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孤立性生长激素缺乏症的遗传病因和治疗——最新进展。

Genetic causes and treatment of isolated growth hormone deficiency-an update.

机构信息

UCL Institute of Child Health, London, UK.

出版信息

Nat Rev Endocrinol. 2010 Oct;6(10):562-76. doi: 10.1038/nrendo.2010.147.

Abstract

Isolated growth hormone deficiency is the most common pituitary hormone deficiency and can result from congenital or acquired causes, although the majority of cases are idiopathic with no identifiable etiology. Known genes involved in the genetic etiology of isolated growth hormone deficiency include those that encode growth hormone (GH1), growth-hormone-releasing hormone receptor (GHRHR) and transcription factor SOX3. However, mutations are identified in a relatively small percentage of patients, which suggests that other, yet unidentified, genetic factors are involved. Among the known factors, heterozygous mutations in GH1 remain the most frequent cause of isolated growth hormone deficiency. The identification of mutations has clinical implications for the management of patients with this condition, as individuals with heterozygous GH1 mutations vary in phenotype and can, in some cases, develop additional pituitary hormone deficiencies. Lifelong follow-up of these patients is, therefore, recommended. Further studies in the genetic etiology of isolated growth hormone deficiency will help to elucidate mechanisms implicated in the control of growth and may influence future treatment options. Advances in pharmacogenomics will also optimize the treatment of isolated growth hormone deficiency and other conditions associated with short stature, for which recombinant human growth hormone is a licensed therapy.

摘要

孤立性生长激素缺乏症是最常见的垂体激素缺乏症,可由先天性或后天性原因引起,尽管大多数病例为特发性,无明确病因。已知与孤立性生长激素缺乏症的遗传病因有关的基因包括编码生长激素(GH1)、生长激素释放激素受体(GHRHR)和转录因子 SOX3 的基因。然而,只有一小部分患者能检测到基因突变,这表明还存在其他尚未确定的遗传因素。在已知的因素中,GH1 的杂合突变仍然是孤立性生长激素缺乏症的最常见原因。基因突变的鉴定对这种疾病患者的管理具有临床意义,因为 GH1 杂合突变的个体在表型上存在差异,并且在某些情况下会发展出其他垂体激素缺乏症。因此,建议对这些患者进行终身随访。进一步研究孤立性生长激素缺乏症的遗传病因将有助于阐明生长控制中涉及的机制,并可能影响未来的治疗选择。药物遗传学的进步也将优化孤立性生长激素缺乏症和其他与身材矮小相关的疾病的治疗,而重组人生长激素是这些疾病的一种许可疗法。

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