内毒素诱发的炎症对绵羊体液动力轴活性的影响

IF 2.6 Q3 IMMUNOLOGY International Journal of Inflammation Pub Date : 2024-08-07 eCollection Date: 2024-01-01 DOI:10.1155/2024/1057299
Maciej Wójcik, Dorota Anna Zieba, Joanna Bochenek, Agata Krawczyńska, Marcin Barszcz, Alina Gajewska, Hanna Antushevich, Andrzej Przemysław Herman
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引用次数: 0

摘要

下丘脑-垂体-分泌轴(HPS)控制着许多生理和病理生理过程。之前有报道称,生长激素抵抗(GHres)不敏感现象是由于炎症的发展造成的。因此,本研究的主要目的是确定脂多糖(LPS)引起的炎症对绵羊 HPS 轴分泌活动的影响。进一步的目标是确定炎症因子对通过 GH 受体(GHR)参与细胞内 GH 信号转导的各个成分的影响。研究以 24 只在短日光周期下饲养的季节性绵羊为对象,随机分为两组。实验前,绵羊的发情周期是同步的。目前在绵羊模型中进行的研究结果表明,炎症会损害体液轴的活性。一方面,注射 LPS 会刺激 GH 分泌(p < 0.01),另一方面,它通过直接减少 GHR 表达(p < 0.01)和激活 GHR 抑制信号转导机制,降低了肝脏对这种激素的敏感性。这种抑制性受体后信号通路的症状可能是由于 SOCS3 表达的增加(p < 0.01)。各种抑制途径的作用是显著降低主要转录激活因子 IGF1-STAT5B 的表达(p < 0.05)。GHres 在肝脏中的作用导致 IGF1 分泌受到抑制,长期来看可能会对生长发育产生负面影响。我们的研究表明,GH 细胞信号通路的破坏可能是炎症病理生理学的重要因素之一。它可以抑制生长和肝脏代谢,从而减少能量消耗。
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The Effect of Endotoxin-Induced Inflammation on the Activity of the Somatotropic Axis in Sheep.

The hypothalamic-pituitary-somatotropic (HPS) axis controls many physiological and pathophysiological processes. The phenomenon of insensitivity to growth hormone resistance (GHres) was previously reported to be due to the development of inflammation. Therefore, the primary aim of the study was to determine the impact of inflammation caused by lipopolysaccharides (LPS) on the secretory activity of the HPS axis in sheep. The further goal was to determine the effect of inflammatory factors on individual components involved in intracellular signal transduction to GH via the GH receptor (GHR). The research was carried out on 24 seasonal sheep kept under a short-day photoperiod, randomly divided into two groups. Before the experiment, the sheep estrous cycles were synchronized. The results of the current study in a sheep model showed that inflammation impairs the activity of the somatotropic axis. On the one hand, LPS injection stimulated (p < 0.01) GH secretion, and on the other hand, it reduced the liver's sensitivity to this hormone by directly reducing (p < 0.01) GHR expression and activating the GHR inhibitory signal transduction mechanism. A symptom of such an inhibitory postreceptor signaling pathway may be due to an increase in SOCS3 expression (p < 0.01). The effect of various inhibition pathways is a significant reduction in the expression of the main transcription activator IGF1-STAT5B (p < 0.05). The action of GHres in the liver resulted in the inhibition of IGF1 secretion, which in the long term may have negative consequences for growth and development. Our study suggests that disruption of the GH cell signaling pathway may be one of the important elements of the pathophysiology of inflammation. It can suppress growth and hepatic metabolism to spare energy expenditure.

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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
16
审稿时长
16 weeks
期刊最新文献
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