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1.
Toxicon ; 40(4): 471-6, 2002 Apr.
Article in English | MEDLINE | ID: mdl-11738241

ABSTRACT

Cylindrospermopsin (CYN) is a hepatotoxin isolated from the blue-green alga Cylindrospermopsis raciborskii. The role of both glutathione (GSH) and the cytochrome P450 enzyme system (P450) in the mechanism of toxicity of CYN has been previously investigated in in vitro systems. We have investigated the role of GSH and P450 in vivo in mice. Mice pre-treated with buthionine sulphoximine and diethyl maleate to deplete hepatic GSH prior to dosing with 0.2mg/kg CYN showed a seven-day survival rate of 5/13 while the control group rate was 9/14. Dosing mice with 0.2mg/kg CYN produced a small decrease in hepatic GSH with a characteristic rebound effect at 24h. The magnitude of this effect is however small and combined with the non-significant difference in survival rates after GSH depletion suggest depletion of GSH by CYN could not be a primary mechanism for CYN toxicity. Conversely, pre-treatment with piperonyl butoxide, a P450 inhibitor, protected mice against CYN toxicity giving a survival rate of 10/10 compared with 4/10 in the control group (p < 0.05 Chi squared) and was protective at doses up to 0.8 mg/kg, suggesting activation of CYN by P450 is of primary importance in the mechanism of action.


Subject(s)
Cytochrome P-450 Enzyme System/metabolism , Glutathione/metabolism , Uracil/analogs & derivatives , Uracil/metabolism , Alkaloids , Animals , Bacterial Toxins , Buthionine Sulfoximine , Cyanobacteria Toxins , Liver/enzymology , Male , Maleates/administration & dosage , Maleates/pharmacology , Mice , Pesticide Synergists/administration & dosage , Pesticide Synergists/pharmacology , Piperonyl Butoxide/administration & dosage , Piperonyl Butoxide/pharmacology
2.
Environ Toxicol ; 16(5): 391-6, 2001 Oct.
Article in English | MEDLINE | ID: mdl-11594025

ABSTRACT

The hepatotoxin cylindrospermopsin (CYN) has been isolated from the cyanobacterium Cylindrospermopsis raciborskii (C. raci.). Efforts to study this toxin have been hampered by the time-consuming requirement to extract it from cultures of the organism. It is usually extracted from lyophilized cells collected from a laboratory culture. Our preliminary work suggested far more of the toxin is available in solution in the culture media than in the cells collected. We have therefore investigated the use of commercially available solid phase extraction sorbents to extract CYN from culture media in which C. raci. has been grown. A range of reverse phase and ion-exchange sorbents were tested across a range of pHs for their ability to retain CYN without success. Subsequently, graphitized carbon cartridges were found to retain CYN strongly. Elution with 5% formic acid in methanol allowed the CYN to be regained for final purification by HPLC. Deoxy-CYN, an analog of CYN can also be extracted using this procedure.


Subject(s)
Alkaloids/isolation & purification , Cyanobacteria , Uracil/analogs & derivatives , Uracil/isolation & purification , Absorption , Alkaloids/analysis , Alkaloids/chemistry , Bacterial Toxins , Chemistry Techniques, Analytical/methods , Chromatography, High Pressure Liquid , Culture Media , Cyanobacteria Toxins , Uracil/analysis , Uracil/chemistry
3.
J Chromatogr B Biomed Sci Appl ; 762(1): 17-23, 2001 Oct 05.
Article in English | MEDLINE | ID: mdl-11589454

ABSTRACT

We have utilised the combination of sensitivity and specificity afforded by coupling high-performance liquid chromatography (HPLC) to a tandem mass spectrometer (MS-MS) to produce an assay which is suitable for assaying glutathione (GSH) concentrations in liver tissue. The sensitivity suggests it may also be suitable for extrahepatic tissues. The method has been validated for GSH using mouse liver samples and also allows the assay of GSSG. The stability of GSH under conditions relevant to the assay has been determined. A 20-microl amount of a diluted methanol extract of tissue is injected with detection limits of 0.2 pmol for GSH and 2 pmol for GSSG. The HPLC uses an Altima C18 (150 x 4.6 mm, 5 microm) column at 35 degrees C. Chromatography utilises a linear gradient from 0 to 10% methanol in 0.1% formic acid over 5 min, with a final isocratic stage holding at 10% methanol for 5 min. Total flow rate is 0.8 ml/min. The transition from the M+H ion (308.1 m/z for GSH, and 613.3 m/z for GSSG) to the 162.0 m/z (GSH) and 355.3 m/z (GSSG) fragments are monitored.


Subject(s)
Chromatography, High Pressure Liquid/methods , Glutathione Disulfide/analysis , Glutathione/analysis , Liver/chemistry , Mass Spectrometry/methods , Animals , Mice , Reference Standards , Reproducibility of Results , Sensitivity and Specificity
4.
Environ Toxicol ; 16(6): 498-505, 2001.
Article in English | MEDLINE | ID: mdl-11769247

ABSTRACT

Radiolabelled 14C cylindrospermopsin (CYN) has been prepared and used to investigate the distribution and excretion of CYN in vivo in male Quackenbush mice. At a dose of 0.2 mg/kg (i.e., approx. median lethal dose) the following mean (SD) urinary and faecal recoveries (cumulative) were obtained, respectively: (0-6 hours, n = 4) 48.2 (29.3)%, 11.9 (21.4)%; (0-12 hours, n = 12) 66.0 (27.1)%, 5.7 (5.6)%; (0-24 hours, n = 12) 68.4 (26.7)%, 8.5 (8.1)%. Mean (SD) recoveries from livers at 6 hours were 20.6 (6.4)% (n = 4), at 48 hours 13.1 (7.7)% (n = 8), and 5-7 days were 2.1 (2.1)% (n = 8). A substantial amount (up to 23%) can be retained in the liver for up to 48 hours with a lesser amount retained in the kidneys. The excretion patterns show substantial interindividual variability between predominantly faecal or urinary excretion, but these patterns are not related in any simple manner to the outcome in terms of toxicity. There is at least one methanol-extractable metabolite as well as a nonmethanol-extractable metabolite in the liver. The methanol-extractable metabolite was not found in the kidney and is more hydrophilic than CYN itself on reverse phase.


Subject(s)
Alkaloids/pharmacokinetics , Uracil/analogs & derivatives , Uracil/pharmacokinetics , Alkaloids/toxicity , Alkaloids/urine , Animals , Bacterial Toxins , Carbon Radioisotopes , Cyanobacteria Toxins , Feces/chemistry , Kidney/drug effects , Kidney/metabolism , Lethal Dose 50 , Liver/drug effects , Liver/metabolism , Male , Mice , Mice, Inbred Strains , Myocardium/metabolism , Time Factors , Tissue Distribution , Uracil/toxicity , Uracil/urine
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