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Carotid body denervation improves autonomic and cardiac function and attenuates disordered breathing in congestive heart failure

机译:颈动脉去神经改善充血性心力衰竭的自主神经和心脏功能,并减轻呼吸紊乱

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In congestive heart failure (CHF), carotid body (CB) chemoreceptor activity is enhanced and is associated with oscillatory (Cheyne-Stokes) breathing patterns, increased sympathetic nerve activity (SNA) and increased arrhythmia incidence. We hypothesized that denervation of the CB (CBD) chemoreceptors would reduce SNA, reduce apnoea and arrhythmia incidence and improve ventricular function in pacing-induced CHF rabbits. Resting breathing, renal SNA (RSNA) and arrhythmia incidence were measured in three groups of animals: (1) sham CHF/sham-CBD (sham-sham); (2) CHF/sham-CBD (CHF-sham); and (3) CHF/CBD (CHF-CBD). Chemoreflex sensitivity was measured as the RSNA and minute ventilatory (V?E) responses to hypoxia and hypercapnia. Respiratory pattern was measured by plethysmography and quantified by an apnoea-hypopnoea index, respiratory rate variability index and the coefficient of variation of tidal volume. Sympatho-respiratory coupling (SRC) was assessed using power spectral analysis and the magnitude of the peak coherence function between tidal volume and RSNA frequency spectra. Arrhythmia incidence and low frequency/high frequency ratio of heart rate variability were assessed using ECG and blood pressure waveforms, respectively. RSNA and V?E responses to hypoxia were augmented in CHF-sham and abolished in CHF-CBD animals. Resting RSNA was greater in CHF-sham compared to sham-sham animals (43 ± 5% max vs. 23 ± 2% max, P 0.05), and this increase was not found in CHF-CBD animals (25 ± 1% max, P 0.05 vs. CHF-sham). Low frequency/high frequency heart rate variability ratio was similarly increased in CHF and reduced by CBD (P 0.05). Respiratory rate variability index, coefficient of variation of tidal volume and apnoea-hypopnoea index were increased in CHF-sham animals and reduced in CHF-CBD animals (P 0.05). SRC (peak coherence) was increased in CHF-sham animals (sham-sham 0.49 ± 0.05; CHF-sham 0.79 ± 0.06), and was attenuated in CHF-CBD animals (0.59 ± 0.05) (P 0.05 for all comparisons). Arrhythmia incidence was increased in CHF-sham and reduced in CHF-CBD animals (213 ± 58 events h-1 CHF, 108 ± 48 events h-1 CHF-CBD, P 0.05). Furthermore, ventricular systolic (3.8 ± 0.7 vs. 6.3 ± 0.5 ml, P 0.05) and diastolic (6.3 ± 1.0 vs. 9.1 ± 0.5 ml, P 0.05) volumes were reduced, and ejection fraction preserved (41 ± 5% vs. 54 ± 2% reduction from pre-pace, P 0.05) in CHF-CBD compared to CHF-sham rabbits. Similar patterns of changes were observed longitudinally within the CHF-CBD group before and after CBD. In conclusion, CBD is effective in reducing RSNA, SRC and arrhythmia incidence, while improving breathing stability and cardiac function in pacing-induced CHF rabbits.
机译:在充血性心力衰竭(CHF)中,颈动脉体(CB)的化学感受器活性增强,并与振荡(Cheyne-Stokes)呼吸模式,交感神经活动(SNA)增加和心律不齐发生率增加相关。我们假设,CB(CBD)化学感受器的神经支配将减少起搏诱发的CHF兔的SNA,减少呼吸暂停和心律不齐的发生率并改善心室功能。在三组动物中测量了静息呼吸,肾SNA(RSNA)和心律不齐的发生率:(1)假CHF /假CBD(假); (2)CHF / sham-CBD(CHF-sham); (3)CHF / CBD(CHF-CBD)。化学反射敏感性的测量标准是对低氧和高碳酸血症的RSNA和分钟通气(V?E)反应。通过体积描记法测量呼吸模式,并通过呼吸暂停-呼吸不足指数,呼吸频率变异性指数和潮气量变化系数进行量化。使用功率谱分析以及潮气量和RSNA频谱之间峰值相干函数的幅度,评估了交感呼吸耦合(SRC)。心律失常的发生率和心率变异性的低频/高频比率分别使用ECG和血压波形进行评估。 RSNA和V?E对低氧的反应在CHF假手术中增强,而在CHF-CBD动物中则消失。与假手术动物相比,CHF假手术中的静息RSNA更大(最大43±5%vs.最大23±2%,P <0.05),而在CHF-CBD动物(最大25±1%)中未发现这种增加,相对于CHF假手术,P <0.05)。低频/高频心率变异率在CHF中同样升高,而CBD则降低(P <0.05)。 CHF假手术动物的呼吸频率变异性指数,潮气量变异系数和呼吸暂停-低通气指数增加,CHF-CBD动物减少(P <0.05)。在伪造CHF的动物(伪造0.49±0.05;伪造的0.79±0.06)中,SRC(峰值相干性)增加,在伪造CHF-CBD的动物中(0.59±0.05)减弱(所有比较的P <0.05)。心律失常的发生率在CHF假手术中增加而在CHF-CBD动物中减少(213±58事件h-1 CHF,108±48事件h-1 CHF-CBD,P <0.05)。此外,心室收缩期(3.8±0.7 vs. 6.3±0.5 ml,P <0.05)和舒张期(6.3±1.0 vs. 9.1±0.5 ml,P <0.05)体积减小,射血分数得以保留(41±5%vs.与伪造CHF的兔子相比,CHF-CBD的起搏前降低了54±2%,P <0.05)。在CBD前后,CHF-CBD组在纵向上观察到类似的变化模式。总之,CBD可有效降低起搏诱发的CHF兔的呼吸稳定性和心脏功能,同时降低RSNA,SRC和心律不齐的发生率。

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