Dipartimento di Medicina e Chirurgia Traslazionale, Università Cattolica del Sacro Cuore, Rome, Italy.
Fondazione Policlinico Universitario A. Gemelli IRCCS, Rome, Italy.
PLoS One. 2021 Apr 1;16(4):e0248971. doi: 10.1371/journal.pone.0248971. eCollection 2021.
Adult growth hormone deficiency (GHD), a condition characterized by increased oxidative stress, is related to augmented cardiovascular, metabolic and oncological risk. A case-control observational study has been performed to evaluate DNA oxidative damage analysing the production of thymidine-glycol in lymphocytes and its correlation with plasma antioxidant levels, evaluated as Total Antioxidant Capacity (TAC). GHD was diagnosed using GHRH 50μg iv+arginine 0,5 g/Kg test, with peak GH response <9 μg/L when BMI was <30 kg/m2 or <4 μg/L when BMI was >30 kg/m2. Three groups were identified: total GHD (n = 16), partial GHD (n = 11), and controls (n = 12). Thymidine-glycol, TAC and IGF-1 have been determined respectively in lymphocytes, plasma and serum samples. When considering thymidine-glycol, we found a significant difference between total vs partial GHD and controls. Unexpectedly thymidine-glycol was lower in total GHD, also accompanied with a significant increase in plasmatic TAC. Our results showed that in adult GHD condition, the production of antioxidant species, in response to increased oxidative stress, could exert a protective effect on thymidine-glycol formation, and consequently on DNA intracellular damages. This pilot study could be inserted in the complex scenario of oxidative damage of GHD, a subtle, yet poorly defined condition, worthy of further insights.
成人生长激素缺乏症(GHD)是一种以氧化应激增加为特征的疾病,与心血管、代谢和肿瘤风险增加有关。进行了一项病例对照观察性研究,通过分析淋巴细胞中胸苷-二醇的产生来评估 DNA 氧化损伤,并将其与血浆抗氧化水平相关联,评估为总抗氧化能力(TAC)。使用 GHRH 50μg iv+精氨酸 0.5 g/Kg 试验诊断 GHD,当 BMI<30kg/m2 时,峰值 GH 反应<9μg/L,当 BMI>30kg/m2 时,峰值 GH 反应<4μg/L。确定了三个组:总 GHD(n=16)、部分 GHD(n=11)和对照组(n=12)。分别在淋巴细胞、血浆和血清样本中测定胸苷-二醇、TAC 和 IGF-1。考虑到胸苷-二醇,我们发现总 GHD 与部分 GHD 和对照组之间存在显著差异。出乎意料的是,总 GHD 中的胸苷-二醇水平较低,同时血浆 TAC 显著增加。我们的结果表明,在成人 GHD 情况下,抗氧化物质的产生可能会对胸苷-二醇的形成产生保护作用,从而对 DNA 细胞内损伤产生保护作用。这项初步研究可以纳入 GHD 氧化损伤的复杂情况中,这是一种微妙但定义不明确的情况,值得进一步深入了解。