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新生儿心脏而非成熟心脏通过有益地改变力-频率关系来适应急性心动过速。

The neonatal but not the mature heart adapts to acute tachycardia by beneficial modification of the force-frequency relationship.

作者信息

Schmidt M R, White P A, Khambadkone S, Gross G J, Bøtker H E, Vogel M, Hjortdal V E, Sørensen K E, Redington A N

机构信息

Aarhus University Hospital, Skejby Sygehus, Aarhus, Denmark.

出版信息

Pediatr Cardiol. 2011 Jun;32(5):562-7. doi: 10.1007/s00246-011-9899-6. Epub 2011 Mar 11.

Abstract

The force-frequency relationship (FFR) reflects alterations in intracellular calcium cycling during changing heart rate (HR). Tachycardia-induced heart failure is associated with depletion of intracellular calcium. We hypothesized (1) that the relative resistance to tachycardia-induced heart failure seen in neonatal pigs is related to differences in calcium cycling, resulting in different FFR responses and (2) that pretreatment with digoxin to increase intracellular calcium would modifies these changes. LV +dP/dt was measured during incremental right atrial pacing in 16 neonatal and 14 adult pigs. FFR was measured as the change in +dP/dt as HR was increased. Animals were randomized to control or intravenous bolus digoxin (n = 8 neonate pigs in the 0.05 mg/kg group and n = 7 adult pigs in the 0.025 mg/kg group) and paced for 90 min at 25 bpm greater than the rate of peak +dP/dt. Repeat FFR was then obtained. The postpacing FFR in neonatal control pigs shifted rightward, with peak force occurring 30 bpm greater than baseline (P < 0.03). There was no vertical shift; thus, force at 150 bpm decreased (P < 0.03) and force at 300 beats/min increased (P < 0.08). In adult control pigs, FFR shifted downward (P < 0.01), with decreased force generation at all HRs. In both neonates and adult pigs, digoxin increased +dP/dt at all HRs; however, in neonate pigs digoxin decreased the contractile reserve by abrogation of the rightward shift of FFR. An adaptive response to tachycardia in the neonate pig leads to improved force generation at greater HRs. Conversely, the response of the mature pig heart is maladaptive with decreased force generation. Pretreatment with digoxin modifies these responses.

摘要

力-频率关系(FFR)反映了心率(HR)变化期间细胞内钙循环的改变。心动过速诱发的心力衰竭与细胞内钙的耗竭有关。我们假设:(1)新生猪中对心动过速诱发的心力衰竭的相对抗性与钙循环差异有关,导致不同的FFR反应;(2)用洋地黄毒苷预处理以增加细胞内钙会改变这些变化。在16只新生猪和14只成年猪进行递增右心房起搏期间测量左心室 +dP/dt。FFR通过HR增加时 +dP/dt的变化来测量。动物被随机分为对照组或静脉推注洋地黄毒苷组(0.05 mg/kg组中有8只新生猪,0.025 mg/kg组中有7只成年猪),并以比 +dP/dt峰值速率高25次/分钟的频率起搏90分钟。然后获得重复FFR。新生对照组猪起搏后的FFR向右移位,峰值力出现在比基线高30次/分钟处(P < 0.03)。没有垂直移位;因此,150次/分钟时的力降低(P < 0.03),300次/分钟时的力增加(P < 0.08)。在成年对照组猪中,FFR向下移位(P < 0.01),所有HR下的力产生均降低。在新生猪和成年猪中,洋地黄毒苷在所有HR下均增加 +dP/dt;然而,在新生猪中,洋地黄毒苷通过消除FFR的右移而降低了收缩储备。新生猪对心动过速的适应性反应导致在更高HR时力产生增加。相反,成熟猪心脏的反应是适应不良的,力产生减少。用洋地黄毒苷预处理会改变这些反应。

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