Search results (73)
« Back to PublicationsUse of oxygen-loaded nanobubbles to improve tissue oxygenation: Bone-relevant mechanisms of action and effects on osteoclast differentiation.
Journal article
Knowles HJ. et al, (2024), Biomaterials, 305
Editorial: Advances in the endocrine role of the skeleton volume II.
Journal article
Rossi M. et al, (2023), Front Endocrinol (Lausanne), 14
Mature primary human osteocytes in mini organotypic cultures secrete FGF23 and PTH1-34-regulated sclerostin.
Journal article
Knowles HJ. et al, (2023), Front Endocrinol (Lausanne), 14
A New Method to Sort Differentiating Osteoclasts into Defined Homogeneous Subgroups.
Journal article
Hulley PA. and Knowles HJ., (2022), Cells, 11
berrant paracrine signalling for bone remodelling underlies the mutant histone-driven giant cell tumour of bone.
Conference paper
Cottone L. et al, (2022), Cell Death Differ, 29, 2459 - 2471
berrant paracrine signalling for bone remodelling underlies the mutant histone-driven giant cell tumour of bone
Conference paper
Cottone L. et al, (2022), JOURNAL OF BONE AND MINERAL RESEARCH, 37, 98 - 98
Loss of mutual protection between human osteoclasts and chondrocytes in damaged joints initiates osteoclast-mediated cartilage degradation by MMPs.
Journal article
Larrouture QC. et al, (2021), Sci Rep, 11
Hypoxia-inducible factor (HIF)-mediated effects of the hypoxic niche in bone cancer
Chapter
Knowles HJ., (2021), 321 - 335
Distinct roles for the hypoxia-inducible transcription factors HIF-1α and HIF-2α in human osteoclast formation and function.
Journal article
Knowles HJ., (2020), Sci Rep, 10
Osteoblast-Osteoclast Coculture Amplifies Inhibitory Effects of FG-4592 on Human Osteoclastogenesis and Reduces Bone Resorption.
Journal article
Hulley PA. et al, (2020), JBMR Plus, 4
Transcriptomic profiling of the myeloma bone-lining niche reveals BMP signalling inhibition to improve bone disease.
Journal article
Gooding S. et al, (2019), Nat Commun, 10
The Adenosine A2B Receptor Drives Osteoclast-Mediated Bone Resorption in Hypoxic Microenvironments.
Journal article
Knowles HJ., (2019), Cells, 8
Osteoclasts are multinucleated cells that degrade cartilage as well as bone
Conference paper
Larrouture Q. et al, (2019), JOURNAL OF BONE AND MINERAL RESEARCH, 34, 235 - 235
Osteoclasts are multinucleated cells that degrade cartilage as well as bone
Conference paper
Larrouture QC. et al, (2018), JBMR Plus, 2, 17 - 18