FIGURE

Fig. 4

ID
ZDB-FIG-240129-116
Publication
Yu et al., 2024 - Spatiotemporal modulation of nitric oxide and Notch signaling by hemodynamic-responsive Trpv4 is essential for ventricle regeneration
Other Figures
All Figure Page
Back to All Figure Page
Fig. 4

Temporal inhibition of Trpv4, Notch and NO signaling differentially affects ventricle regeneration. AC Quantification of the heart recovery rate at 96 hpt in ablated groups treated with HC-067047 (TRPV4 antagonist), DAPT (Notch signaling inhibitor) or L-NMMA (NO synthase inhibitor) at different stages. The numbers of larvae analyzed for each condition are indicated. Binomial test; ns, not significant; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001. DH′ Immunostaining of anti-phospho-histone H3 (pH3, green) and anti-myosin heavy chain (MF-20, red) in the hearts of control and ablated groups at 48 or 72 hpt with DMSO, HC-067047, DAPT or L-NMMA treatment for 0–24 or 48–72 hpt. I, J Quantification of pH3+ cardiomyocyte numbers in control and ablated hearts treated with DMSO, HC-067047, DAPT or L-NMMA for 0–24 or 48–72 hpt. N = 11 for each group. Mean + s.e.m. ANOVA analysis; ns, not significant; *P < 0.05, ****P < 0.0001. KO′ Confocal images of Tg(vmhc:mCherry-NTR; amhc:CreERT2; β-act2:RSG) control and ablated hearts at 72 hpt with DMSO, HC-067047, DAPT or L-NMMA treatment for 0–24 or 48–72 hpt. P, Q Quantification of the percentages of GFP-positive area in control or ablated ventricles with DMSO, HC-067047, DAPT or L-NMMA treatment for 0–24 or 48–72 hpt. N = 10 for each group. Mean + s.e.m. ANOVA analysis; *P < 0.05, ****P < 0.0001. Scale bars, 50 μm. Dashed lines outline the hearts. hpt hours post treatment, HC HC-067047

Expression Data

Expression Detail
Antibody Labeling
Phenotype Data

Phenotype Detail
Acknowledgments
This image is the copyrighted work of the attributed author or publisher, and ZFIN has permission only to display this image to its users. Additional permissions should be obtained from the applicable author or publisher of the image. Full text @ Cell. Mol. Life Sci.