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首页> 外文期刊>American Journal of Physiology >Alterations of growth plate and abnormal insulin-like growth factor I metabolism in growth-retarded hypokalemic rats: effect of growth hormone treatment
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Alterations of growth plate and abnormal insulin-like growth factor I metabolism in growth-retarded hypokalemic rats: effect of growth hormone treatment

机译:生长板和异常胰岛素样生长因子I代谢的改变在生长迟钝的低钾癌中的代谢:生长激素治疗的影响

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摘要

Hypokalemic tubular disorders may lead to growth retardation which is resistant to growth hormone (GH) treatment. The mechanism of these alterations is unknown. Weaning female rats were grouped (n = 10) in control, potassium-depleted (KD), KD treated with intraperitoneal GH at 3.3 mg,kg_l,day_1 during the last week (KDGH), and control pair-fed with KD (CPF). After 2 wk, KD rats were growth retarded compared with CPF rats, the osseous front advance (±SD) being 67.07 ± 10.44 and 81.56 ± 12.70 p,m/day, respectively. GH treatment did not accelerate growth rate. The tibial growth plate of KD rats had marked morphological alterations: lower heights of growth cartilage (228.26 ± 23.58 p.m), hypertrophic zone (123.68 ± 13.49 pm), and terminal chondrocytes (20.8 ± 2.39 |xm) than normokalemic CPF (264.21 ± 21.77, 153.18 ± 15.80, and 24.21 ± 5.86 pm). GH administration normalized these changes except for the distal chondrocyte height. Quantitative PCR of insulin-like growth factor I (IGF-I), IGF-I receptor, and GH receptor genes in KD growth plates showed downregulation of IGF-I and upregulation of IGF-I receptor mRNAs, without changes in their distribution as analyzed by immunohistochemistry and in situ hybridization. GH did not further modify IGF-I mRNA expression. KD rats had normal hepatic IGF-I mRNA levels and low serum IGF-I values. GH increased liver IGF-I mRNA, but circulating IGF-I levels remained reduced. This study discloses the structural and molecular alterations induced by potassium depletion on the growth plate and shows that the lack of response to GH administration is associated with persistence of the disturbed process of chondrocyte hypertrophy and depressed mRNA expression of local IGF-I in the growth plate
机译:低钙素管状疾病可能导致生长迟缓,这是对生长激素(GH)处理的耐药性。这些改变的机制是未知的。被断奶雌性大鼠被分组(n = 10)控制,含钾耗尽(KD),KD在上周(KDGH)期间,用腹膜内GH处理3.3mg,KG_L,Day_1,并用KD(CPF)对照对。在2WK之后,与CPF大鼠相比,KD大鼠的生长迟缓,骨前前提(±SD)分别为67.07±10.44和81.56±12.70 p,m / day。 GH治疗没有加速增长率。 KD大鼠的胫骨生长板具有形态改变:较低的生长软骨高度(228.26±23.58 pm),肥厚区(123.68±13.49 pm),末端软骨细胞(20.8±2.39 | xm)比正常性CPF(264.21±21.77 ,153.18±15.80和24.21±5.86 pm)。除了远端软骨细胞高度外,GH管理正常化这些变化。在KD生长板中的胰岛素样生长因子I(IGF-I),IGF-I受体和GH受体基因的定量PCR显示出IGF-1的下调和IGF-I受体MRNA的上调,但分析的分布变化通过免疫组织化学和原位杂交。 GH没有进一步修改IGF-I mRNA表达。 KD大鼠具有正常的肝IGF-I mRNA水平和低血清IGF-I值。 GH增加肝脏IGF-I mRNA,但循环IGF-I水平仍然减少。本研究公开了生长板上耗矿诱导的结构和分子改变,表明对GH施用的缺乏反应与生长板中局部IGF-1的软骨细胞肥大和抑郁mRNA表达的持续性有关

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