首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >A new, biventricular working heterotopic heart transplant model: anatomic and physiologic considerations.
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A new, biventricular working heterotopic heart transplant model: anatomic and physiologic considerations.

机译:一种新的双心室工作性异位心脏移植模型:解剖和生理方面的考虑。

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BACKGROUND: Current heterotopic heart transplant models have nonworking left ventricles that atrophy and are not suitable for some studies. We developed and characterized a new heterotopic model with working left and right ventricles. METHODS: Hemodynamics were compared in the working and nonworking models. The influence of the length of the donor's aorta on coronary arterial oxygenation was tested. The influence of the recipient's arterial pressure on developed left ventricular systolic pressure and the effects of alpha- and beta-adrenergic stimulation were examined in both models. The nonworking and working models were compared in chronic transplant preparations to investigate possible ventricular atrophy. RESULTS: In this model, coronary arterial oxygen tension was influenced by the length of the donor's aorta. With a short donor aorta (0.5 cm in the porcine model), normal coronary arterial oxygenation is maintained. Left ventricular systolic pressure was greater in the working compared with the nonworking models. Left ventricular systolic pressure did not respond to alpha-adrenergic stimulation but did respond to beta-adrenergic and combined stimulation, which indicates its relationship to donor heart output. Left ventricular systolic pressure correlated with and was determined by recipient arterial pressure. Ventricular atrophy occurred in the nonworking model, but ventricular weight was maintained at sham control levels in this new working model. CONCLUSION: These results demonstrate the surgical anatomic considerations of a new heterotopic heart transplant model in which the left and right ventricles work. Its hemodynamic performance is related to recipient hemodynamics, and the model responds to adrenergic stimulation. In chronic studies, ventricular mass is maintained, thus allowing this model to overcome a significant shortcoming of existing heterotopic heart transplant models.
机译:背景:当前的异位心脏移植模型具有无效的左心室萎缩,因此不适合某些研究。我们开发并表征了具有左心室和右心室的新异位模型。方法:在工作模型和非工作模型中比较了血流动力学。测试了供体主动脉长度对冠状动脉氧合的影响。在两个模型中都检查了接受者的动脉压对左室收缩压的发展以及α-和β-肾上腺素能刺激的影响。在慢性移植准备中比较了非工作模型和工作模型,以研究可能的心室萎缩。结果:在该模型中,冠状动脉血氧张力受供体主动脉长度的影响。用较短的供体主动脉(在猪模型中为0.5 cm),可以维持正常的冠状动脉氧合作用。与非工作模型相比,在工作状态下左心室收缩压更大。左心室收缩压对α-肾上腺素刺激无反应,但对β-肾上腺素和联合刺激有反应,这表明其与供体心输出量的关系。左心室收缩压与受体动脉压相关,并由受体动脉压确定。在非工作模型中发生心室萎缩,但在这种新的工作模型中,心室重量维持在假控制水平。结论:这些结果证明了一种新的异位心脏移植模型的手术解剖学考虑,其中左心室和右心室都在起作用。它的血液动力学性能与受体血液动力学有关,并且该模型对肾上腺素能刺激作出反应。在慢性研究中,维持了心室质量,从而使该模型克服了现有异位心脏移植模型的重大缺陷。

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