Enduring effects of acute prenatal ischemia in rat soleus muscle, and protective role of erythropoietin.

IF 1.8 3区 生物学 Q4 CELL BIOLOGY Journal of Muscle Research and Cell Motility Pub Date : 2024-11-16 DOI:10.1007/s10974-024-09684-6
Tiphaine Sancerni, Valérie Montel, Julie Dereumetz, Laetitia Cochon, Jacques-Olivier Coq, Bruno Bastide, Marie-Hélène Canu
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Abstract

Motor disorders are considered to originate mainly from brain lesions. Placental dysfunction or maternal exposure to a persistently hypoxic environment is a major cause of further motor disorders such as cerebral palsy. Our main goal was to determine the long-term effects of mild intrauterine acute ischemic stress on rat soleus myofibres and whether erythropoietin treatment could prevent these changes. Rat embryos were subjected to ischemic stress at embryonic day E17. They then received an intraperitoneal erythropoietin injection at postnatal days 1-5. Soleus muscles were collected at postnatal day 28. Prenatal ischemic stress durably affected muscle structure, as indicated by the greater fiber cross-sectional area (+ 18%) and the greater number of mature vessels (i.e. vessels with mature endothelial cells) per myofibres (+ 43%), and muscle biochemistry, as shown by changes in signaling pathways involved in protein synthesis/degradation balance (-81% for 4EBP1; -58% for AKT) and Hif1α expression levels (+ 95%). Erythropoietin injection in ischemic pups had a weak protective effect: it increased muscle mass (+ 25% with respect to ischemic pups) and partially prevented the increase in muscle degradation pathways and mature vascularization, whereas it exacerbated the decrease in synthesis pathways. Hence, erythropoietin treatment after acute ischemic stress contributes to muscle adaptation to ischemic conditions.

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产前急性缺血对大鼠比目鱼肌的持久影响以及促红细胞生成素的保护作用
运动障碍被认为主要源于脑部病变。胎盘功能障碍或母体暴露于持续缺氧环境是进一步导致运动障碍(如脑瘫)的主要原因。我们的主要目标是确定轻度宫内急性缺血应激对大鼠比目鱼肌纤维的长期影响,以及促红细胞生成素治疗是否能防止这些变化。大鼠胚胎在胚胎 E17 天受到缺血应激。然后在出生后第 1-5 天腹腔注射促红细胞生成素。在出生后第 28 天收集足底肌肉。产前缺血应激对肌肉结构和肌肉生化产生了持久的影响,具体表现为每条肌纤维的纤维横截面积增加(+ 18%)和成熟血管(即具有成熟内皮细胞的血管)数量增加(+ 43%),具体表现为参与蛋白质合成/降解平衡的信号通路(4EBP1-81%;AKT-58%)和Hif1α表达水平(+ 95%)发生了变化。向缺血幼崽注射红细胞生成素具有微弱的保护作用:它增加了肌肉质量(与缺血幼崽相比增加了 25%),并部分防止了肌肉降解途径和成熟血管化的增加,但却加剧了合成途径的减少。因此,急性缺血应激后的促红细胞生成素治疗有助于肌肉对缺血条件的适应。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: The Journal of Muscle Research and Cell Motility has as its main aim the publication of original research which bears on either the excitation and contraction of muscle, the analysis of any one of the processes involved therein, the processes underlying contractility and motility of animal and plant cells, the toxicology and pharmacology related to contractility, or the formation, dynamics and turnover of contractile structures in muscle and non-muscle cells. Studies describing the impact of pathogenic mutations in genes encoding components of contractile structures in humans or animals are welcome, provided they offer mechanistic insight into the disease process or the underlying gene function. The policy of the Journal is to encourage any form of novel practical study whatever its specialist interest, as long as it falls within this broad field. Theoretical essays are welcome provided that they are concise and suggest practical ways in which they may be tested. Manuscripts reporting new mutations in known disease genes without validation and mechanistic insight will not be considered. It is the policy of the journal that cells lines, hybridomas and DNA clones should be made available by the developers to any qualified investigator. Submission of a manuscript for publication constitutes an agreement of the authors to abide by this principle.
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