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Neuropilin 1 mediates epicardial activation and revascularization in the regenerating zebrafish heart (2019)
Journal Article
Lowe, V., Wisniewski, L., Sayers, J., Evans, I., Frankel, P., Mercader-Huber, N., …Pellet-Many, C. (2019). Neuropilin 1 mediates epicardial activation and revascularization in the regenerating zebrafish heart. Development, 146, https://doi.org/10.1242/dev.174482

Unlike adult mammals, zebrafish can regenerate their heart. A key mechanism for regeneration is the activation of the epicardium, leading to the establishment of a supporting scaffold for new cardiomyocytes, angiogenesis and cytokine secretion. Neuro... Read More about Neuropilin 1 mediates epicardial activation and revascularization in the regenerating zebrafish heart.

What can we learn from the hair of the dog? Complex effects of endogenous and exogenous stressors on canine hair cortisol (2019)
Journal Article
Packer, R. M. A., Davies, A. M., Volk, H. A., Puckett, H. L., Hobbs, S. L., & Fowkes, R. C. (2019). What can we learn from the hair of the dog? Complex effects of endogenous and exogenous stressors on canine hair cortisol. PLoS ONE, 14(5), e0216000. https://doi.org/10.1371/journal.pone.0216000

Hair is an emerging biological matrix in which to measure chronic HPA axis activity, offering a longer term view into an animal’s life. We explored effects of exogenous (e.g. lifestyle, medications, social environment) and endogenous (e.g. disease, b... Read More about What can we learn from the hair of the dog? Complex effects of endogenous and exogenous stressors on canine hair cortisol.

Smooth muscle cell-specific knockout of neuropilin-1 impairs postnatal lung development and pathological vascular smooth muscle cell accumulation (2019)
Journal Article
Mahmoud, M., Evans, I. M., Mehta, V., Pellet-Many, C., Paliashvili, K., & Zachary, I. (2019). Smooth muscle cell-specific knockout of neuropilin-1 impairs postnatal lung development and pathological vascular smooth muscle cell accumulation. https://doi.org/10.1152/ajpcell.00405.2018

Neuropilin 1 (NRP1) is important for neuronal and cardiovascular development due to its role in conveying class 3 semaphorin and vascular endothelial growth factor signaling, respectively. NRP1 is expressed in smooth muscle cells (SMCs) and mediates... Read More about Smooth muscle cell-specific knockout of neuropilin-1 impairs postnatal lung development and pathological vascular smooth muscle cell accumulation.