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Global gene expression analysis in nonfailing and failing myocardium pre- and postpulsatile and nonpulsatile ventricular assist device support

机译:完整的基因表达分析,在无故障和衰竭的心肌搏动前后,非搏动性心室辅助装置支持中

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Mechanical unloading by ventricular assist devices (VAD) leads to significant gene expression changes often summarized as reverse remodeling. However, little is known on individual transcriptome changes during VAD support and its relationship to nonfailing hearts (NF). In addition no data are available for the transcriptome regulation during nonpulsatile VAD support. Therefore we analyzed the gene expression patterns of 30 paired samples from VAD-supported (including 8 nonpulsatile VADs) and 8 nonfailing control hearts (NF) using the first total human genome array available. Transmural myocardial samples were collected for RNA isolation. RNA was isolated by commercial methods and processed according to chip-manufacturer recommendations. cRNA were hybridized on Affymetrix HG-U133 Plus 2.0 arrays, providing coverage of the whole human genome Array. Data were analyzed using Microarray Analysis Suite 5.0 (Affymetrix) and clustered by Expressionist software (Genedata). We found 352 transcripts were differentially regulated between samples from VAD implantation and NF, whereas 510 were significantly regulated between VAD transplantation and NF (paired t-test P < 0.001, fold change ≥1.6). Remarkably, only a minor fraction of 111 transcripts was regulated in heart failure (HF) and during VAD support. Unsupervised hierarchical clustering of paired VAD and NF samples revealed separation of HF and NF samples; however, individual differentiation of VAD implantation and VAD transplantation was not accomplished. Clustering of pulsatile and nonpulsatile VAD did not lead to robust separation of gene expression patterns. During VAD support myocardial gene expression changes do not indicate reversal of the HF phenotype but reveal a distinct HF-related pattern. Transcriptome analysis of pulsatile and nonpulsatile VAD-supported hearts did not provide evidence for a pump mode-specific transcriptome pattern.
机译:通过心室辅助装置(VAD)进行的机械卸载导致显着的基因表达变化,通常被概括为反向重塑。但是,对VAD支持期间个体转录组变化及其与无衰竭心脏(NF)的关系知之甚少。此外,在无脉动VAD支持期间,尚无用于转录组调控的数据。因此,我们使用了第一个可用的人类全基因组阵列,分析了来自VAD支持的30个配对样本(包括8个非搏动性VAD)和8个非失败对照心脏(NF)的基因表达模式。收集透壁心肌样品用于RNA分离。通过商业方法分离RNA,并根据芯片制造商的建议进行处理。 cRNA在Affymetrix HG-U133 Plus 2.0阵列上杂交,覆盖了整个人类基因组阵列。使用Microarray Analysis Suite 5.0(Affymetrix)分析数据,并通过Expressionist软件(Genedata)进行聚类。我们发现352个转录本在VAD植入和NF样品之间受到差异调节,而510个在VAD植入和NF之间显着调节(配对t检验P <0.001,倍数变化≥1.6)。值得注意的是,在心力衰竭(HF)和VAD支持期间,只有一小部分111个转录物受到调节。配对的VAD和NF样本的无监督分层聚类揭示了HF和NF样本的分离;但是,VAD植入和VAD移植的个体差异尚未实现。搏动性和非搏动性VAD的聚类并未导致基因表达模式的稳健分离。在VAD支持期间,心肌基因表达的变化并不表示HF表型的逆转,而显示出与HF相关的独特模式。对搏动性和非搏动性VAD支持的心脏进行的转录组分析未提供特定于泵浦模式的转录组模式的证据。

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