Delayed DMSO administration protects the kidney from mercuric chloride-induced injury

  • Jo S.-K.; 
  • Hu X.; 
  • Yuen P.S.T.; 
  • Aslamkhan A.G.; 
  • Pritchard J.B.; 
  • 외 2명
Citations

SCOPUS

23

초록

Reactive oxygen species are implicated as mediators of tissue damage in ischemic and toxic acute renal failure. Whereas many agents can inhibit renal ischemic injury, only hepatocyte growth factor, melatonin, N-acetylcysteine, and DMSO inhibit injury after mercuric chloride administration. Although it has been suggested that DMSO may chelate the mercuric ion, more recent studies suggest that it has antiinflammatory and antioxidant effects. Acute renal failure was induced by 5 mg/kg subcutaneous injection of mercuric chloride in BALB/c mice. DMSO (3.8 ml/kg, 40% in PBS) or vehicle (PBS) was injected intraperitoneally at 0 and 24 h after mercuric chloride injection, or DMSO treatment was delayed 3 or 5 h. DMSO prevented increases in serum creatinine and tubular damage at 24 and 48 h. When DMSO treatment was delayed by 3 h, it was still beneficial; however, with a 5-h delay, the histology score and serum creatinine were not significantly decreased. DMSO partially prevented a mercuric chloride-induced decrease in glutathione peroxidase activity and completely prevented the transient decrease in superoxide dismutase activity. Neither mercuric chloride nor DMSO affected catalase activity significantly. For investigating possible effects of DMSO on cellular mercuric ion uptake, MDCK cells that were transfected with human organic anion transporter-1 were used. 203Hg uptake was inhibited 90% by N-acetylcysteine but only 5% by DMSO, indicating that the effect of DMSO is not related to chelating mercuric ion or inhibiting its uptake. It is concluded that DMSO acts in part as an antioxidant to inhibit mercuric chloride-induced acute renal injury. Copyright © 2004 by the American Society of Nephrology.

키워드

acetylcysteine; antioxidant; catalase; creatinine; dimethyl sulfoxide; drug vehicle; glutathione peroxidase; mercuric oxide; mercury 203; organic anion transporter; organic anion transporter 1; superoxide dismutase; unclassified drug; dimethyl sulfoxide; mercuric chloride; acute kidney failure; animal cell; animal experiment; animal model; animal tissue; article; cell strain; chelation; creatinine blood level; drug effect; drug induced disease; drug uptake; enzyme activity; genetic transfection; histopathology; inhibition kinetics; injection; kidney injury; kidney tubule; kidney tubule damage; mouse; nonhuman; priority journal; renal protection; scoring system; time; acute kidney failure; animal; Bagg albino mouse; chemically induced disorder; disease model; drug administration; immunohistochemistry; intraperitoneal drug administration; kidney function test; male; needle biopsy; oxidative stress; pathology; probability; randomization; reference value; sensitivity and specificity; Animals; Biopsy, Needle; Dimethyl Sulfoxide; Disease Models, Animal; Drug Administration Schedule; Immunohistochemistry; Injections, Intraperitoneal; Kidney Failure, Acute; Kidney Function Tests; Male; Mercuric Chloride; Mice; Mice, Inbred BALB C; Oxidative Stress; Probability; Random Allocation; Reference Values; Sensitivity and Specificity; Time Factors
제목
Delayed DMSO administration protects the kidney from mercuric chloride-induced injury
저자
Jo S.-K.; Hu X.; Yuen P.S.T.; Aslamkhan A.G.; Pritchard J.B.; Dear J.W.; Star R.A.
DOI
10.1097/01.ASN.0000139933.20109.CB
발행일
2004
유형
Article
저널명
Journal of the American Society of Nephrology : JASN
권
15
호
10
페이지
2648 ~ 2654