Endocardially Derived Macrophages Are Essential for Valvular Remodeling
Developmental Cell, ISSN: 1534-5807, Vol: 48, Issue: 5, Page: 617-630.e3
2019
- 66Citations
- 94Captures
- 4Mentions
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Example: if you select the 1-year option for an article published in 2019 and a metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019. If you select the 3-year option for the same article published in 2019 and the metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019, 2018 and 2017.
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Metrics Details
- Citations66
- Citation Indexes66
- 66
- CrossRef34
- Captures94
- Readers94
- 94
- Mentions4
- Blog Mentions2
- Blog2
- News Mentions2
- News2
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Article Description
During mammalian embryogenesis, de novo hematopoiesis occurs transiently in multiple anatomical sites including the yolk sac, dorsal aorta, and heart tube. A long-unanswered question is whether these local transient hematopoietic mechanisms are essential for embryonic growth. Here, we show that endocardial hematopoiesis is critical for cardiac valve remodeling as a source of tissue macrophages. Colony formation assay from explanted heart tubes and genetic lineage tracing with the endocardial specific Nfatc1-Cre mouse revealed that hemogenic endocardium is a de novo source of tissue macrophages in the endocardial cushion, the primordium of the cardiac valves. Surface marker characterization, gene expression profiling, and ex vivo phagocytosis assay revealed that the endocardially derived cardiac tissue macrophages play a phagocytic and antigen presenting role. Indeed, genetic ablation of endocardially derived macrophages caused severe valve malformation. Together, these data suggest that transient hemogenic activity in the endocardium is indispensable for the valvular tissue remodeling in the heart.
Bibliographic Details
http://www.sciencedirect.com/science/article/pii/S1534580719300498; http://dx.doi.org/10.1016/j.devcel.2019.01.021; http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85061958769&origin=inward; http://www.ncbi.nlm.nih.gov/pubmed/30799229; https://linkinghub.elsevier.com/retrieve/pii/S1534580719300498; https://dx.doi.org/10.1016/j.devcel.2019.01.021; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8?platform=hootsuite; http://www.cell.com/article/S1534580719300498/abstract; http://www.cell.com/article/S1534580719300498/fulltext; http://www.cell.com/article/S1534580719300498/pdf; https://www.cell.com/developmental-cell/abstract/S1534-5807(19)30049-8; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8?platform=hootsuite#.XG7pn4tCjlM.twitter; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8#.XJD5dGCLYbk.twitter; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8#%20; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8; https://www.cell.com/developmental-cell/fulltext/S1534-5807(19)30049-8#.XHGJPo6xrPM.twitter
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