Real time microfiberoptic redox fluorometry: Modulation of the pyridine nucleotide status of the organogenesis-stage rat visceral yolk sac with cyanide and alloxan

被引:4
作者
Thorsrud, BA
Harris, C
机构
[1] Toxicology Program Department of Environmental, Industrial Health University of Michigan, Ann Arbor
关键词
D O I
10.1006/taap.1995.1229
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The surface of rat visceral yolk sacs (VYS) of intact, viable rat conceptuses were continuously monitored with a microfiberoptic sensor optimized for detection of the reduced pyridine nucleotides, NADH and NADPH. Model chemical toxins, cyanide and alloxan, were used and evaluated on the basis of their differential ability to modulate NAD(H)- and NADP(H)-dependent cellular pathways, respectively, Exposure with 2 mM sodium cyanide for 5 min caused a reversible fluorescence increase of 325 arbitrary fluorescence units (AFU) and 225 AFU on Gestational Days (GD) 10 and 11, respectively. Exposure with 40 mM alloxan for 5 min resulted in a fluorescence decrease of 170 and 120 AFU on GD 10 and 11, respectively. Glutathione (GSH) levels in the VYS, as determined by HPLC, showed a marked decrease from 27.3 +/- 2.1 to 2.9 +/- 0.4 pmol/mg protein, within the 5-min alloxan exposure period on GD 10. No decrease in GSH levels was noted for the same exposure duration on GD 11. A 2-hr pretreatment with 25 mu M BCNU [(1,3 bis(2-chloroethyl)-1-nitrosourea], to inhibit glutathione disulfide reductase (GSSG-Rd), resulted in an elimination of the fluorescence decrease, but still led to a significant drop in GSH levels as seen on both days of gestation. These results are consistent with overall changes in intracellular pyridine nucleotide concentrations, where the relative amounts of NADPH increase significantly and disproportionately from GD 10 to 11. The net oxidation of NADPH, through GSSG-Rd activity, appears to be responsible for the alloxan-induced decrease in surface fluorescence. Conversely, the cyanide-induced fluorescence increases appear to be the result of NAD(+) reduction, mediated through the inhibition of the terminal cytochrome oxidase in the electron transport chain. (C) 1995 Academic Press, Inc.
引用
收藏
页码:237 / 245
页数:9
相关论文
共 22 条
  • [1] Belinsky S.A., Reinke L.A., Scholz R., Kauffman F.C., Thurman R.G., Rates of pentose cycle flux in perfused rat liver. Evaluation of the role of reducing equivalents from the pentose cycle for mixed-function oxidation, Mol. Pharmacol., 28, pp. 371-376, (1985)
  • [2] Bradford M.M., A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding, Anal. BioChem., 72, pp. 248-254, (1976)
  • [3] Chance B., Thorell B., Localization and kinetics of reduced pyridine nucleotide in living cells by microfluorometry, J. Biol. Chem., 234, pp. 3044-3050, (1959)
  • [4] Foster E., Delong D., Connely C., Apstein C.S., Failure of nifedipine and reperfusion to reduce infarct size relative to region at risk as measured by NADH fluorophotography, Circulation, 70, 3, pp. 506-512, (1984)
  • [5] Freeman S.J., Coakley M., Brown N.A., Post-implantation embryo culture for studies of teratogenesis, Biochemical Toxicology: A Practical Approach, pp. 83-107, (1987)
  • [6] Freinkel N., Lewis N.J., Akawawa S., Roth S.L., Gorman L., The honeybee syndrome—Implications of the teratogenicity of mannose in rat-emhryo culture, N. Engl. J. Med., 310, pp. 223-230, (1984)
  • [7] Guezennec C.Y., Lienhard F., Lousy F., Renault G., Tusseau M.H., Portero P., In situ NADH laser fluorometry during muscle contraction in humans, Eur. J. Appl. Physiol., 63, 1, pp. 36-42, (1991)
  • [8] Harris C., Namkung M.J., Juchau M.R., Regulation of intracellular glutathione in rat embryos and visceral yolk sacs and its effects on 2-nitrosofluorene-induced malformations in the whole embryo culture system, Toxicol. Appl. Pharmacol., 88, pp. 141-152, (1987)
  • [9] Harris C., Thurman R.G., A new method to study glutathione adduct formation in periportal and pericentral regions of the liver lobule by microreflectance spectrophotometry, Mol. Pharmacol., 29, pp. 88-96, (1986)
  • [10] Hiranruenchok R., Harris C., Glutathione oxidation and em-bryotoxicity elicited by diantide in the developing rat conceptus in vitro, Toxicol. Appl. Pharmacol., 120, pp. 62-71, (1993)