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Journal of Cellular Physiology|October 2, 2009
Low oxygen reduces the modulation to an oxidative phenotype in monolayer-expanded chondrocytesHannah K Heywood, David A LeeTissue Engineering|May 24, 2007
Glucose concentration and medium volume influence cell viability and glycosaminoglycan synthesis in chondrocyte-seeded alginate constructsHannah K Heywood, Dan L Bader, David A LeeJournal of Cellular Physiology|September 13, 2005
Rate of oxygen consumption by isolated articular chondrocytes is sensitive to medium glucose concentrationHannah K Heywood, Dan L Bader, David A LeeJournal of Cellular Physiology|February 10, 2010
Both superficial and deep zone articular chondrocyte subpopulations exhibit the Crabtree effect but have different basal oxygen consumption ratesHannah K Heywood, Martin M Knight, David A LeeBioresearch Open Access|February 27, 2014
Culture expansion in low-glucose conditions preserves chondrocyte differentiation and enhances their subsequent capacity to form cartilage tissue in three-dimensional cultureHannah K Heywood, Giovanna Nalesso, David A Lee, et al.In Vitro Models|December 26, 2022
Oscillations of the circadian clock protein, BMAL-1, align to daily cycles of mechanical stimuli: a novel means to integrate biological time within predictive in vitro model systemsHannah K Heywood, Laurence Gardner, Martin M Knight, et al.Journal of Cellular Physiology|July 28, 2011
The metabolism of human mesenchymal stem cells during proliferation and differentiationGirish Pattappa, Hannah K Heywood, Joost D de Bruijn, et al.Tissue Engineering|December 14, 2004
Cellular utilization determines viability and matrix distribution profiles in chondrocyte-seeded alginate constructsHannah K Heywood, Preetkamal K Sembi, David A Lee, et al.Plos One|May 3, 2013
Sub-sets of cancer stem cells differ intrinsically in their patterns of oxygen metabolismLuke Gammon, Adrian Biddle, Hannah K Heywood, et al.Frontiers in Bioengineering and Biotechnology|March 8, 2021
Corrigendum: Mechanical Stimulation: A Crucial Element of Organ-on-Chip ModelsClare L Thompson, Su Fu, Hannah K Heywood, et al.Pageof 2