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dc.contributor.authorHansen, Ann Kristin
dc.contributor.authorFigenschau, Yngve Anton
dc.contributor.authorMartinez, Inigo Zubiavrre
dc.date.accessioned2020-10-02T10:54:41Z
dc.date.available2020-10-02T10:54:41Z
dc.date.issued2016-09
dc.description.abstract<p><i>Purpose:</i> The goal was to investigate potential roles played by vitamin D in the regulation of joint cartilage biology. We studied the expression of two central elements of vitamin D metabolism, namely the vitamin D receptor and its converting enzyme 1­α­hydroxylase in human knee cartilage and chondrocytes. <p><i>Methods and Materials:</i> Expression of receptor and enzyme was determined by immunohistochemistry/immunofluorescence, reversetranscriptase PCR and western blot on differentiated, de­differentiated and re­differentiated chondrocytes. Cartilage was harvested from a macroscopically healthy looking area of the lateral femoral condyle during knee replacement surgery in 4 otherwise healthy patients aged 50­70. Suspension cultures of differentiated chondrocytes were established by short enzymatic digestion of cartilage using Collagenase XI and further incubation in non­adherent vessels. De­differentiated cells were the result of serial expansion of chondrocytes during 4 weeks after isolation in monolayers cultures. Chondrocyte re­differentiation was achieved by propagating cell pellets for 3 weeks in the presence of chondro­inductive morphogens. <p><i>Results:</i> Both protein and gene expression of vitamin D receptor appear to be very low or undetectable in native cartilage and/or differentiated chondrocytes. In contrast, receptor expression was upregulated in dedifferentiated cells after monolayer expansion, however, this upregulation was lost when cells regained chondrogenic phenotype in 3D pellets. The expression of 1­α­hydroxylase was observed on the superficial layer of chondrocytes in native cartilage, which correlated with weak but detectable outcomes by PCR and western blot on differentiated cultures. Similarly, levels of the enzyme were increased after cell expansion in monolayers and decreased in 3D pellet cultures. <p><i>Conclusion:</i> Our study uncover a previously unknown regulation of vitamin D receptor between differentiated and redifferentiated phenotypes in cartilage cells. Furthermore, this study is pioneering on investigating the expression of 1­α­hydroxylase in cartilage tissue and chondrocytes. Further work is needed to ascertain if receptor and enzyme expression is regulated in disease conditions or affected by inflammatory environments.en_US
dc.descriptionAbstract of a presentation at a conference of the <a href=https://cartilage.org/>International Cartilage Repair Society</a>.en_US
dc.identifier.citationHansen, A.K., Figenschau, Y.A. & Martinez-Zubiaurre, I. (2016). Dynamic expression of VDR and 1-­alpha-­hydroxylase in differentiated and re-­differentiated human articular chondrocytes [Conference presentation abstract]. <i>13th ICRS World Congress, International Cartilage Repair Society, Sorrento, Italy, 24-27 September 2016</i>.en_US
dc.identifier.cristinIDFRIDAID 1535812
dc.identifier.urihttps://hdl.handle.net/10037/19531
dc.language.isoengen_US
dc.rights.accessRightsopenAccessen_US
dc.subjectVDP::Medical disciplines: 700::Clinical medical disciplines: 750::Orthopedic surgery: 784en_US
dc.subjectVDP::Medisinske Fag: 700::Klinisk medisinske fag: 750::Ortopedisk kirurgi: 784en_US
dc.titleDynamic expression of VDR and 1-­alpha-­hydroxylase in differentiated and re-­differentiated human articular chondrocytesen_US
dc.typeConference objecten_US
dc.typeKonferansebidragen_US


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