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Effects of growth hormone on steroid-induced increase in ability of urea synthesis and urea enzyme mRNA levels.

机译:生长激素对类固醇诱导的尿素合成能力和尿素酶mRNA水平增加的影响。

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摘要

Growth hormone (GH) reduces the catabolic side effects of steroid treatment due to its effects on tissue protein synthesis/degradation. Little attention is focused on hepatic amino acid degradation and urea synthesis. Five groups of rats were given 1) placebo, 2) prednisolone, 3) placebo, pair fed to the steroid group, 4) GH, and 5) prednisolone and GH. After 7 days, the in vivo capacity of urea N synthesis (CUNS) was determined by saturating alanine infusion, in parallel with measurements of liver mRNA levels of urea cycle enzymes, N contents of organs, N balance, and hormones. Prednisolone increased CUNS (micromol . min-1 . 100 g-1, mean +/- SE) from 9.1 +/- 1.0 (pair-fed controls) to 13.2 +/- 0.8 (P < 0.05), decreased basal blood alpha-amino N concentration from 4.2 +/- 0.5 to 3.1 +/- 0.3 mmol/l (P < 0.05), increased mRNA levels of the rate- and flux-limiting urea cycle enzymes by 20 and 65%, respectively (P < 0. 05), and decreased muscle N contents and N balance. In contrast, GH decreased CUNS from 6.1 +/- 0.9 (free-fed controls) to 4.2 +/- 0.5 (P < 0.05), decreased basal blood alpha-amino N concentration from 3. 8 +/- 0.3 to 3.2 +/- 0.2, decreased mRNA levels of the rate- and flux-limiting urea cycle enzymes to 60 and 40%, respectively (P < 0. 05), and increased organ N contents and N balance. Coadministration of GH abolished all steroid effects. We found that prednisolone increases the ability of amino N conversion into urea N and urea cycle gene expression. GH had the opposite effects and counteracted the N-wasting side effects of prednisolone.
机译:由于生长激素(GH)对组织蛋白合成/降解的影响,因此它可以减少类固醇激素的分解代谢副作用。很少关注集中在肝氨基酸降解和尿素合成上。五组大鼠分别接受了1)安慰剂,2)泼尼松龙,3)安慰剂,分别喂入类固醇组,4)GH和5)泼尼松龙和GH。 7天后,通过饱和丙氨酸输注确定尿素氮合成(CUNS)的体内能力,同时测量尿素循环酶,器官氮含量,氮平衡和激素的肝脏mRNA水平。泼尼松龙的CUNS(微摩尔分值min。。100 g-1,平均+/- SE)从9.1 +/- 1.0(配对喂养对照)增加到13.2 +/- 0.8(P <0.05),基础血α-氨基氮浓度从4.2 +/- 0.5增至3.1 +/- 0.3 mmol / l(P <0.05),限速和通量限制尿素循环酶的mRNA水平分别增加20%和65%(P <0。 05),并减少了肌肉的氮含量和氮平衡。相反,GH将CUNS从6.1 +/- 0.9(自由进食的对照)降低到4.2 +/- 0.5(P <0.05),基础血α-氨基N浓度从3. 8 +/- 0.3降低到3.2 + / -0.2,限速和通量限制尿素循环酶的mRNA水平分别降低至60%和40%(P <0. 05),并且器官N含量和N平衡增加。 GH的共同给药消除了所有类固醇的作用。我们发现泼尼松龙增加了氨基氮转化为尿素氮的能力和尿素循环基因的表达。 GH具有相反的作用,并抵消了泼尼松龙的N浪费副作用。

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