母体围产期压力和后代延髓多巴胺能代谢改变对心血管的影响与年龄和性别有关。

IF 4.1 2区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS American journal of physiology. Heart and circulatory physiology Pub Date : 2024-09-01 Epub Date: 2024-07-19 DOI:10.1152/ajpheart.00548.2023
Katarzyna Czarzasta, Dorota Sztechman, Tymoteusz Zera, Malgorzata Wojciechowska, Agnieszka Segiet-Swiecicka, Liana Puchalska, Karol Momot, Ilona Joniec-Maciejak, Ewa Machaj, Elizabeth M Sajdel-Sulkowska
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引用次数: 0

摘要

围产期发病的产妇重度抑郁症对母亲和发育中的胎儿的健康构成威胁。我们曾利用大鼠慢性轻度应激模型,报道了母体围产期应激对其后代神经发育的影响;本研究探讨了母体围产期应激对其后代心血管的影响。心血管影响通过血压和超声心动图参数进行评估。三方方差分析的结果表明,心血管参数与母亲围产期压力、后代性别和年龄有显著关联。在受应激影响的母体的青春期雌性和成年雄性后代中观察到血压升高。超声心动图显示,受应激影响的青少年女性后代的左心房尺寸增大,左心室收缩功能降低。在受应激影响的成年男性后代中观察到舒张末期室间隔厚度增加和左心室舒张功能障碍。通过使用高效液相色谱法评估延髓中神经递质及其代谢物的水平,研究了压力暴露的成年后代心血管影响的潜在机制。在受应激影响的成年雌性后代体内,多巴胺代谢物和多巴胺能活性指标--高香草酸的含量明显下降。这些结果表明,围产期母体压力对后代心血管系统的影响与性别和年龄有关,这种影响会延续到成年期,并会产生多代效应。这些数据急需后续研究来证实其潜在的临床和公共卫生意义。
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Age- and sex-dependent cardiovascular impact of maternal perinatal stress and altered dopaminergic metabolism in the medulla oblongata of the offspring.

Maternal major depressive disorder with peripartum onset presents health risks to the mother and the developing fetus. Using a rat model of chronic mild stress, we previously reported on the neurodevelopmental impact of maternal perinatal stress on their offspring. This study examined the cardiovascular impact of maternal perinatal stress on their offspring. The cardiovascular impact was assessed in terms of blood pressure and echocardiographic parameters. The results examined by a three-way ANOVA showed a significant association of cardiovascular parameters with maternal perinatal stress and offspring sex and age. Increased blood pressure was observed in adolescent female and adult male offspring of stress-exposed dams. Echocardiography showed an increase in left atrial dimension and a reduction in left ventricular systolic function in adolescent stress-exposed female offspring. Increased interventricular septum thickness at end-diastole and left ventricular diastolic dysfunction were observed in adult stress-exposed male offspring. The underlying mechanisms of cardiovascular impact were examined in stress-exposed adult offspring by assessing the levels of neurotransmitters and their metabolites in the medulla oblongata using high-performance liquid chromatography. A significant decrease in homovanillic acid, a dopamine metabolite and indicator of dopaminergic activity, was observed in adult stress-exposed female offspring. These results suggest a significant sex- and age-dependent impact of maternal stress during the peripartum period on the cardiovascular system in the offspring that extends to adulthood and suggests a multigenerational effect. The presented data urgently need follow-up to confirm their potential clinical and public health relevance.NEW & NOTEWORTHY We demonstrate that maternal perinatal stress is associated with sex- and age-dependent impact on the cardiovascular system in their offspring. The effect was most significant in adolescent female and adult male offspring. Observed changes in hemodynamic parameters and dopaminergic activity of the medulla oblongata are novel results relevant to understanding the cardiovascular impact of maternal perinatal stress on the offspring. The cardiovascular changes observed in adult offspring suggest a potential long-term, multigenerational impact of maternal perinatal stress.

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来源期刊
CiteScore
9.60
自引率
10.40%
发文量
202
审稿时长
2-4 weeks
期刊介绍: The American Journal of Physiology-Heart and Circulatory Physiology publishes original investigations, reviews and perspectives on the physiology of the heart, vasculature, and lymphatics. These articles include experimental and theoretical studies of cardiovascular function at all levels of organization ranging from the intact and integrative animal and organ function to the cellular, subcellular, and molecular levels. The journal embraces new descriptions of these functions and their control systems, as well as their basis in biochemistry, biophysics, genetics, and cell biology. Preference is given to research that provides significant new mechanistic physiological insights that determine the performance of the normal and abnormal heart and circulation.
期刊最新文献
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