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Scientific Reports|December 4, 2020
Distinct roles for the hypoxia-inducible transcription factors HIF-1α and HIF-2α in human osteoclast formation and functionHelen J KnowlesHypoxia (Auckland, N.Z.)|October 25, 2016
Hypoxic regulation of osteoclast differentiation and bone resorption activityHelen J KnowlesCalcified Tissue International|January 19, 2017
Hypoxia-Induced Fibroblast Growth Factor 11 Stimulates Osteoclast-Mediated Resorption of BoneHelen J KnowlesFrontiers in Endocrinology|May 2, 2017
Multiple Roles of Angiopoietin-Like 4 in Osteolytic DiseaseHelen J KnowlesCells|June 26, 2019
The Adenosine A<sub>2B</sub> Receptor Drives Osteoclast-Mediated Bone Resorption in Hypoxic MicroenvironmentsHelen J KnowlesFrontiers in Bioscience : a Journal and Virtual Library|May 9, 2007
Macrophages and the hypoxic tumour microenvironmentHelen J Knowles, Adrian L HarrisCells|December 23, 2022
A New Method to Sort Differentiating Osteoclasts into Defined Homogeneous SubgroupsPhilippa A Hulley, Helen J KnowlesThe Journal of Pathology|March 18, 2009
Acute hypoxia and osteoclast activity: a balance between enhanced resorption and increased apoptosisHelen J Knowles, Nicholas A AthanasouThe Journal of Pathology|January 11, 2013
Differential regulation of HIF-mediated pathways increases mitochondrial metabolism and ATP production in hypoxic osteoclastsKarl J Morten, Luned Badder, Helen J KnowlesThe Journal of Pathology|May 7, 2011
Ewing sarcoma cells express RANKL and support osteoclastogenesisRichard Taylor, Helen J Knowles, Nicholas A AthanasouPageof 3