Division of Cardiology, School of Medicine, Emory University, Atlanta, GA, 30322, USA.
Division of Cardiology, School of Medicine, Emory University, Atlanta, GA, 30322, USA.
Dev Biol. 2024 Apr;508:93-106. doi: 10.1016/j.ydbio.2024.01.011. Epub 2024 Jan 28.
Despite extensive studies on endogenous heart regeneration within the past 20 years, the players involved in initiating early regeneration events are far from clear. Here, we assessed the function of neutrophils, the first-responder cells to tissue damage, during zebrafish heart regeneration. We detected rapid neutrophil mobilization to the injury site after ventricular amputation, peaking at 1-day post-amputation (dpa) and resolving by 3 dpa. Further analyses indicated neutrophil mobilization coincides with peak epicardial cell proliferation, and recruited neutrophils associated with activated, expanding epicardial cells at 1 dpa. Neutrophil depletion inhibited myocardial regeneration and significantly reduced epicardial cell expansion, proliferation, and activation. To explore the molecular mechanism of neutrophils on the epicardial regenerative response, we performed scRNA-seq analysis of 1 dpa neutrophils and identified enrichment of the FGF and MAPK/ERK signaling pathways. Pharmacological inhibition of FGF signaling indicated its' requirement for epicardial expansion, while neutrophil depletion blocked MAPK/ERK signaling activation in epicardial cells. Ligand-receptor analysis indicated the EGF ligand, hbegfa, is released from neutrophils and synergizes with other FGF and MAPK/ERK factors for induction of epicardial regeneration. Altogether, our studies revealed that neutrophils quickly motivate epicardial cells, which later accumulate at the injury site and contribute to heart regeneration.
尽管在过去的 20 年里,人们对心脏内源性再生进行了广泛的研究,但涉及启动早期再生事件的参与者还远不清楚。在这里,我们评估了中性粒细胞在斑马鱼心脏再生中的功能,中性粒细胞是对组织损伤的第一反应细胞。我们在心室截断后检测到中性粒细胞迅速向损伤部位迁移,在截断后 1 天(dpa)达到峰值,并在 3 dpa 时得到解决。进一步的分析表明,中性粒细胞的动员与心外膜细胞增殖的高峰期相吻合,在 1 dpa 时,募集的中性粒细胞与激活的、扩张的心外膜细胞相关。中性粒细胞耗竭抑制心肌再生,并显著减少心外膜细胞的扩张、增殖和激活。为了探索中性粒细胞对心外膜再生反应的分子机制,我们对 1 dpa 中性粒细胞进行了 scRNA-seq 分析,发现 FGF 和 MAPK/ERK 信号通路富集。FGF 信号的药理学抑制表明其对心外膜扩张的要求,而中性粒细胞耗竭阻断了心外膜细胞中 MAPK/ERK 信号的激活。配体-受体分析表明,EGF 配体 hbegfa 从中性粒细胞中释放出来,并与其他 FGF 和 MAPK/ERK 因子协同作用,诱导心外膜再生。总之,我们的研究表明,中性粒细胞迅速激活心外膜细胞,随后心外膜细胞在损伤部位聚集并促进心脏再生。