Department of Cardiac Surgery, University Hospital Halle (Saale), University of Halle, 06120 Halle (Saale), Germany.
Department of Cardiac Surgery, University Hospital Heidelberg, 69120 Heidelberg, Germany.
Int J Mol Sci. 2024 Feb 13;25(4):2262. doi: 10.3390/ijms25042262.
Protection of the coronary arteries during donor heart maintenance is pivotal to improve results and prevent the development of coronary allograft vasculopathy. The effect of hypothermic, oxygenated perfusion (HOP) with the traditional HTK and the novel HTK-N solution on the coronary microvasculature of donation-after-circulatory-death (DCD) hearts is known. However, the effect on the coronary macrovasculature is unknown. Thus, we maintained porcine DCD hearts by HOP with HTK or HTK-N for 4 h, followed by transplantation-equivalent reperfusion with blood for 2 h. Then, we removed the left anterior descending coronary artery (LAD) and compared the endothelial-dependent and -independent vasomotor function of both groups using bradykinin and sodium-nitroprusside (SNP). We also determined the transcriptome of LAD samples using microarrays. The endothelial-dependent relaxation was significantly better after HOP with HTK-N. The endothelial-independent relaxation was comparable between both groups. In total, 257 genes were expressed higher, and 668 genes were expressed lower in the HTK-N group. Upregulated genes/pathways were involved in endothelial and vascular smooth muscle cell preservation and heart development. Downregulated genes were related to ischemia/reperfusion injury, oxidative stress, mitochondrion organization, and immune reaction. The novel HTK-N solution preserves the endothelial function of DCD heart coronary arteries more effectively than traditional HTK.
在供心维护期间保护冠状动脉对于改善结果和预防同种移植物血管病的发展至关重要。低温、含氧灌注(HOP)与传统 HTK 和新型 HTK-N 溶液对心脏停跳后供体(DCD)心脏冠状动脉微血管的影响是已知的。然而,对冠状动脉大动脉的影响尚不清楚。因此,我们通过 HOP 用 HTK 或 HTK-N 维持猪 DCD 心脏 4 小时,然后用血液进行移植等效再灌注 2 小时。然后,我们取出左前降支冠状动脉(LAD),并使用缓激肽和硝普钠(SNP)比较两组的内皮依赖性和非依赖性血管舒缩功能。我们还使用微阵列确定了 LAD 样本的转录组。用 HTK-N 进行 HOP 后,内皮依赖性松弛明显更好。两组之间的内皮非依赖性松弛相当。共有 257 个基因表达上调,668 个基因表达下调。上调的基因/途径参与内皮和血管平滑肌细胞的保存和心脏发育。下调的基因与缺血/再灌注损伤、氧化应激、线粒体组织和免疫反应有关。新型 HTK-N 溶液比传统 HTK 更有效地保存 DCD 心脏冠状动脉的内皮功能。