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Recapitulation of developmental mechanisms to revascularize the ischemic heart
Karina N. Dubé, Tonia M. Thomas, Sonali Munshaw, Mala Rohling, Paul R. Riley, Nicola Smart
Karina N. Dubé, Tonia M. Thomas, Sonali Munshaw, Mala Rohling, Paul R. Riley, Nicola Smart
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Research Article Cardiology

Recapitulation of developmental mechanisms to revascularize the ischemic heart

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Abstract

Restoring blood flow after myocardial infarction (MI) is essential for survival of existing and newly regenerated tissue. Endogenous vascular repair processes are deployed following injury but are poorly understood. We sought to determine whether developmental mechanisms of coronary vessel formation are intrinsically reactivated in the adult mouse after MI. Using pulse-chase genetic lineage tracing, we establish that de novo vessel formation constitutes a substantial component of the neovascular response, with apparent cellular contributions from the endocardium and coronary sinus. The adult heart reverts to its former hypertrabeculated state and repeats the process of compaction, which may facilitate endocardium-derived neovascularization. The capacity for angiogenic sprouting of the coronary sinus vein, the adult derivative of the sinus venosus, may also reflect its embryonic origin. The quiescent epicardium is reactivated and, while direct cellular contribution to new vessels is minimal, it supports the directional expansion of the neovessel network toward the infarcted myocardium. Thymosin β4, a peptide with roles in vascular development, was required for endocardial compaction, epicardial vessel expansion, and smooth muscle cell recruitment. Insight into pathways that regulate endogenous vascular repair, drawing on comparisons with development, may reveal novel targets for therapeutically enhancing neovascularization.

Authors

Karina N. Dubé, Tonia M. Thomas, Sonali Munshaw, Mala Rohling, Paul R. Riley, Nicola Smart

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Figure 9

Thymosin β4 expression after myocardial infarction.

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Thymosin β4 expression after myocardial infarction.
qPCR shows that Tmsb...
qPCR shows that Tmsb4x, the gene encoding Tβ4, is endogenously upregulated in the heart within 24 hours of infarction (A; n = 3 separate hearts per time point; box-and-whisker plots show mean ± minimum/maximum; 2-tailed Kruskal-Wallis nonparametric test with Dunn’s post-hoc test for multiple comparisons; *P ≤ 0.05, **P ≤ 0.01. ). By immunofluorescence, Tβ4 levels were highest in the expanding epicardium and upregulated in capillaries (B). Tβ4 levels in endocardial cells peaked at day 4 (C and D). Staining on Tβ4KO sections confirms KO of Tβ4 and antibody specificity (E). Upregulation can be appreciated when compared with a sham heart (F). By day 7, Tβ4 levels were reduced in endocardium (G), but elevated in cardiomyocytes surrounding remodeling subendocardial vessels (arrowheads, H) and in cells underlying the endocardium (I), many of which coexpressed αSMA (J; indicated by arrowheads). Of note, fully formed vessels without associated delaminating cells, indicated by the asterisk in G, contained the lowest Tβ4 levels. Representative of n = 4 WT day 4 hearts; n = 8 WT day 7 hearts and n = 8 KO day 7 hearts. MI, myocardial infarction; epi, epicardium; myo, myocardium; endo, endocardium; RGB, red/green/blue channels; RB, red/blue channels. Scale bars: 50 μm (B–G); 20 μm (H–J).

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