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仿生电机械刺激后体外成年心肌切片的无标记定量 SWATH-MS 蛋白质组学分析。

Label-free quantitative SWATH-MS proteomic analysis of adult myocardial slices in vitro after biomimetic electromechanical stimulation.

机构信息

Department of Biochemistry, Medical University of Gdansk, Gdansk, Poland.

Department of Physiology, Medical University of Gdansk, Gdansk, Poland.

出版信息

Sci Rep. 2022 Oct 3;12(1):16533. doi: 10.1038/s41598-022-20494-z.

Abstract

A special in vitro model maintained with ultrathin cardiac slices with a preserved architecture, multi-cellularity, and physiology of the heart tissue was used. In our experiments, we performed label-free quantitative SWATH-MS proteomic analysis of the adult myocardial slices in vitro after biomimetic electromechanical stimulation. Rat myocardial slices were stretched to sarcomere lengths (SL) within the physiological range of 1.8-2.2 μm. Electromechanically stimulated slices were compared with slices cultured without electromechanical stimulation (unloaded and nonstimulated-TW) on a liquid-air interface and with fresh myocardial slices (0 h-C). Quantitative (relative) proteomic analyses were performed using a label-free SWATH-MS technique on a high-resolution microLC-MS/MS TripleTOF 5600+ system (SCIEX). The acquired MS/MS spectra from the DDA LC-MS/MS analyses of the rat heart samples were searched against the UniProt Rattus norvegicus database (version of 15.05.2018) using the Paragon algorithm incorporated into ProteinPilot 4.5 (SCIEX) software. The highest number of differential proteins was observed in the TW group-121 when compared to the C group. In the 1.8 and 2.2 groups, 79 and 52 proteins present at a significantly different concentration from the control samples were found, respectively. A substantial fraction of these proteins were common for two or more comparisons, resulting in a list of 169 significant proteins for at least one of the comparisons. This study found the most prominent changes in the proteomic pattern related to mitochondrial respiration, energy metabolism, and muscle contraction in the slices that were stretched and fresh myocardial slices cultured without electromechanical stimulation.

摘要

采用了一种特殊的体外模型,该模型使用超薄的心脏切片维持,这些切片具有保留的结构、多细胞性和心脏组织的生理学特性。在我们的实验中,我们对体外仿生机电刺激后的成年心肌切片进行了无标记定量 SWATH-MS 蛋白质组学分析。将大鼠心肌切片拉伸至肌节长度 (SL) 在生理范围内 1.8-2.2μm。将机电刺激的切片与在气液界面培养而未受到机电刺激的切片(未加载和非刺激-TW)以及新鲜心肌切片(0h-C)进行比较。使用无标记 SWATH-MS 技术在高分辨率 microLC-MS/MS TripleTOF 5600+系统 (SCIEX) 上进行定量(相对)蛋白质组学分析。从大鼠心脏样品的 DDA LC-MS/MS 分析中获得的 MS/MS 光谱使用 Paragon 算法在 ProteinPilot 4.5(SCIEX)软件中搜索 UniProt Rattus norvegicus 数据库(版本 15.05.2018)。与 C 组相比,TW 组-121 观察到最多的差异蛋白。在 1.8 和 2.2 组中,分别发现了 79 和 52 种蛋白的浓度与对照样品有显著差异。这些蛋白中的很大一部分在两个或更多比较中是共同的,导致至少一个比较有 169 个显著蛋白的列表。这项研究发现,在拉伸的切片和未受机电刺激培养的新鲜心肌切片中,与线粒体呼吸、能量代谢和肌肉收缩相关的蛋白质组模式发生了最显著的变化。

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