현삼(玄蔘)이 갑상선기능항진증(甲狀腺機能亢進症) 유발(誘發) 흰쥐의 유전자(遺傳子) 발현(發顯)에 미치는 영향(影響)

Gene Expression of Hyperthyroid Rats treated by Scrophularia buergeriana Miquel

  • 조충식 (대전대학교 한의과대학 신계내과학 교실) ;
  • 김대복 (대전대학교 한의과대학 신계내과학 교실) ;
  • 김철중 (대전대학교 한의과대학 신계내과학 교실)
  • Cho, Chung-Sik (Department of Internal Medicine, College of Oriental Medicine, Daejeon University) ;
  • Kim, Dae-Bok (Department of Internal Medicine, College of Oriental Medicine, Daejeon University) ;
  • Kim, Cheol-Jung (Department of Internal Medicine, College of Oriental Medicine, Daejeon University)
  • 발행 : 2007.12.31

초록

Objective : The study was done to investigate Scrophularia buergeriana Miquel's effects in the genomic level, by measuring gene expression in hyperthyroid induced rats using cDNA micro array. Methods : Spargue-Dawley rats were separated into three groups(each with 10 rats). Except normal group, the other two groups were treated with Sodium levothyroxine $160{\mu}g$/kg/days for 5 days by oral administration. After 2 hours of the last intake of Sodium levothyroxine on two experimental group, one group was treated Scrophularia buergeriana Miquel extract 1.0g/kg/days for 3 days. The other groups(normal group, administration group) was treated normal saline 1.0g/kg/days for 3 days. Gene expression of hyperthyroid rats were measured after medication of solid extract of Scrophularia buergeriana Miquel with cDNA microarray. Results : In thyroid tissue, the numbers of the genes showed over twice increase and decrease in the control group compared to the normal group were 296, in the Scrophularia buergeriana Miquel administration group compared to the normal group were 859 and in the hypothalamus, the numbers of the genes showed over twice increase and decrease in the control group compared to the normal group were 416, in the Scrophularia buergeriana Miquel administration group compared to the normal group were 391. Conclusion : According to the above results, it is suggested that Scrophulari buergeriana Miquel suppress hyperthyroidism effectively and regulate the gene expression in the thyroid and brain.

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