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NEO-CARTILAGE ENGINEERED FROM PRIMARY CHONDROCYTES IS EPIGENETICALLY SIMILAR TO AUTOLOGOUS CARTILAGE, IN CONTRAST TO USING MESENCHYMAL STEM CELLS
AGE-RELATED DNA METHYLATION CHANGES IN NORMAL AND OSTEOARTHRITIS CARTILAGE
The effect of forced exercise on knee joints in Dio2(-/-) mice: type II iodothyronine deiodinase-deficient mice are less prone to develop OA-like cartilage damage upon excessive mechanical stress
Translating genomics into mechanisms of disease: Osteoarthritis
DNA Methylation in Osteoarthritis
The transcriptional landscape of age in human peripheral blood
Transcriptional Associations of Osteoarthritis-Mediated Loss of Epigenetic Control in Articular Cartilage
Underlying molecular mechanisms of DIO2 susceptibility in symptomatic osteoarthritis
GENETIC VARIANTS IN THE SUPT3H-RUNX2 LOCUS CONFER SUSCEPTIBILITY FOR BONE AND CARTILAGE RELATED DISORDERS VIA LONG-RANGE REGULATION OF RUNX2
DIO2-KNOCKOUT MODULATES CIRCADIAN CLOCK GENES IN ARTICULAR CARTILAGE THROUGH THYROID HORMONE SIGNALING
DISCRIMINATING BETWEEN PUTATIVE EPIGENETIC OSTEOARTHRITIS DISEASE DRIVERS AND SHEER MARKERS
PROBING THE ARTICULAR CARTILAGE TRANSCRIPTOME FOR GENETIC OSTEOARTHRITIS SUSCEPTIBLITY
DIO2-DEFICIENT MICE ARE PROTECTED AGAINST CARTILAGE DAMAGE IN A MODEL OF EXERCISE-INDUCED OA
RISK PREDICTION USING EPIGENETIC PROFILES IN BLOOD OF OSTEOARTHRITIS PATIENTS
Knee and hip articular cartilage have distinct epigenomic landscapes: implications for future cartilage regeneration approaches
MethylAid: visual and interactive quality control of large Illumina 450k datasets
Genes Involved in the Osteoarthritis Process Identified through Genome Wide Expression Analysis in Articular Cartilage; the RAAK Study
GENOME WIDE DNA METHYLATION PROFILING OF OSTEOARTHRITIC ARTICULAR CARTILAGE
THE EFFECT OF SEVERE EXERCISE ON KNEE-JOINTS: IDENTIFYING PATHWAYS INVOLVED IN CARTILAGE DEGRADATION PROCESSES FOLLOWING MECHANICAL STRESS
Underlying molecular mechanisms of DIO2 susceptibility in symptomatic osteoarthritis

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