产前倍他米松损害近期羔羊心脏发育和功能的标志物。

IF 2.8 4区 医学 Q2 PHYSIOLOGY
Reza Amanollahi, Ashley S Meakin, Stacey L Holman, Vicki L Clifton, Kent L Thornburg, Michael D Wiese, Kathryn L Gatford, Mitchell C Lock, Janna L Morrison
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引用次数: 0

摘要

通常给予产前皮质类固醇以促进胎儿肺成熟;然而,它们对心脏发育的影响尚不清楚。因此,本研究调查了产前倍他米松对近期羔羊心脏发育的影响,使用了一组患有轻度实验性哮喘的母羊的组织。妊娠母羊在妊娠140天(妊娠150天)分娩前24小时分别给予生理盐水(生理盐水)或倍他米松(倍他米松,肌肉注射,11.4 mg)两剂。采用western blot和LC-MS/MS分别分析左心室心肌蛋白表达和激素浓度。与生理盐水羔羊相比,倍他米松组的胎儿和新生儿心率和血压更高。倍他米松羔羊的心脏皮质醇、皮质酮、雌二醇、孕酮和甲状腺素浓度较低,但三碘甲状腺原氨酸较高。倍他米松组心脏糖皮质激素受体GRβ:GRα-A蛋白比高于生理盐水组。此外,胰岛素样生长因子1受体(心脏增殖能力的标志)、增殖细胞核抗原(DNA复制的标志)和脂肪酸转运蛋白CD36的表达在倍他米松羔羊中较低。这些发现表明,产前倍他米松可能通过改变糖皮质激素受体异构体的表达和减少心脏对糖皮质激素和性激素的暴露来破坏正常的心脏发育。因此,这导致与心脏生长和脂肪酸摄取相关的标志物表达减少。如果这些变化持续到成年期,由产前皮质类固醇暴露引起的心脏发育改变可能会增加以后患心血管疾病的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antenatal betamethasone impairs markers of cardiac development and function in near-term lambs.

Antenatal corticosteroids are commonly administered to promote fetal lung maturation; however, their impact on heart development is not well understood. This study therefore investigated the effects of antenatal betamethasone on cardiac development in near-term lambs, using tissues collected from a cohort of ewes with mild experimentally induced asthma. Pregnant ewes received two doses of either saline (Saline) or betamethasone (Betamethasone, intramuscular, 11.4 mg) given 24 h apart, before delivery at 140 days of gestation (term = 150days of gestation). Cardiac protein expression and hormone concentrations in the left ventricle were analysed using western blot and LC-MS/MS, respectively. Fetal and neonatal heart rate and blood pressure were higher in Betamethasone compared to Saline lambs. Betamethasone lambs had lower cardiac concentrations of cortisol, corticosterone, oestradiol, progesterone and thyroxine but a higher triiodothyronine. The protein ratio of glucocorticoid receptor GRβ:GRα-A was higher in the hearts of Betamethasone compared to Saline. Additionally, the expression of insulin-like growth factor 1 receptor (a marker of cardiac proliferative capacity), proliferating cell nuclear antigen (a marker of DNA replication) and the fatty acid transporter CD36 were lower in Betamethasone lambs. These findings suggest that antenatal betamethasone may disrupt normal heart development by altering glucocorticoid receptor isoform expression and reducing cardiac exposure to glucocorticoid and sex hormones. Consequently, this leads to decreased expression of markers associated with cardiac growth and fatty acid uptake. These alterations in heart development caused by antenatal corticosteroids exposure may increase the risk of cardiovascular disease later in life if these changes persist into adulthood.

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来源期刊
Experimental Physiology
Experimental Physiology 医学-生理学
CiteScore
5.10
自引率
3.70%
发文量
262
审稿时长
1 months
期刊介绍: Experimental Physiology publishes research papers that report novel insights into homeostatic and adaptive responses in health, as well as those that further our understanding of pathophysiological mechanisms in disease. We encourage papers that embrace the journal’s orientation of translation and integration, including studies of the adaptive responses to exercise, acute and chronic environmental stressors, growth and aging, and diseases where integrative homeostatic mechanisms play a key role in the response to and evolution of the disease process. Examples of such diseases include hypertension, heart failure, hypoxic lung disease, endocrine and neurological disorders. We are also keen to publish research that has a translational aspect or clinical application. Comparative physiology work that can be applied to aid the understanding human physiology is also encouraged. Manuscripts that report the use of bioinformatic, genomic, molecular, proteomic and cellular techniques to provide novel insights into integrative physiological and pathophysiological mechanisms are welcomed.
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