Grover Gary J, Dunn Celeste, Nguyen Ngoc-Ha, Boulet Jamie, Dong Gao, Domogauer Jason, Barbounis Peter, Scanlan Thomas S
Eurofins Scientific--Product Safety Laboratories, 2394 Hwy. 130, Dayton, NJ 08810, USA.
J Pharmacol Exp Ther. 2007 Jul;322(1):385-90. doi: 10.1124/jpet.106.116152. Epub 2007 Apr 17.
NH3 is a thyroid hormone receptor (TR) antagonist that inhibits binding of thyroid hormones to their receptor and that inhibits cofactor recruitment. It was active in a tadpole tail resorption assay, with partial agonist activity at high concentrations. We determined the effect of NH3 on the cholesterol-lowering, thyroid stimulating hormone (TSH)-lowering, and tachycardic action of thyroid hormone (T(3)) in rats. Cholesterol-fed, euthyroid rats were treated for 7 days with NH3, and a dose response (46.2-27,700 nmol/kg/day) was determined. We also determined the effect of two doses of T(3) on the NH3 dose-response curve. NH3 decreased heart rate modestly starting at 46.2 nmol/kg/day, but the effect was lost at >2920 nmol/kg/day. At 27,700 nmol/kg/day, tachycardia was seen, suggesting partial agonist activity. NH3 increased plasma cholesterol to a maximum of 27% at 462 nmol/kg/day. At higher doses, cholesterol was reduced, suggesting partial agonist activity. Plasma TSH was increased from 46.2 to 462 nmol/kg/day NH3, but at higher doses, this effect was lost, and partial agonist effects were apparent. T(3) at 15.4 and 46.2 nmol/kg/day increased heart rate, reduced cholesterol, and reduced plasma TSH. NH3 inhibited the cholesterol-lowering, TSH-lowering and tachycardic effects of 15.4 nmol/kg/day T(3), but much of the effect was lost at >924 nmol/kg/day doses. NH3 had no effect on the cholesterol-lowering action of 46.2 nmol/kg/day T(3), but it inhibited the tachycardic and TSH suppressant effects up to the 924 nmol/kg/day dose. Single doses of 462 and 27,700 nmol/kg caused no TR inhibitory effects. In conclusion, NH3 has TR antagonist properties on T(3)-responsive parameters, but it has partial agonist properties at higher doses.
NH3是一种甲状腺激素受体(TR)拮抗剂,它可抑制甲状腺激素与其受体的结合,并抑制辅因子的募集。在蝌蚪尾部吸收试验中它具有活性,在高浓度时具有部分激动剂活性。我们测定了NH3对大鼠体内甲状腺激素(T3)降低胆固醇、降低促甲状腺激素(TSH)以及引起心动过速作用的影响。给喂食胆固醇的甲状腺功能正常的大鼠用NH3治疗7天,并确定剂量反应(46.2 - 27700 nmol/kg/天)。我们还测定了两剂T3对NH3剂量反应曲线的影响。NH3从46.2 nmol/kg/天开始适度降低心率,但在>2920 nmol/kg/天时这种作用消失。在27700 nmol/kg/天时,出现心动过速,表明具有部分激动剂活性。NH3在462 nmol/kg/天时使血浆胆固醇最多升高27%。在更高剂量时,胆固醇降低,表明具有部分激动剂活性。血浆TSH在NH3剂量从46.2增加到462 nmol/kg/天时升高,但在更高剂量时,这种作用消失,部分激动剂作用明显。15.4和46.2 nmol/kg/天的T3可增加心率、降低胆固醇并降低血浆TSH。NH3抑制15.4 nmol/kg/天T3降低胆固醇、降低TSH和引起心动过速的作用,但在>924 nmol/kg/天剂量时大部分作用消失。NH3对46.2 nmol/kg/天T3降低胆固醇的作用没有影响,但它抑制心动过速和TSH抑制作用直至924 nmol/kg/天剂量。462和27700 nmol/kg的单剂量未产生TR抑制作用。总之,NH3对T3反应参数具有TR拮抗剂特性,但在更高剂量时具有部分激动剂特性。