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B. Markway, Guak-Kim Tan, G. Brooke, James Hudson, J. Cooper-White, M. Doran (2010)
Enhanced Chondrogenic Differentiation of Human Bone Marrow-Derived Mesenchymal Stem Cells in Low Oxygen Environment Micropellet CulturesCell Transplantation, 19
J. Mathieu, Zhan Zhang, Angelique Nelson, Deepak Lamba, Thomas Reh, C. Ware, H. Ruohola-Baker (2013)
Hypoxia induces re‐entry of committed cells into pluripotencySTEM CELLS, 31
H. Heywood, Preetkamal Sembi, D. Lee, D. Bader (2004)
Cellular utilization determines viability and matrix distribution profiles in chondrocyte-seeded alginate constructs.Tissue engineering, 10 9-10
A. Huang, M. Farrell, R. Mauck (2010)
Mechanics and mechanobiology of mesenchymal stem cell-based engineered cartilage.Journal of biomechanics, 43 1
M. Owen, J. Cavé, C. Joyner (1987)
Clonal analysis in vitro of osteogenic differentiation of marrow CFU-F.Journal of cell science, 87 ( Pt 5)
B. Johnstone, T. Hering, A. Caplan, V. Goldberg, J. Yoo (1998)
In vitro chondrogenesis of bone marrow-derived mesenchymal progenitor cells.Experimental cell research, 238 1
Shu-Han Hsu, Chien‐Tsun Chen, Yau-Huei Wei (2013)
Inhibitory Effects of Hypoxia on Metabolic Switch and Osteogenic Differentiation of Human Mesenchymal Stem CellsSTEM CELLS, 31
C. Merceron, C. Vinatier, S. Portron, M. Masson, J. Amiaud, L. Guigand, Y. Chérel, P. Weiss, J. Guicheux (2010)
Differential effects of hypoxia on osteochondrogenic potential of human adipose-derived stem cells.American journal of physiology. Cell physiology, 298 2
Shengda Zhou, Z. Cui, J. Urban (2004)
Factors influencing the oxygen concentration gradient from the synovial surface of articular cartilage to the cartilage-bone interface: a modeling study.Arthritis and rheumatism, 50 12
H. Stegemann, K. Stalder (1967)
Determination of hydroxyproline.Clinica chimica acta; international journal of clinical chemistry, 18 2
C. Forristal, David Christensen, Fay Chinnery, R. Petruzzelli, K. Parry, T. Sanchez-Elsner, F. Houghton (2013)
Environmental Oxygen Tension Regulates the Energy Metabolism and Self-Renewal of Human Embryonic Stem CellsPLoS ONE, 8
R. Neuman, M. Logan (1950)
The determination of hydroxyproline.The Journal of biological chemistry, 184 1
C. Halleux, Sottile, Gasser Ja, K. Seuwen (2001)
Multi-lineage potential of human mesenchymal stem cells following clonal expansion.Journal of musculoskeletal & neuronal interactions, 2 1
M. Pittenger, A. Mackay, S. Beck, R. Jaiswal, Robin Douglas, J. Mosca, M. Moorman, D. Simonetti, S. Craig, D. Marshak (1999)
Multilineage potential of adult human mesenchymal stem cells.Science, 284 5411
P. Benya, J. Shaffer (1982)
Dedifferentiated chondrocytes reexpress the differentiated collagen phenotype when cultured in agarose gelsCell, 30
C. Buckley, E. Meyer, D. Kelly (2012)
The influence of construct scale on the composition and functional properties of cartilaginous tissues engineered using bone marrow-derived mesenchymal stem cells.Tissue engineering. Part A, 18 3-4
P. Benya, S. Padilla, M. Nimni (1978)
Independent regulation of collagen types by chondrocytes during the loss of differentiated function in cultureCell, 15
G. Pattappa, S. Thorpe, Nick Jegard, H. Heywood, J. Bruijn, D. Lee (2013)
Continuous and uninterrupted oxygen tension influences the colony formation and oxidative metabolism of human mesenchymal stem cells.Tissue engineering. Part C, Methods, 19 1
W. Khan, A. Adesida, T. Hardingham (2007)
Hypoxic conditions increase hypoxia-inducible transcription factor 2α and enhance chondrogenesis in stem cells from the infrapatellar fat pad of osteoarthritis patientsArthritis Research & Therapy, 9
A. Friedenstein, J. Gorskaja, N. Kulagina (1976)
Fibroblast precursors in normal and irradiated mouse hematopoietic organs.Experimental hematology, 4 5
M. Deschepper, K. Oudina, B. David, V. Myrtil, C. Collet, M. Bensidhoum, D. Logeart-Avramoglou, H. Petite (2011)
Survival and function of mesenchymal stem cells (MSCs) depend on glucose to overcome exposure to long-term, severe and continuous hypoxiaJournal of Cellular and Molecular Medicine, 15
A. Huang, M. Farrell, Minwook Kim, R. Mauck (2010)
Long-term dynamic loading improves the mechanical properties of chondrogenic mesenchymal stem cell-laden hydrogel.European cells & materials, 19
H. Walker, W. Hall, J. Hurst (1976)
Clinical methods: The history, physical, and laboratory examinations
A. Friedenstein, R. Chailakhjan, K. Lalykina (1970)
THE DEVELOPMENT OF FIBROBLAST COLONIES IN MONOLAYER CULTURES OF GUINEA‐PIG BONE MARROW AND SPLEEN CELLSCell Proliferation, 3
I. Park, Kwang-Ho Kim, Hyun-Kyung Choi, Jae-Seung Shim, S. Whang, Sang Hahn, O. Kwon, I. Oh (2013)
Constitutive stabilization of hypoxia-inducible factor alpha selectively promotes the self-renewal of mesenchymal progenitors and maintains mesenchymal stromal cells in an undifferentiated stateExperimental & Molecular Medicine, 45
M. Farrell, M. Fisher, A. Huang, John Shin, K. Farrell, R. Mauck (2014)
Functional properties of bone marrow-derived MSC-based engineered cartilage are unstable with very long-term in vitro culture.Journal of biomechanics, 47 9
D. Oyer (2013)
The science of hypoglycemia in patients with diabetes.Current diabetes reviews, 9 3
M. Ronzière, E. Perrier, F. Mallein-Gerin, A. Freyria (2010)
Chondrogenic potential of bone marrow- and adipose tissue-derived adult human mesenchymal stem cells.Bio-medical materials and engineering, 20 3
M. Farrell, Eric Comeau, R. Mauck (2012)
Mesenchymal stem cells produce functional cartilage matrix in three-dimensional culture in regions of optimal nutrient supply.European cells & materials, 23
B. Byers, R. Mauck, Ian Chiang, R. Tuan (2008)
Transient exposure to transforming growth factor beta 3 under serum-free conditions enhances the biomechanical and biochemical maturation of tissue-engineered cartilage.Tissue engineering. Part A, 14 11
K. Sivasubramaniyan, D. Lehnen, R. Ghazanfari, Małgorzata Sobiesiak, A. Harichandan, Elisabeth Mortha, Neli Petkova, Sabrina Grimm, Flavianna Cerabona, P. Zwart, H. Abele, W. Aicher, C. Faul, L. Kanz, H. Bühring (2012)
Phenotypic and functional heterogeneity of human bone marrow– and amnion‐derived MSC subsetsAnnals of the New York Academy of Sciences, 1266
A. Friedenstein (1980)
Stromal mechanisms of bone marrow: cloning in vitro and retransplantation in vivo.Haematology and blood transfusion, 25
R. Mauck, M. Soltz, C. Wang, Dennis Wong, P. Chao, W. Valhmu, C. Hung, G. Ateshian (2000)
Functional tissue engineering of articular cartilage through dynamic loading of chondrocyte-seeded agarose gels.Journal of biomechanical engineering, 122 3
I. Silver (1975)
Measurement of pH and ionic composition of pericellular sites.Philosophical transactions of the Royal Society of London. Series B, Biological sciences, 271 912
Katie Russell, D. Phinney, M. Lacey, Bonnie Barrilleaux, Kristin Meyertholen, K. O'Connor (2010)
In Vitro High‐Capacity Assay to Quantify the Clonal Heterogeneity in Trilineage Potential of Mesenchymal Stem Cells Reveals a Complex Hierarchy of Lineage CommitmentSTEM CELLS, 28
Friedenstein Aj, Deriglasova Uf, Kulagina Nn, Panasuk Af, Rudakowa Sf, Luriá Ea, Ruadkow Ia (1974)
Precursors for fibroblasts in different populations of hematopoietic cells as detected by the in vitro colony assay method.Experimental Hematology, 2
E. Bartov, J. Jerdan, B. Glaser (1988)
A simple technique for isolating pure cell populations from mixed primary culturesJournal of Tissue Culture Methods, 11
R. Mauck, Xiaoning Yuan, R. Tuan (2006)
Chondrogenic differentiation and functional maturation of bovine mesenchymal stem cells in long-term agarose culture.Osteoarthritis and cartilage, 14 2
Friedenstein (1970)
The development of fibroblast colonies in monolayer cultures of guinea-pig bone marrow and spleen cellsCell Tissue Kinet, 3
K. Kavalkovich, R. Boynton, J. Murphy, F. Barry (2002)
Chondrogenic differentiation of human mesenchymal stem cells within an alginate layer culture systemIn Vitro Cellular & Developmental Biology - Animal, 38
T. Vinardell, Eamon Sheehy, C. Buckley, D. Kelly (2012)
A comparison of the functionality and in vivo phenotypic stability of cartilaginous tissues engineered from different stem cell sources.Tissue engineering. Part A, 18 11-12
Rafael González-Cruz, Vera Fonseca, E. Darling (2012)
Cellular mechanical properties reflect the differentiation potential of adipose-derived mesenchymal stem cellsProceedings of the National Academy of Sciences, 109
Supansa Yodmuang, I. Gadjanski, P. Chao, G. Vunjak‐Novakovic (2013)
Transient hypoxia improves matrix properties in tissue engineered cartilageJournal of Orthopaedic Research, 31
S. Mareddy, R. Crawford, G. Brooke, Yin Xiao (2007)
Clonal isolation and characterization of bone marrow stromal cells from patients with osteoarthritis.Tissue engineering, 13 4
R. Farndale, D. Buttle, A. Barrett (1986)
Improved quantitation and discrimination of sulphated glycosaminoglycans by use of dimethylmethylene blue.Biochimica et biophysica acta, 883 2
Hsieh-Hsing Lee, Chia-Chi Chang, M. Shieh, Jung-pan Wang, Yi-Te Chen, T. Young, S. Hung (2013)
Hypoxia Enhances Chondrogenesis and Prevents Terminal Differentiation through PI3K/Akt/FoxO Dependent Anti-Apoptotic EffectScientific Reports, 3
Faryna (1990)
Joint fluid
E. Lima, L. Bian, K. Ng, R. Mauck, B. Byers, R. Tuan, G. Ateshian, C. Hung (2007)
The beneficial effect of delayed compressive loading on tissue-engineered cartilage constructs cultured with TGF-beta3.Osteoarthritis and cartilage, 15 9
K. Ng, E. Lima, L. Bian, Christopher O'Conor, P. Jayabalan, A. Stoker, K. Kuroki, C. Cook, G. Ateshian, J. Cook, C. Hung (2010)
Passaged adult chondrocytes can form engineered cartilage with functional mechanical properties: a canine model.Tissue engineering. Part A, 16 3
E. Schipani, H. Ryan, Susanna Didrickson, Tatsuya Kobayashi, M. Knight, R. Johnson (2001)
Hypoxia in cartilage: HIF-1alpha is essential for chondrocyte growth arrest and survival.Genes & development, 15 21
M. Pevsner-Fischer, S. Levin, D. Zipori (2011)
The Origins of Mesenchymal Stromal Cell HeterogeneityStem Cell Reviews and Reports, 7
Takeshi Okamoto, T. Aoyama, T. Nakayama, T. Nakamata, Taisuke Hosaka, K. Nishijo, Takashi Nakamura, Tohru Kiyono, J. Toguchida (2002)
Clonal heterogeneity in differentiation potential of immortalized human mesenchymal stem cells.Biochemical and biophysical research communications, 295 2
Osteoarthritis and Cartilage – Unpaywall
Published: Sep 22, 2014
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