Preventive Mechanism of Sodium Molybdate Against Peripheral Neurotoxicity of Lead

Sodium molybdate의 납중독성 말초 신경계독성 예방기전

  • 정명규 (선문대학교 공과대학 환경공학과) ;
  • 강순국 (선문대학교 공과대학 환경공학과) ;
  • 김명녀 (선문대학교 자연대학 화학과)
  • Published : 2000.06.01

Abstract

The preventive effects of sodium molybdate on the acute toxicity of lead were studied by investigating tissue accumulation of lead, changes of nerve conduction velocity and concentrations of metabolites related to function of sciatic nerve in rats treated with lead, sodium molybdate and both, respectively. In lead-intoxicated rat, the conduction velocity, myo-inositol concentration and $Na^{+}/K^{+}$ ATPase activity of sciatic nerve were decreased by about 33 %, 48 % and 58 %, respectively. However, sodium molybdate treatment significantly normalized the conduction velocity, $Na^{+}/K^{+}$ ATPase activity and myo-inositol concentration of sciatic nerve in lead-intoxicated rat. Also, sodium molybdate treatment decreased the contents of lead in blood and sciatic nerve through promotion of urinary excretion of lead. But sodium molybdate treatment did not affect the glucose concentration in sciatic nerve. These results suggest that sodium molybdate prevented peripheral neuropathy not only by reducing lead contents in sciatic nerve and blood, but also by enhancing $Na^{+}/K^{+}$ ATPase activity in sciatic nerve.

Keywords

References

  1. Proc. Natl. Acad. Sci. v.77 Inborn errors of molybdenum metabolism : combined defieciencies of sulfide oxides and xanthion oxidase in a patient lacking the molybdenum cofactor Johnson, J. I.;W. D. Wane
  2. J. Am. Chem. Sci. v.75 The nature of xanthin oxidase factor De Renzo, E. C.
  3. J. Biol. Chem. v.237 Hepatici aldehyde oxidase : Purification and properties Rajagopalan, K. V.
  4. Toxicol. Appl. Pharmacol. v.136 Molybdate imparis glycosaminoglycan sulfation in rat cartilage Takiko, O.;M. Cherukury;L. Jie
  5. 대한환경공학화지 v.16 no.5 Sprague-Dawley 랫드의 대퇴 신경증 axonal transport에 미치는 납의 영향 정명규;임경택;정현옥
  6. Kor. J. Environ. Toxicol. v.9 no.1-2 Effects of lead on ATPase activity in the sciatic nerve of Spraque-Dawley rat Myung-Kiu Chung
  7. Ecotoxicol. Environ. Safety v.26 Precentive effect of sodium molybdate in lead intoxication in rats Flora, S. J. S.;K. Jeevaratham
  8. J. Neurol. Sci. v.23 Peripheral nerve structure and function in experimental diabetes Shrama, A. K.;P. K. Thomas
  9. Anal. Biochem. v.43 Analysis of trimethylsilyl Omethyloximes of carbohydrates by combined gasliquid chromatography-mass spectrometry Laine, R. A.
  10. J. Clin. invest. v.72 Impaired rat sciatic nerve sodium-potassium ATPase in actue streptozocin diabetes and its correction by dietary myo-inositol supplementation Greene, D. A.;S. A. Lattimer
  11. Environ. Sci. Technol. v.5 Determination of lead in biological and related materials by atomic adsorption spectrophotometer Yeager, D. W.;J. Cholak;E. W. Henderson
  12. Cruuncher Number Jerry, L. H.
  13. Implications of the blood-brain barrier and its manipulation v.1 History of the blood-brain barrier concepts Davison, H.;Neuwelt E. A.(ed.)
  14. Environ. Health Perspect. v.75 Metal toxicity in the central nervous system Clarkson, T. W.
  15. Chem. Biol. Interact. v.67 Protevtive effects of molybdeum on the acute toxicities of mercuric chloride Koizumi, T.
  16. J. Neurochem. v.17 Significance of tissue myo-inositol concentrations in normal and degeneration peripheral nerve Simmons, D. A.
  17. 대한위생학회지 v.11 no.2 납중독 랫드의 말초신경내 myo-inositol 수송체계에 관한 연구 정명규;조해용
  18. Anal. Biochem. v.110 A new simple method for $Na^{+}/K^{+}$ ATPase rich membrane fragments Yoda, A.;S. Yoda