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大鼠C2半横断对呼吸和心血管功能的影响。

Effects of C2 hemisection on respiratory and cardiovascular functions in rats.

作者信息

Michel-Flutot Pauline, Mansart Arnaud, Fayssoil Abdallah, Vinit Stéphane

机构信息

Université Paris-Saclay, UVSQ, Inserm, END-ICAP, Versailles, France.

Université Paris-Saclay, UVSQ, Inserm, Infection et Inflammation (2I), Versailles, France.

出版信息

Neural Regen Res. 2023 Feb;18(2):428-433. doi: 10.4103/1673-5374.346469.

Abstract

High cervical spinal cord injuries induce permanent neuromotor and autonomic deficits. These injuries impact both central respiratory and cardiovascular functions through modulation of the sympathetic nervous system. So far, cardiovascular studies have focused on models of complete contusion or transection at the lower cervical and thoracic levels and diaphragm activity evaluations using invasive methods. The present study aimed to evaluate the impact of C2 hemisection on different parameters representing vital functions (i.e., respiratory function, cardiovascular, and renal filtration parameters) at the moment of injury and 7 days post-injury in rats. No ventilatory parameters evaluated by plethysmography were impacted during quiet breathing after 7 days post-injury, whereas permanent diaphragm hemiplegia was observed by ultrasound and confirmed by diaphragmatic electromyography in anesthetized rats. Interestingly, the mean arterial pressure was reduced immediately after C2 hemisection, with complete compensation at 7 days post-injury. Renal filtration was unaffected at 7 days post-injury; however, remnant systolic dysfunction characterized by a reduced left ventricular ejection fraction persisted at 7 days post-injury. Taken together, these results demonstrated that following C2 hemisection, diaphragm activity and systolic function are impacted up to 7 days post-injury, whereas the respiratory and cardiovascular systems display vast adaptation to maintain ventilatory parameters and blood pressure homeostasis, with the latter likely sustained by the remaining descending sympathetic inputs spared by the initial injury. A better broad characterization of the physiopathology of high cervical spinal cord injuries covering a longer time period post-injury could be beneficial for understanding evaluations of putative therapeutics to further increase cardiorespiratory recovery.

摘要

高位颈髓损伤会导致永久性神经运动和自主神经功能障碍。这些损伤通过调节交感神经系统影响中枢呼吸和心血管功能。到目前为止,心血管研究主要集中在下颈段和胸段完全挫伤或横断的模型以及使用侵入性方法进行的膈肌活动评估。本研究旨在评估大鼠在损伤时和损伤后7天,C2半横断对代表重要功能的不同参数(即呼吸功能、心血管和肾滤过参数)的影响。损伤后7天,在安静呼吸期间,通过体积描记法评估的通气参数均未受到影响,而在麻醉大鼠中通过超声观察到永久性膈肌偏瘫,并通过膈肌肌电图得到证实。有趣的是,C2半横断后平均动脉压立即降低,在损伤后7天完全代偿。损伤后7天肾滤过未受影响;然而,以左心室射血分数降低为特征的残余收缩功能障碍在损伤后7天持续存在。综上所述,这些结果表明,C2半横断后,膈肌活动和收缩功能在损伤后7天内受到影响,而呼吸和心血管系统表现出巨大的适应性以维持通气参数和血压稳态,后者可能由最初损伤时保留的下行交感神经输入维持。更好地广泛描述高位颈髓损伤在损伤后更长时间段内的病理生理学,可能有助于理解对假定治疗方法的评估,以进一步促进心肺功能恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aea8/9396504/960a5b9af4f0/NRR-18-428-g002.jpg

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