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脊髓神经调节通过抑制中间外侧核的过度活动和脊髓神经同步性来减轻心肌缺血诱导的交感神经兴奋。

Spinal neuromodulation mitigates myocardial ischemia-induced sympathoexcitation by suppressing the intermediolateral nucleus hyperactivity and spinal neural synchrony.

作者信息

Salavatian Siamak, Kuwabara Yuki, Wong Benjamin, Fritz Jonathan R, Howard-Quijano Kimberly, Foreman Robert D, Armour J Andrew, Ardell Jeffrey L, Mahajan Aman

机构信息

Department of Anesthesiology and Perioperative Medicine, University of Pittsburgh, Pittsburgh, PA, United States.

Division of Cardiology, Department of Medicine, University of Pittsburgh Medical Center, Pittsburgh, PA, United States.

出版信息

Front Neurosci. 2023 Jun 2;17:1180294. doi: 10.3389/fnins.2023.1180294. eCollection 2023.

Abstract

INTRODUCTION

Myocardial ischemia disrupts the cardio-spinal neural network that controls the cardiac sympathetic preganglionic neurons, leading to sympathoexcitation and ventricular tachyarrhythmias (VTs). Spinal cord stimulation (SCS) is capable of suppressing the sympathoexcitation caused by myocardial ischemia. However, how SCS modulates the spinal neural network is not fully known.

METHODS

In this pre-clinical study, we investigated the impact of SCS on the spinal neural network in mitigating myocardial ischemia-induced sympathoexcitation and arrhythmogenicity. Ten Yorkshire pigs with left circumflex coronary artery (LCX) occlusion-induced chronic myocardial infarction (MI) were anesthetized and underwent laminectomy and a sternotomy at 4-5 weeks post-MI. The activation recovery interval (ARI) and dispersion of repolarization (DOR) were analyzed to evaluate the extent of sympathoexcitation and arrhythmogenicity during the left anterior descending coronary artery (LAD) ischemia. Extracellular and spinal dorsal horn (DH) and intermediolateral column (IML) neural recordings were performed using a multichannel microelectrode array inserted at the T2-T3 segment of the spinal cord. SCS was performed for 30 min at 1 kHz, 0.03 ms, 90% motor threshold. LAD ischemia was induced pre- and 1 min post-SCS to investigate how SCS modulates spinal neural network processing of myocardial ischemia. DH and IML neural interactions, including neuronal synchrony as well as cardiac sympathoexcitation and arrhythmogenicity markers were evaluated during myocardial ischemia pre- vs. post-SCS.

RESULTS

ARI shortening in the ischemic region and global DOR augmentation due to LAD ischemia was mitigated by SCS. Neural firing response of ischemia-sensitive neurons during LAD ischemia and reperfusion was blunted by SCS. Further, SCS showed a similar effect in suppressing the firing response of IML and DH neurons during LAD ischemia. SCS exhibited a similar suppressive impact on the mechanical, nociceptive and multimodal ischemia sensitive neurons. The LAD ischemia and reperfusion-induced augmentation in neuronal synchrony between DH-DH and DH-IML pairs of neurons were mitigated by the SCS.

DISCUSSION

These results suggest that SCS is decreasing the sympathoexcitation and arrhythmogenicity by suppressing the interactions between the spinal DH and IML neurons and activity of IML preganglionic sympathetic neurons.

摘要

引言

心肌缺血会破坏控制心脏交感神经节前神经元的心脏 - 脊髓神经网络,导致交感神经兴奋和室性快速性心律失常(VTs)。脊髓刺激(SCS)能够抑制心肌缺血引起的交感神经兴奋。然而,SCS如何调节脊髓神经网络尚不完全清楚。

方法

在这项临床前研究中,我们研究了SCS对脊髓神经网络在减轻心肌缺血诱导的交感神经兴奋和致心律失常性方面的影响。十只患有左旋冠状动脉(LCX)闭塞诱导的慢性心肌梗死(MI)的约克夏猪在MI后4 - 5周被麻醉,并接受椎板切除术和胸骨切开术。分析激活恢复间期(ARI)和复极离散度(DOR),以评估左前降支冠状动脉(LAD)缺血期间交感神经兴奋和致心律失常性的程度。使用插入脊髓T2 - T3节段的多通道微电极阵列进行细胞外和脊髓背角(DH)及中间外侧柱(IML)神经记录。以1 kHz、0.03 ms、90%运动阈值进行30分钟的SCS。在SCS前和SCS后1分钟诱导LAD缺血,以研究SCS如何调节脊髓神经网络对心肌缺血的处理。在SCS前后的心肌缺血期间,评估DH和IML神经相互作用,包括神经元同步性以及心脏交感神经兴奋和致心律失常性标志物。

结果

SCS减轻了由于LAD缺血导致的缺血区域ARI缩短和整体DOR增加。SCS使LAD缺血和再灌注期间缺血敏感神经元的神经放电反应减弱。此外,SCS在抑制LAD缺血期间IML和DH神经元的放电反应方面显示出类似的效果。SCS对机械、伤害性和多模式缺血敏感神经元表现出类似的抑制作用。SCS减轻了LAD缺血和再灌注诱导的DH - DH和DH - IML神经元对之间神经元同步性的增加。

讨论

这些结果表明,SCS通过抑制脊髓DH和IML神经元之间的相互作用以及IML节前交感神经元的活动来降低交感神经兴奋和致心律失常性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a9e/10272539/1159400480df/fnins-17-1180294-g001.jpg

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