Vivien Céline J, Pichol-Thievend Cathy, Sim Choon Boon, Smith Jacob B, Bower Neil I, Hogan Benjamin M, Hudson James E, Francois Mathias, Porrello Enzo R
1Murdoch Children's Research Institute, The Royal Children's Hospital, Melbourne, VIC 3052 Australia.
2Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD 4072 Australia.
NPJ Regen Med. 2019 Aug 22;4:18. doi: 10.1038/s41536-019-0079-2. eCollection 2019.
The lymphatic vasculature mediates essential physiological functions including fluid homeostasis, lipid and hormone transport, and immune cell trafficking. Recent studies have suggested that promoting lymphangiogenesis enhances cardiac repair following injury, but it is unknown whether lymphangiogenesis is required for cardiac regeneration. Here, we describe the anatomical distribution, regulation, and function of the cardiac lymphatic network in a highly regenerative zebrafish model system using transgenic reporter lines and loss-of-function approaches. We show that zebrafish lacking functional and signaling are devoid of a cardiac lymphatic network and display cardiac hypertrophy in the absence of injury, suggesting a role for these vessels in cardiac tissue homeostasis. Using two different cardiac injury models, we report a robust lymphangiogenic response following cryoinjury, but not following apical resection injury. Although the majority of mutants lacking functional and signaling were able to mount a full regenerative response even in the complete absence of a cardiac lymphatic vasculature, cardiac regeneration was severely impaired in a subset of mutants, which was associated with heightened pro-inflammatory cytokine signaling. These findings reveal a context-dependent requirement for the lymphatic vasculature during cardiac growth and regeneration.
淋巴管系统介导着重要的生理功能,包括液体平衡、脂质和激素运输以及免疫细胞运输。最近的研究表明,促进淋巴管生成可增强损伤后的心脏修复,但尚不清楚淋巴管生成是否是心脏再生所必需的。在这里,我们使用转基因报告系和功能丧失方法,描述了高度再生的斑马鱼模型系统中心脏淋巴管网络的解剖分布、调节和功能。我们发现,缺乏功能性和信号的斑马鱼没有心脏淋巴管网络,并且在没有损伤的情况下表现出心脏肥大,这表明这些血管在心脏组织稳态中发挥作用。使用两种不同的心脏损伤模型,我们报告了冷冻损伤后强烈的淋巴管生成反应,但心尖切除损伤后则没有。尽管大多数缺乏功能性和信号的突变体即使在完全没有心脏淋巴管系统的情况下也能够产生完全的再生反应,但一部分突变体的心脏再生严重受损,这与促炎细胞因子信号增强有关。这些发现揭示了心脏生长和再生过程中对淋巴管系统的背景依赖性需求。