎介质的合成和生物活性,主要是花生四烯酸衍生物、前列腺素E2、F2和血栓素A2。柑橘类黄酮的抗氧化和抗炎特性在其对抗几种退行性疾病尤其是脑部疾病的活性中可能起关键作用。最丰富的柑橘类黄酮是黄烷酮,如橙皮苷、柚皮苷或新橙皮苷。然而,一般来说,黄酮类化合物,如地奥司明、芹菜素或木犀草素,即使其含量低得多,也表现出更高的生物活性。地奥司明和芦丁已被证明具有静脉张力剂活性,并存在于几种药品中。芹菜素及其糖苷已被证明具有良好的抗炎活性,且没有其他抗炎产品的副作用。在本文中,我们讨论了柑橘类黄酮的每个结构因素与柑橘类黄酮的抗癌、抗炎和心血管保护活性之间以及它们在退行性疾病中的作用之间的关系。

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