Update on uses and properties of Citrus flavonolds:: New findings in anticancer, cardiovascular, and anti-inflammatory activity

被引:862
作者
Benavente-Garcia, O. [1 ]
Castillo, J. [1 ]
机构
[1] Nutrafur Furfural Espanol SA, Dept Res & Dev, Murcia 80320, Spain
关键词
flavonold; Citrus; anti-oxidant; anticarcinogenic; anti-inflammatory; anti-aging; platelet aggregation; cardiovascular diseases; brain diseases;
D O I
10.1021/jf8006568
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
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.
引用
收藏
页码:6185 / 6205
页数:21
相关论文
共 212 条
  • [91] The time-dependent effect of ProvinolsTM on brain NO synthase activity in L-NAME-induced hypertension
    Jendekova, L.
    Kojsova, S.
    Andriantsitohaina, R.
    Pechanova, O.
    [J]. PHYSIOLOGICAL RESEARCH, 2006, 55 : S31 - S37
  • [92] Nitric oxide and the proliferation of vascular smooth muscle cells
    Jeremy, JY
    Rowe, D
    Emsley, AM
    Newby, AC
    [J]. CARDIOVASCULAR RESEARCH, 1999, 43 (03) : 580 - 594
  • [93] The effect of fruit and vegetable intake on risk for coronary heart disease
    Joshipura, KJ
    Hu, FB
    Manson, JE
    Stampfer, MJ
    Rimm, EB
    Speizer, FE
    Colditz, G
    Ascherio, A
    Rosner, B
    Spiegelman, D
    Willett, WC
    [J]. ANNALS OF INTERNAL MEDICINE, 2001, 134 (12) : 1106 - 1114
  • [94] Kanadaswami C, 2005, IN VIVO, V19, P895
  • [95] ANTIPROLIFERATIVE EFFECTS OF CITRUS FLAVONOIDS ON A HUMAN SQUAMOUS-CELL CARCINOMA INVITRO
    KANDASWAMI, C
    PERKINS, E
    SOLONIUK, DS
    DRZEWIECKI, G
    MIDDLETON, E
    [J]. CANCER LETTERS, 1991, 56 (02) : 147 - 152
  • [96] Kawaii S, 1999, ANTICANCER RES, V19, P1261
  • [97] Antiproliferative activity of flavonoids on several cancer cell lines
    Kawaii, S
    Tomono, Y
    Katase, E
    Ogawa, K
    Yano, M
    [J]. BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1999, 63 (05) : 896 - 899
  • [98] Effects of naturally occurring flavonoids on nitric oxide production in the macrophage cell line RAW 264.7 and their structure-activity relationships
    Kim, HK
    Cheon, BS
    Kim, YH
    Kim, SY
    Kim, HP
    [J]. BIOCHEMICAL PHARMACOLOGY, 1999, 58 (05) : 759 - 765
  • [99] Chemical structure of flavonols in relation to modulation of angiogenesis and immune-endothelial cell adhesion
    Kim, JD
    Liu, LP
    Guo, WM
    Meydani, M
    [J]. JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2006, 17 (03) : 165 - 176
  • [100] Flavonoids inhibit VEGF/VGF-induced angiogenesis in vitro by inhibiting the matrix-degrading proteases
    Kim, MH
    [J]. JOURNAL OF CELLULAR BIOCHEMISTRY, 2003, 89 (03) : 529 - 538