Toxicological evaluation of a chicory root extract.
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I. Raskin | A. Poulev | B. Schmidt | N. Ilić
[1] W. Lewis. Natural Toxicants in Feeds and Poisonous Plants , 1986, Economic Botany.
[2] B. Schilter,et al. Inhibition of the expression and activity of cyclooxygenase-2 by chicory extract. , 2005, Biochemical and biophysical research communications.
[3] R. Sarkar,et al. Tumour inhibitory activity of chicory root extract against Ehrlich ascites carcinoma in mice. , 2002, Fitoterapia.
[4] A. Suter,et al. Arnica montana gel in osteoarthritis of the knee: An open, multicenter clinical trial , 2002, Advances in therapy.
[5] Y. Mun,et al. Effects of the ethanol extract of Cichorium intybus on the immunotoxicity by ethanol in mice. , 2002, International immunopharmacology.
[6] A. García,et al. Parthenin, a sesquiterpene lactone of Parthenium hysterophorus L. is a high toxicity clastogen. , 2002, Mutation research.
[7] H. Bais,et al. Cichorium intybus L – cultivation, processing, utility, value addition and biotechnology, with an emphasis on current status and future prospects , 2001 .
[8] M Elofsson,et al. The anti-inflammatory natural product parthenolide from the medicinal herb Feverfew directly binds to and inhibits IkappaB kinase. , 2001, Chemistry & biology.
[9] Meehye Kim. THE WATER-SOLUBLE EXTRACT OF CHICORY REDUCES CHOLESTEROL UPTAKE IN GUT-PERFUSED RATS , 2000 .
[10] M. Roberfroid,et al. Chicory fructooligosaccharides and the gastrointestinal tract. , 2000, Nutrition.
[11] R. Kim,et al. Repin-Induced Neurotoxicity in Rodents , 1998, Experimental Neurology.
[12] K. Schulze-Osthoff,et al. Sesquiterpene lactones specifically inhibit activation of NF-kappa B by preventing the degradation of I kappa B-alpha and I kappa B-beta. , 1998, The Journal of biological chemistry.
[13] R. Carasso,et al. Feverfew (Tanacetum parthenium) as a prophylactic treatment for migraine: a double‐blind placebo‐controlled study , 1997 .
[14] C. Gadgoli,et al. Antihepatotoxic activity of Cichorium intybus. , 1997, Journal of ethnopharmacology.
[15] H. Pahl,et al. Helenalin, an Anti-Inflammatory Sesquiterpene Lactone from Arnica, Selectively Inhibits Transcription Factor NF-κB , 1997 .
[16] M. Aregullin,et al. Recent studies on the zoopharmacognosy, pharmacology and neurotoxicology of sesquiterpene lactones. , 1995, Planta medica.
[17] R. Huacuja,et al. Inactivation of SH groups with sesquiterpene lactones: effects on nuclear decondensation pattern / motility induced by heparin in human spermatozoa. , 1993, Advances in contraceptive delivery systems : CDS.
[18] T. V. van Beek,et al. Bitter sesquiterpene lactones from chicory roots , 1990 .
[19] A. K. Picman. Biological activities of sesquiterpene lactones , 1986 .
[20] B. Ames,et al. Revised methods for the Salmonella mutagenicity test. , 1983, Mutation research.
[21] T. G. Waddell,et al. Anti-inflammatory activity of sesquiterpene lactones and related compounds. , 1979, Journal of pharmaceutical sciences.
[22] J. Mitchell,et al. Biological activities of sesquiterpene lactones , 1976 .
[23] B. Ames,et al. Methods for detecting carcinogens and mutagens with the Salmonella/mammalian-microsome mutagenicity test. , 1975, Mutation research.
[24] Jindal Mn,et al. Pharmacological actions of aqueous and alcoholic extracts of roots of Cichorium intibus, Linn , 1975 .
[25] Witzel Da,et al. Toxicity and milk bittering properties of tenulin, the major sesquiterpene lactone constituent of Helenium amarum (bitter sneezeweed). , 1975 .
[26] J. Veech,et al. Hymenovin. major toxic constituent of Western bitterweed (Hymenoxys odorata DC.) , 1975, Journal of agricultural and food chemistry.
[27] G. W. Ivie,et al. Toxicity and milk bittering properties of tenulin, the major sesquiterpene lactone constituent of Helenium amarum (bitter sneezeweed). , 1975, Journal of agricultural and food chemistry.