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All Outputs (2)

Transcriptomic analysis in pediatric spinal ependymoma reveals distinct molecular signatures (2017)
Journal Article
Lourdusamy, A., Luo, L. Z., Storer, L. C., Cohen, K. J., Resar, L., & Grundy, R. G. (2017). Transcriptomic analysis in pediatric spinal ependymoma reveals distinct molecular signatures. Oncotarget, 8(70), https://doi.org/10.18632/oncotarget.23311

Pediatric spinal ependymomas (SEPN) are important albeit uncommon malignant central nervous system tumors with limited treatment options. Our current knowledge about the underlying biology of these tumors is limited due to their rarity. To begin to e... Read More about Transcriptomic analysis in pediatric spinal ependymoma reveals distinct molecular signatures.

The anti-NGF antibody muMab 911 both prevents and reverses pain behaviour and subchondral osteoclast numbers in a rat model of osteoarthritis pain (2016)
Journal Article
Xu, L., Nwosu, L. N., Burston, J., Millns, P., Sagar, D. R., Mapp, P. I., …Chapman, V. (2016). The anti-NGF antibody muMab 911 both prevents and reverses pain behaviour and subchondral osteoclast numbers in a rat model of osteoarthritis pain. Osteoarthritis and Cartilage, 24(9), 1587-1595. https://doi.org/10.1016/j.joca.2016.05.015

Objective: Nerve growth factor (NGF) has a pivotal role in peripheral hyperalgesia and inflammation; anti-NGF antibodies attenuate pain responses in inflammatory pain models, and in people with osteoarthritis (OA) or low back pain. The aim of this st... Read More about The anti-NGF antibody muMab 911 both prevents and reverses pain behaviour and subchondral osteoclast numbers in a rat model of osteoarthritis pain.