Skip to main content

Research Repository

Advanced Search

All Outputs (2)

Pax9 and Gbx2 interact in the pharyngeal endoderm to control cardiovascular development. (2020)
Journal Article
STOTHARD, C.A., MAZZOTTA, S., VYAS, A., SCHNEIDER, J.E., MOHUN, T.J., HENDERSON, D.J., PHILLIPS, H.M. and BAMFORTH, S.D. 2020. Pax9 and Gbx2 interact in the pharyngeal endoderm to control cardiovascular development. Journal of cardiovascular development and disease [online], 7(2), article number 20. Available from: https://doi.org/10.3390/jcdd7020020

The correct formation of the aortic arch arteries depends on a coordinated and regulated gene expression profile within the tissues of the pharyngeal arches. Perturbation of the gene regulatory networks in these tissues results in congenital heart de... Read More about Pax9 and Gbx2 interact in the pharyngeal endoderm to control cardiovascular development..

RhoA controls Wnt upregulation on microstructured titanium surfaces. (2014)
Journal Article
LUMETTI, S., MAZZOTTA, S., FERRILLO, S., PIERGIANNI, M., PIEMONTESE, M., PASSERI, G., MACALUSO, G.M. and GALLI, C. 2014. RhoA controls Wnt upregulation on microstructured titanium surfaces. BioMed research international [online], 2014, article ID 401859. Available from: https://doi.org/10.1155/2014/401859

Rough topography enhances the activation of Wnt canonical signaling in vitro, and this mediates its effects on cell differentiation. However, the molecular mechanisms underlying topography-dependent control of Wnt signaling are still poorly understoo... Read More about RhoA controls Wnt upregulation on microstructured titanium surfaces..