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Occipital foramina development involves localised regulation of mesenchyme proliferation and is independent of apoptosis (2015)
Journal Article
Akbareian, S. E., Pitsillides, A. A., Macharia, R. G., & McGonnell, I. M. (2015). Occipital foramina development involves localised regulation of mesenchyme proliferation and is independent of apoptosis. Journal of Anatomy, 226(6), 560-574. https://doi.org/10.1111/joa.12304

Cranial foramina are holes within the skull, formed during development, allowing entry and exit of blood vessels and nerves. Once formed they must remain open, due to the vital structures they contain, i.e. optic nerves, jugular vein, carotid artery,... Read More about Occipital foramina development involves localised regulation of mesenchyme proliferation and is independent of apoptosis.

Local origins impart conserved bone type-related differences in human osteoblast behaviour (2015)
Journal Article
Shah, M., Gburcik, V., Reilly, P., Sankey, R. A., Emery, R. J., Clarkin, C. E., & Pitsillides, A. A. (2015). Local origins impart conserved bone type-related differences in human osteoblast behaviour. https://doi.org/10.22203/eCM.v029a12

Osteogenic behaviour of osteoblasts from trabecular, cortical and subchondral bone were examined to determine any bone type-selective differences in samples from both osteoarthritic (OA) and osteoporotic (OP) patients. Cell growth, differentiation; a... Read More about Local origins impart conserved bone type-related differences in human osteoblast behaviour.

Structure, ontogeny and evolution of the patellar tendon in emus (Dromaius novaehollandiae) and other palaeognath birds (2015)
Journal Article
Regnault, S., Pitsillides, A. A., & Hutchinson, J. R. (2015). Structure, ontogeny and evolution of the patellar tendon in emus (Dromaius novaehollandiae) and other palaeognath birds. https://doi.org/10.7717/peerj.711

The patella (kneecap) exhibits multiple evolutionary origins in birds, mammals, and lizards, and is thought to increase the mechanical advantage of the knee extensor muscles. Despite appreciable interest in the specialized anatomy and locomotion of p... Read More about Structure, ontogeny and evolution of the patellar tendon in emus (Dromaius novaehollandiae) and other palaeognath birds.

Vitamin K catabolite inhibition of ovariectomy-induced bone loss: Structure–activity relationship considerations (2014)
Journal Article
Soper, R. J., Oguz, C., Emery, R., Pitsillides, A. A., & Hodges, S. J. (2014). Vitamin K catabolite inhibition of ovariectomy-induced bone loss: Structure–activity relationship considerations. Molecular Nutrition & Food Research, 58(8), 1658-1666. https://doi.org/10.1002/mnfr.201400063

The potential benefit of vitamin K as a therapeutic in osteoporosis is controversial and the vitamin K regimen being used clinically (45 mg/day) employs doses that are many times higher than required to ensure maximal gamma‐carboxylation of the vitam... Read More about Vitamin K catabolite inhibition of ovariectomy-induced bone loss: Structure–activity relationship considerations.

Regulation of UDP-Glucose Dehydrogenase Is Sufficient to Modulate Hyaluronan Production and Release, Control Sulfated GAG Synthesis, and Promote Chondrogenesis
Journal Article
Clarkin, C. E., Allen, S., Kuiper, N. J., Wheeler, B. T., Wheeler-Jones, C. P. D., & Pitsillides, A. A. Regulation of UDP-Glucose Dehydrogenase Is Sufficient to Modulate Hyaluronan Production and Release, Control Sulfated GAG Synthesis, and Promote Chondrogenesis. Journal of Cellular Physiology, 226(3), 749-761. https://doi.org/10.1002/jcp.22393

GENE ARRAY PROFILING OF ARTICULAR CHONDROCYTES IN MICE WITH DIFFERENT SUSCEPTIBILITY TO NATURAL DISEASE REVEALS SPECIFIC GENE SIGNATURES LINKED TO HEALTHY AGEING AND SPONTANEOUS OA
Journal Article
Poulet, B., Veronica, U., Stone, T. C., Pead, M., Gburcik, V., Beier, F., …Pitsillides, A. A. GENE ARRAY PROFILING OF ARTICULAR CHONDROCYTES IN MICE WITH DIFFERENT SUSCEPTIBILITY TO NATURAL DISEASE REVEALS SPECIFIC GENE SIGNATURES LINKED TO HEALTHY AGEING AND SPONTANEOUS OA. Osteoarthritis and Cartilage, 20, S59-S60