Department of Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Nature. 2013 Aug 29;500(7464):589-92. doi: 10.1038/nature12358. Epub 2013 Jul 21.
Co-development of the cardiovascular and pulmonary systems is a recent evolutionary adaption to terrestrial life that couples cardiac output with the gas exchange function of the lung. Here we show that the murine pulmonary vasculature develops even in the absence of lung development. We have identified a population of multipotent cardiopulmonary mesoderm progenitors (CPPs) within the posterior pole of the heart that are marked by the expression of Wnt2, Gli1 and Isl1. We show that CPPs arise from cardiac progenitors before lung development. Lineage tracing and clonal analysis demonstrates that CPPs generate the mesoderm lineages within the cardiac inflow tract and lung including cardiomyocytes, pulmonary vascular and airway smooth muscle, proximal vascular endothelium, and pericyte-like cells. CPPs are regulated by hedgehog expression from the foregut endoderm, which is required for connection of the pulmonary vasculature to the heart. Together, these studies identify a novel population of multipotent cardiopulmonary progenitors that coordinates heart and lung co-development that is required for adaptation to terrestrial existence.
心血管系统和呼吸系统的共同发育是最近对陆地生活的进化适应,它将心输出量与肺的气体交换功能联系起来。在这里,我们表明,即使在没有肺发育的情况下,鼠类的肺血管系统也会发育。我们已经在心脏的后极发现了一群多能心肺中胚层祖细胞(CPP),这些祖细胞的特征是表达 Wnt2、Gli1 和 Isl1。我们表明,CPP 先于心肺发育而产生。谱系追踪和克隆分析表明,CPP 产生心脏流入道和肺中的中胚层谱系,包括心肌细胞、肺血管和气道平滑肌、近端血管内皮细胞和周细胞样细胞。CPP 受到前肠内胚层 Hedgehog 表达的调控,这对于肺血管与心脏的连接是必需的。总之,这些研究鉴定了一种新型的多能心肺祖细胞,它协调了心脏和肺的共同发育,这是适应陆地生存所必需的。