Antitrypanosomal and antileishmanial activities of flavonoids and their analogues:: In vitro, in vivo, structure-activity relationship, and quantitative structure-activity relationship studies

被引:353
|
作者
Tasdemir, D
Kaiser, M
Brun, R
Yardley, V
Schmidt, TJ
Tosun, F
Rüedi, P
机构
[1] Univ Zurich, Inst Organ Chem, CH-8057 Zurich, Switzerland
[2] Schweizer Tropeninst, Dept Med Parasitol & Infektionsbiol, Basel, Switzerland
[3] London Sch Hyg & Trop Med, Dept Infect & Trop Dis, London WC1, England
[4] Univ Munster, Inst Pharmazeut Biol & Phytochem, D-4400 Munster, Germany
[5] Gazi Univ, Fac Pharm, Dept Pharmacognosy, Ankara, Turkey
关键词
D O I
10.1128/AAC.50.4.1352-1364.2006
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Trypanosomiasis and leishmaniasis are important parasitic diseases affecting millions of people in Africa, Asia, and South America. In a previous study, we identified several flavonoid glycosides as antiprotozoal principles from a Turkish plant. Here we surveyed a large set of flavonoid aglycones and glycosides, as well as a panel of other related compounds of phenolic and phenylpropanoid nature, for their in vitro activities against Trypanosoma brucei rhodesiense, Trypanosoma cruzi, and Leishmania donovani. The cytotoxicities of more than 100 compounds for mammalian L6 cells were also assessed and compared to their antiparasitic activities. Several compounds were investigated in vivo for their antileishmanial and antitrypanosomal efficacies in mouse models. Overall, the best in vitro trypanocidal activity for T. brucei rhodesiense was exerted by 7,8-dihydroxyflavone (50% inhibitory concentration [IC50], 68 ng/ml), followed by 3-hydroxyflavone, rhamnetin, and 7,8,3 ',4 '-tetrahydroxyflavone (IC(50)s, 0.5 mu g/ml) and catechol IC50 0.8 mu g/ml). The activity against T. cruzi was moderate, and only chrysin dimethylether and 3-hydroxydaidzein had IC50s less than 5.0 mu g/ml. The majority of the metabolites tested possessed remarkable leishmanicidal potential. Fisetin, 3-hydroxyflavone, luteolin, and quercetin were the most potent, giving IC(50)s of 0.6, 0.7, 0.8, and 1.0 mu g/ml, respectively. 7,8-Dihydroxyflavone and quercetin appeared to ameliorate parasitic infections in mouse models. Generally, the test compounds lacked cytotoxicity in vitro and in vivo. By screening a large number of flavonoids and analogues, we were able to establish some general trends with respect to the structure-activity relationship, but it was not possible to draw clear and detailed quantitative structure-activity relationships for any of the bioactivities by two different approaches. However, our results can help in directing the rational design of 7,8-dihydroxyflavone and quercetin derivatives as potent and effective antiprotozoal agents.
引用
收藏
页码:1352 / 1364
页数:13
相关论文
共 50 条
  • [1] Structure Activity Relationship and Quantitative Structure-Activity Relationships Modeling of Antitrypanosomal Activities of Alkyldiamine Cryptolepine Derivatives
    Belaidi, Salah
    Salah, Toufik
    Melkemi, Nadjib
    Sinha, Leena
    Prasad, Onkar
    [J]. JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE, 2015, 12 (09) : 2421 - 2427
  • [2] Structure-activity relationship studies of flavopiridol analogues
    Murthi, KK
    Dubay, M
    McClure, C
    Brizuela, L
    Boisclair, MD
    Worland, PJ
    Mansuri, MM
    Pal, K
    [J]. BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2000, 10 (10) : 1037 - 1041
  • [3] Structure-activity relationship studies of curcumin analogues
    Fuchs, James R.
    Pandit, Bulbul
    Bhasin, Deepak
    Etter, Jonathan P.
    Regan, Nicholas
    Abdelhamid, Dalia
    Li, Chenglong
    Lin, Jiayuh
    Li, Pui-Kai
    [J]. BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2009, 19 (07) : 2065 - 2069
  • [4] Antibacterial Activities of Flavonoids: Structure-Activity Relationship and Mechanism
    Xie, Yixi
    Yang, Weijie
    Tang, Fen
    Chen, Xiaoqing
    Ren, Licheng
    [J]. CURRENT MEDICINAL CHEMISTRY, 2015, 22 (01) : 132 - 149
  • [5] Quantitative structure-activity relationship (QSAR) studies on antitumor activity: glutamine analogues
    Rajwade, R. P.
    [J]. NEW BIOTECHNOLOGY, 2010, 27 : S22 - S23
  • [6] Complementary Quantitative Structure-Activity Relationship Models for the Antitrypanosomal Activity of Sesquiterpene Lactones
    Kimani, Njogu M.
    Matasyoh, Josphat C.
    Kaiser, Marcel
    Nogueira, Mauro S.
    Trossini, Gustavo H. G.
    Schmidt, Thomas J.
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (12)
  • [7] A Quantitative Structure-Activity Relationship (QSAR) study of the antioxidant activity of flavonoids
    Rasulev, BF
    Abdullaev, ND
    Syrov, VN
    Leszczynski, J
    [J]. QSAR & COMBINATORIAL SCIENCE, 2005, 24 (09): : 1056 - 1065
  • [8] Quantitative structure-activity relationship study on antitumour activity of a series of flavonoids
    Wang, Wei-Xuan
    Si, Hongzong
    Zhang, Ziding
    [J]. MOLECULAR SIMULATION, 2012, 38 (01) : 38 - 44
  • [9] A quantitative structure-activity relationship model for radical scavenging activity of flavonoids
    Om, A.
    Kim, J. H.
    [J]. JOURNAL OF MEDICINAL FOOD, 2008, 11 (01) : 29 - 37
  • [10] Antitrypanosomal activities of acetylated bruceines A and C; a structure-activity relationship study
    Elkhateeb, Ahmed
    Tosa, Yusuke
    Matsuura, Hideyuki
    Nabeta, Kensuke
    Katakura, Ken
    [J]. JOURNAL OF NATURAL MEDICINES, 2012, 66 (01) : 233 - 240