Regulation of bone mass by growth hormone.

Robert C Olney
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引用次数: 137

Abstract

Growth hormone (GH) is a peptide hormone secreted from the pituitary gland under the control of the hypothalamus. It has a many actions in the body, including regulating a number of metabolic pathways. Some, but not all, of its effects are mediated through insulin-like growth factor-I (IGF-I). Both GH and IGF-I play significant roles in the regulation of growth and bone metabolism and hence are regulators of bone mass. Bone mass increases steadily through childhood, peaking in the mid 20s. Subsequently, there is a slow decline that accelerates in late life. During childhood, the accumulation in bone mass is a combination of bone growth and bone remodeling. Bone remodeling is the process of new bone formation by osteoblasts and bone resorption by osteoclasts. GH directly and through IGF-I stimulates osteoblast proliferation and activity, promoting bone formation. It also stimulates osteoclast differentiation and activity, promoting bone resorption. The result is an increase in the overall rate of bone remodeling, with a net effect of bone accumulation. The absence of GH results in a reduced rate of bone remodeling and a gradual loss of bone mineral density. Bone growth primarily occurs at the epiphyseal growth plates and is the result of the proliferation and differentiation of chondrocytes. GH has direct effects on these chondrocytes, but primarily regulates this function through IGF-I, which stimulates the proliferation of and matrix production by these cells. GH deficiency severely limits bone growth and hence the accumulation of bone mass. GH deficiency is not an uncommon complication in oncology and has long-term effects on bone health.

生长激素对骨量的调节。
生长激素(GH)是一种在下丘脑控制下由脑垂体分泌的肽激素。它在体内有许多作用,包括调节许多代谢途径。它的一些作用,但不是全部,是通过胰岛素样生长因子- i (IGF-I)介导的。生长激素和igf - 1在调节生长和骨代谢中发挥重要作用,因此是骨量的调节剂。骨量在童年时期稳步增长,在25岁左右达到顶峰。随后,智力会缓慢下降,并在晚年加速下降。在儿童时期,骨量的积累是骨骼生长和骨骼重塑的结合。骨重塑是由成骨细胞形成新骨和破骨细胞吸收骨的过程。生长激素直接或通过igf - 1刺激成骨细胞增殖和活性,促进骨形成。它还刺激破骨细胞的分化和活动,促进骨吸收。其结果是骨骼重塑的总体速度增加,并伴有骨积累的净效应。生长激素的缺乏导致骨重塑率的降低和骨矿物质密度的逐渐丧失。骨生长主要发生在骨骺生长板,是软骨细胞增殖和分化的结果。生长激素对这些软骨细胞有直接作用,但主要通过igf - 1调节这种功能,igf - 1刺激这些细胞的增殖和基质的产生。生长激素缺乏严重限制了骨骼生长,因此骨量的积累。生长激素缺乏症在肿瘤学中并不罕见,并对骨骼健康有长期影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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