Arduini Alessandro, Fleming Stephen J, Xiao Ling, Hall Amelia W, Akkad Amer-Denis, Chaffin Mark D, Bendinelli Kayla J, Tucker Nathan R, Papangeli Irinna, Mantineo Helene, Flores-Bringas Patricio, Babadi Mehrtash, Stegmann Christian M, García-Cardeña Guillermo, Lindsay Mark E, Klattenhoff Carla, Ellinor Patrick T
Precision Cardiology Laboratory, The Broad Institute, Cambridge, MA 02142, USA.
Precision Cardiology Laboratory, The Broad Institute, Cambridge, MA 02142, USA; Data Sciences Platform, The Broad Institute of MIT and Harvard, Cambridge, MA 02142, USA.
Cell Rep. 2025 Jan 28;44(1):115091. doi: 10.1016/j.celrep.2024.115091. Epub 2024 Dec 21.
We sought to characterize cellular composition across the cardiovascular system of the healthy Wistar rat, an important model in preclinical cardiovascular research. We performed single-nucleus RNA sequencing (snRNA-seq) in 78 samples in 10 distinct regions, including the four chambers of the heart, ventricular septum, sinoatrial node, atrioventricular node, aorta, pulmonary artery, and pulmonary veins, which produced 505,835 nuclei. We identified 26 distinct cell types and additional subtypes, with different cellular composition across cardiac regions and tissue-specific transcription for each cell type. Several cell subtypes were region specific, including a subtype of vascular smooth muscle cells enriched in the large vasculature. We observed tissue-enriched cellular communication networks, including heightened Nppa-Npr1/2/3 signaling in the sinoatrial node. The existence of tissue-restricted cell types suggests regional regulation of cardiovascular physiology. Our detailed transcriptional characterization of each cell type offers the potential to identify novel therapeutic targets and improve preclinical models of cardiovascular disease.
我们试图描绘健康Wistar大鼠心血管系统中的细胞组成,这是临床前心血管研究中的一个重要模型。我们在10个不同区域的78个样本中进行了单核RNA测序(snRNA-seq),这些区域包括心脏的四个腔室、室间隔、窦房结、房室结、主动脉、肺动脉和肺静脉,共产生了505,835个细胞核。我们鉴定出26种不同的细胞类型及其他亚型,不同心脏区域的细胞组成各异,且每种细胞类型都有组织特异性转录。几种细胞亚型具有区域特异性,包括在大血管中富集的一种血管平滑肌细胞亚型。我们观察到了组织富集的细胞通讯网络,包括窦房结中增强的Nppa-Npr1/2/3信号传导。组织受限细胞类型的存在表明心血管生理学存在区域调节。我们对每种细胞类型的详细转录特征分析为识别新的治疗靶点和改进心血管疾病的临床前模型提供了潜力。