Lithium 이온의 배설에 미치는 Corticosteroid의 영향

Effect of Corticosteroids on Renal Excretion of Lithium

  • 오신열 (영남대학교 의과대학 약리학교실) ;
  • 하정희 (영남대학교 의과대학 약리학교실) ;
  • 이광윤 (영남대학교 의과대학 약리학교실) ;
  • 김원준 (영남대학교 의과대학 약리학교실)
  • Oh, Shin-Yul (Department of Pharmacology College of Medicine, Yeungnam University) ;
  • Ha, Jeoung-Hee (Department of Pharmacology College of Medicine, Yeungnam University) ;
  • Lee, Kwang-Youn (Department of Pharmacology College of Medicine, Yeungnam University) ;
  • Kim, Won-Joon (Department of Pharmacology College of Medicine, Yeungnam University)
  • 발행 : 1986.06.30

초록

rat에 주사된 lithium 이온의 배설에 미치는 수종의 corticosteroid의 영향을 검색한 결과 다음과 같은 결론을 얻었다. 1. fludrocortisone을 10mg/kg 투여하여 혈청내 lithium 농도를 줄일 수 있었고, lithium의 뇨중 배설량도 증가시켰다. 2. dexamethasone을 0.1mg/kg 투여하여 혈청내 lithium 농도를 줄일 수 있었고, 1mg/kg을 투여하여 lithium의 뇨중 배설량도 증가시켰다. 3. dexamethasone에 의하여서는 혈중 $Na^+$$K^+$에 대한 농도비가 감소하였고, 반대로 뇨중 $Na^+$$K^+$에 대한 농도비가 감소하였다. 이상의 실험 결과를 미루어 corticosteroid는 lithium의 뇨중 배설량을 증가시키고 그 혈중 농도를 감소시킬 수 있으나, 이러한 작용은 신장을 통한 $Na^+$ 이나 $K^+$의 이동과는 전혀 상관이 없다고 생각된다.

Lithium salts are being used increasingly to treat patient with affective disorders, especially acute mania, or bipolar manic-depressive illness. For therapeutic effect the lithium content must be maintained at or above a particular level. Lithium poisoning due to overdosage may be seen occasionally, and its course is determined primarily by the rate of renal lithium elimination. A search is therefore indicated for procedures that could raise the lithium clearance. In a number of reports renal lithium excretion has been studied in relation to the excretion of water, sodium, potassium and hydrogen, but effects of sodium or water on the lithium excretion has not yet been clarified. Hence the present study was undertaken to investigate the effects of corticosteroid on the excretion of lithium ion. The female rat(Sprague-Dowley), weighing from 200 to 300g, was injected with 50mg/kg of lithium chloride intraperitoneally, and then injected with graded dosage of fludrocortisone and dexamethasone in each group. During the injected rats were incubated in metabolic cage, 24 hour urine of rats were collected. At 24 hours after injection, the rats were sacrificed with guillotin, the blood were collected. And then the concentratios of $Na^+$, $K^+$, $Li^+$ of collected urine and serum were checked by Flame photometer. The results are summarized as follows; 1. Fludrocortisone decreased the serum concentration of lithium and increased the urinary excretion of lithium. 2. In the group treated with low dose of dexamethasone(0.1mg/kg), the serum concentration of lithium was decreased and high dose of dexamethasone (1mg/kg) increased the urinary excretion of lithium. 3. Fludrocortisone increased the urinary $[Na^+]/[K^+]$ in serum and decreased $[Na^+]/[K^+]$ in urine, but opposite effects were occurred in dexamethasone. By above results, it may be concluded that corticosteroid increased the urinary excretion of lithium and decreased the serum concentration of lithium, but it seems to be there is no relationship between these effects of corticosteroid and of the renal $Na^+$ or $K^+$ transport.

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