This webpage contains legacy information. The product is either no longer available from the supplier or has been delisted at Labome.
product summary
company name :
MilliporeSigma
other brands :
FLUKA, Sigma-Aldrich, Roche Applied Science
product type :
chemical
product name :
Citrinin
catalog :
C1017
citations: 45
Reference
Zhang X, Sun M, Kang Y, Xie H, Wang X, Song H, et al. Identification of a high-affinity monoclonal antibody against ochratoxin A and its application in enzyme-linked immunosorbent assay. Toxicon. 2015;106:89-96 pubmed publisher
Seok Y, Byun J, Shim W, Kim M. A structure-switchable aptasensor for aflatoxin B1 detection based on assembly of an aptamer/split DNAzyme. Anal Chim Acta. 2015;886:182-7 pubmed publisher
Cheng H, Chen Y, Yang Y, Chen X, Guo X, Du A. Characterization of Anti-Citrinin Specific ScFvs Selected from Non-Immunized Mouse Splenocytes by Eukaryotic Ribosome Display. PLoS ONE. 2015;10:e0131482 pubmed publisher
Ji X, Xu J, Wang X, Qi P, Wei W, Chen X, et al. Citrinin Determination in Red Fermented Rice Products by Optimized Extraction Method Coupled to Liquid Chromatography Tandem Mass Spectrometry (LC-MS/MS). J Food Sci. 2015;80:T1438-44 pubmed publisher
Schmidt Heydt M, Stoll D, Schütz P, Geisen R. Oxidative stress induces the biosynthesis of citrinin by Penicillium verrucosum at the expense of ochratoxin. Int J Food Microbiol. 2015;192:1-6 pubmed publisher
Avula B, Cohen P, Wang Y, Sagi S, Feng W, Wang M, et al. Chemical profiling and quantification of monacolins and citrinin in red yeast rice commercial raw materials and dietary supplements using liquid chromatography-accurate QToF mass spectrometry: Chemometrics application. J Pharm Biomed Anal. 2014;100:243-253 pubmed publisher
Zhou Z, Yin Z, Hu X. Corncob hydrolysate, an efficient substrate for Monascus pigment production through submerged fermentation. Biotechnol Appl Biochem. 2014;61:716-23 pubmed publisher
Follmann W, Behm C, Degen G. Toxicity of the mycotoxin citrinin and its metabolite dihydrocitrinone and of mixtures of citrinin and ochratoxin A in vitro. Arch Toxicol. 2014;88:1097-107 pubmed publisher
Ostrý V, Malir F, Ruprich J. Producers and important dietary sources of ochratoxin A and citrinin. Toxins (Basel). 2013;5:1574-86 pubmed publisher
Zhang L, Li Z, Dai B, Zhang W, Yuan Y. Effect of submerged and solid-state fermentation on pigment and citrinin production by Monascus purpureus. Acta Biol Hung. 2013;64:385-94 pubmed publisher
Marinho A, Marinho P, Santos L, Rodrigues Filho E, Ferreira I. Active polyketides isolated from Penicillium herquei. An Acad Bras Cienc. 2013;85:909-12 pubmed publisher
Kuroda K, Ishii Y, Takasu S, Kijima A, Matsushita K, Watanabe M, et al. Cell cycle progression, but not genotoxic activity, mainly contributes to citrinin-induced renal carcinogenesis. Toxicology. 2013;311:216-24 pubmed publisher
Bräse S, Glaser F, Kramer C, Lindner S, Linsenmeier A, Masters K, et al. Progress in the chemistry of organic natural products. The chemistry of mycotoxins. Prog Chem Org Nat Prod. 2013;97:v-xv, 1-300 pubmed
Wang Y, Zhang B, Lu L, Huang Y, Xu G. Enhanced production of pigments by addition of surfactants in submerged fermentation of Monascus purpureus H1102. J Sci Food Agric. 2013;93:3339-44 pubmed publisher
Jirasatid S, Nopharatana M, Kitsubun P, Vichitsoonthonkul T, Tongta A. Statistical optimization for Monacolin K and yellow pigment production and citrinin reduction by Monascus purpureus in solid-state fermentation. J Microbiol Biotechnol. 2013;23:364-74 pubmed
Li Y, Wu H, Guo L, Zheng Y, Guo Y. Microsphere-based flow cytometric immunoassay for the determination of citrinin in red yeast rice. Food Chem. 2012;134:2540-5 pubmed publisher
Zachetti V, Granero A, Robledo S, Zón M, Fernandez H. Development of an amperometric biosensor based on peroxidases to quantify citrinin in rice samples. Bioelectrochemistry. 2013;91:37-43 pubmed publisher
Childress L, GAY A, Zargar A, Ito M. Review of red yeast rice content and current Food and Drug Administration oversight. J Clin Lipidol. 2013;7:117-22 pubmed publisher
Nigović B, Sertić M, Mornar A. Simultaneous determination of lovastatin and citrinin in red yeast rice supplements by micellar electrokinetic capillary chromatography. Food Chem. 2013;138:531-8 pubmed publisher
Schmidt Heydt M, Cramer B, Graf I, Lerch S, Humpf H, Geisen R. Wavelength-dependent degradation of ochratoxin and citrinin by light in vitro and in vivo and its implications on Penicillium. Toxins (Basel). 2012;4:1535-51 pubmed publisher
Hayashi H, Itahashi M, Taniai E, Yafune A, Sugita Konishi Y, Mitsumori K, et al. Induction of ovarian toxicity in a subchronic oral toxicity study of citrinin in female BALB/c mice. J Toxicol Sci. 2012;37:1177-90 pubmed
Patáková P. Monascus secondary metabolites: production and biological activity. J Ind Microbiol Biotechnol. 2013;40:169-81 pubmed publisher
Qiu W, Liu X, Zheng K, Fu W. [Immuno-affinity chromatographic purification: the study of methods to test citrinin in monascus products by high performance liquid chromatography]. Zhonghua Yu Fang Yi Xue Za Zhi. 2012;46:750-3 pubmed
Zhu D, Zhang H, Bing X. Preparation of an immunoaffinity column for the clean-up of fermented food samples contaminated with citrinin. Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2013;30:389-94 pubmed publisher
Khromov T, Dressel R, Siamishi I, Nolte J, Opitz L, Engel W, et al. Apoptosis-related gene expression profiles of mouse ESCs and maGSCs: role of Fgf4 and Mnda in pluripotent cell responses to genotoxicity. PLoS ONE. 2012;7:e48869 pubmed publisher
Wu T, Yang J, Yu F, Liu B. Evaluation of nephrotoxic effects of mycotoxins, citrinin and patulin, on zebrafish (Danio rerio) embryos. Food Chem Toxicol. 2012;50:4398-404 pubmed publisher
Hsu L, Hsu Y, Liang Y, Lin Z, Kuo Y, Pan T. Protective effect of deferricoprogen isolated from Monascus purpureus NTU 568 on citrinin-induced apoptosis in HEK-293 cells. J Agric Food Chem. 2012;60:7880-5 pubmed publisher
Islam M, Roh Y, Cho A, Kim J, Kim J, Eo S, et al. Immune modulatory effects of the foodborne contaminant citrinin in mice. Food Chem Toxicol. 2012;50:3537-47 pubmed publisher
Grover A, Katiyar S, Jeyakanthan J, Dubey V, Sundar D. Mechanistic insights into the dual inhibition strategy for checking Leishmaniasis. J Biomol Struct Dyn. 2012;30:474-87 pubmed publisher
Wang C, Yang H, Chen M, Wang Y, Li F, Luo C, et al. Real-time quantitative analysis of the influence of blue light on citrinin biosynthetic gene cluster expression in Monascus. Biotechnol Lett. 2012;34:1745-8 pubmed publisher
Liu S, Wang D, Zhang J, Zhang D, Gong M, Wang C, et al. Citrinin reduces testosterone secretion by inducing apoptosis in rat Leydig cells. Toxicol In Vitro. 2012;26:856-61 pubmed publisher
Dos Santos C, da Costa G, Figueroa Villar J. Identification of citrinin as the defence metabolite of Penicillium corylophilum stressed with the antagonist fungus Beauveria bassiana. Nat Prod Res. 2012;26:2316-22 pubmed publisher
Hajjaj H, Francois J, Goma G, Blanc P. Effect of amino acids on red pigments and citrinin production in Monascus ruber. J Food Sci. 2012;77:M156-9 pubmed publisher
Yang Y, Li L, Li X, Shao Y, Chen F. mrflbA, encoding a putative FlbA, is involved in aerial hyphal development and secondary metabolite production in Monascus ruber M-7. Fungal Biol. 2012;116:225-33 pubmed publisher
Li Y, Xu Y, Huang Z. Isolation and characterization of the citrinin biosynthetic gene cluster from Monascus aurantiacus. Biotechnol Lett. 2012;34:131-6 pubmed publisher
Kozlovskii A, Zhelifonova V, Antipova T, Zelenkova N. [Physiological and biochemical characteristics of fungi of the genus Penicillium as producers of ergot alkaloids and quinocitrinins]. Prikl Biokhim Mikrobiol. 2011;47:469-73 pubmed
Du L, Liu H, Fu W, Li D, Pan Q, Zhu T, et al. Unprecedented citrinin trimer tricitinol B functions as a novel topoisomerase IIα inhibitor. J Med Chem. 2011;54:5796-810 pubmed publisher
Klarić M, Zeljezic D, Rumora L, Peraica M, Pepeljnjak S, Domijan A. A potential role of calcium in apoptosis and aberrant chromatin forms in porcine kidney PK15 cells induced by individual and combined ochratoxin A and citrinin. Arch Toxicol. 2012;86:97-107 pubmed publisher
Kouznetsova V, Tsigelny I, Nagle M, Nigam S. Elucidation of common pharmacophores from analysis of targeted metabolites transported by the multispecific drug transporter-Organic anion transporter1 (Oat1). Bioorg Med Chem. 2011;19:3320-40 pubmed publisher
Flajs D, Peraica M. Toxicological properties of citrinin. Arh Hig Rada Toksikol. 2009;60:457-64 pubmed publisher
Mossini S, Kemmelmeier C. Inhibition of citrinin production in Penicillium citrinum cultures by neem [Azadirachta indica A. Juss (Meliaceae)]. Int J Mol Sci. 2008;9:1676-84 pubmed publisher
Chan W. Citrinin induces apoptosis in mouse embryonic stem cells. IUBMB Life. 2008;60:171-9 pubmed publisher
Lu Z, Lin Z, Wang W, Du L, Zhu T, Fang Y, et al. Citrinin dimers from the halotolerant fungus Penicillium citrinum B-57. J Nat Prod. 2008;71:543-6 pubmed publisher
Liu R, Xu Y. [A brief introduction of citrinin and study progress of its immunoassay methods]. Wei Sheng Yan Jiu. 2004;33:124-7 pubmed
Frank H. Citrinin. Z Ernahrungswiss. 1992;31:164-77 pubmed
product information
Catalog Number :
C1017
Product Name :
Citrinin
Product Type :
SMALL MOLECULES
Product Group :
Protein & Pathway Technologies
Product Description :
from Penicillium citrinum, ≥98% (HPLC)
company information
MilliporeSigma
PO Box 14508
St. Louis, MO 63178
https://www.sigmaaldrich.com
1-800-325-3010
headquarters: USA