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(1 - 20 of 21)

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Serum fatty acid chain length associates with prevalent symptomatic end-stage osteoarthritis, independent of BMI
RNA sequencing data integration reveals an miRNA interactome of osteoarthritis cartilage
Genome Analyses of >200,000 Individuals Identify 58 Loci for Chronic Inflammation and Highlight Pathways that Link Inflammation and Complex Disorders
Genome-wide analyses identify a role for SLC17A4 and AADAT in thyroid hormone regulation
Genome-wide association and functional studies identify a role for matrix Gla protein in osteoarthritis of the hand
Genome-wide association and functional studies identify a role for matrix Gla protein in osteoarthritis of the hand
Neo-cartilage engineered from primary chondrocytes is epigenetically similar to autologous cartilage, in contrast to using mesenchymal stem cells
Aberrant Calreticulin Expression in Articular Cartilage of Dio2 Deficient Mice
NEO-CARTILAGE ENGINEERED FROM PRIMARY CHONDROCYTES IS EPIGENETICALLY SIMILAR TO AUTOLOGOUS CARTILAGE, IN CONTRAST TO USING MESENCHYMAL STEM CELLS
NOVEL SUSCEPTABILITY LOCI FOR OSTEOARTHRITIS OF THE HAND: CODING VARIANTS IN MGP AND ENPP3
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
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
DIO2-KNOCKOUT MODULATES CIRCADIAN CLOCK GENES IN ARTICULAR CARTILAGE THROUGH THYROID HORMONE SIGNALING
DIO2-DEFICIENT MICE ARE PROTECTED AGAINST CARTILAGE DAMAGE IN A MODEL OF EXERCISE-INDUCED OA
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

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