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International Journal of Cancer|September 30, 2004
Sequence- and schedule-dependent enhancement of zoledronic acid induced apoptosis by doxorubicin in breast and prostate cancer cellsHelen L Neville-Webbe, Amin Rostami-Hodjegan, Catherine A Evans, et al.Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|July 17, 2008
Differential effect of doxorubicin and zoledronic acid on intraosseous versus extraosseous breast tumor growth in vivoPenelope D Ottewell, Blandine Deux, Hannu Mönkkönen, et al.Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|September 10, 2004
Human bone marrow stromal cells protect prostate cancer cells from TRAIL-induced apoptosisRachel Nyambo, Neil Cross, Jenny Lippitt, et al.Oncotarget|October 22, 2016
IL-1 drives breast cancer growth and bone metastasis in vivoIngunn Holen, Diane V Lefley, Sheila E Francis, et al.Molecular Cancer Therapeutics|October 1, 2009
Anticancer mechanisms of doxorubicin and zoledronic acid in breast cancer tumor growth in bonePenelope D Ottewell, Julia K Woodward, Diane V Lefley, et al.International Journal of Cancer|July 22, 2009
Sustained inhibition of tumor growth and prolonged survival following sequential administration of doxorubicin and zoledronic acid in a breast cancer modelPenelope D Ottewell, Diane V Lefley, Simon S Cross, et al.Biophysical Journal|July 16, 2020
Mechanical Heterogeneity in the Bone Microenvironment as Characterized by Atomic Force MicroscopyXinyue Chen, Russell Hughes, Nic Mullin, et al.Nanoscale|October 28, 2021
Atomic force microscopy reveals the mechanical properties of breast cancer bone metastasesXinyue Chen, Russell Hughes, Nic Mullin, et al.Physiological Reviews|December 28, 2020
Bone metastasis: mechanisms, therapies, and biomarkersPhilippe Clézardin, Rob Coleman, Margherita Puppo, et al.Journal of Bone Oncology|June 26, 2019
The bone metastasis niche in breast cancer-potential overlap with the haematopoietic stem cell niche <i>in vivo</i>Gloria Allocca, Russell Hughes, Ning Wang, et al.Pageof 9