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Cinnabar induces renal inflammation and fibrogenesis in rats.

Abstract
The purpose of this study was to investigate whether cinnabar causes renal inflammation and fibrosis in rats. Rats were dosed orally with cinnabar (1 g/kg/day) for 8 weeks or 12 weeks. The control rats were treated with solvent (5% carboxymethylcellulose solution) over the same time periods, respectively. Renal mercury (RHg), urinary mercury (UHg), serum creatinine (SCr), urine kidney injury molecule 1 (KIM-1), renal pathology, and renal mediators were examined. At both 8 weeks and 12 weeks, RHg, UHg, and urine KIM-1 were significantly higher in the cinnabar group than in the control group, although SCr was unchanged. Kidney lesions in the cinnabar-treated rats occurred mainly in the tubules and interstitium, including vacuolization, protein casts, infiltration of inflammatory cells, and slight increase in interstitial collagen. In addition, mild mesangial proliferation was observed in glomeruli. Moreover, the expression of inflammatory and fibrogenic mediators was upregulated in the cinnabar group. In conclusion, cinnabar may cause kidney damage due to the accumulation of mercury, and renal inflammation and slight fibrogenesis may occur in rats. In the clinic, the potential risk of renal injury due to the prolonged consumption of cinnabar should be considered even though the agent is relatively nontoxic.
AuthorsYing Wang, Dapeng Wang, Jie Wu, Bohan Wang, Liangjun Wang, Xin Gao, Hai Huang, Honglin Ma
JournalBioMed research international (Biomed Res Int) Vol. 2015 Pg. 280958 ( 2015) ISSN: 2314-6141 [Electronic] United States
PMID25734058 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Chemical References
  • Mercury Compounds
  • cinnabar
Topics
  • Administration, Oral
  • Animals
  • Fibrosis (chemically induced, metabolism, pathology)
  • Kidney (drug effects, metabolism, pathology)
  • Mercury Compounds (administration & dosage, adverse effects, pharmacokinetics)
  • Metabolic Clearance Rate
  • Nephritis (chemically induced, metabolism, pathology)
  • Rats
  • Rats, Sprague-Dawley

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