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A Highly Sensitive Biomarker of Type II Collagen C-Terminal Pro-Peptide Associated with Cartilage Formation.

December 27, 2022

Int J Mol Sci

Abstract The type II collagen C-terminal pro-peptide is one of the most abundant polypeptides in cartilage. The purpose of this study was to develop a competitive chemiluminescence enzyme-linked immunosorbent assay, CALC2, targeting this pro-peptide as a marker of cartilage formation. Technical assay parameters were evaluated. CALC2 level was measured after in vitro cleavage of recombinant […]

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Cartilage turnover reflected by metabolic processing of type II collagen: a novel marker of anabolic function in chondrocytes.

October 17, 2014

Int J Mol Sci

Abstract The aim of this study was to enable measurement of cartilage formation by a novel biomarker of type II collagen formation. The competitive enzyme-linked immunosorbent assay (ELISA) Pro-C2 was developed and characterized for assessment of the beta splice variant of type II procollagen (PIIBNP). This is expected to originate primarily from remodeling of hyaline […]

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Cartilage formation measured by a novel PIINP assay suggests that IGF-I does not stimulate but maintains cartilage formation ex vivo.

June 1, 2009

Scand J Rheumatol

Abstract OBJECTIVES The aim of this study was to investigate the time-dependent effect of insulin-like growth factor-I (IGF)-I on cartilage, evaluated by a novel procollagen type II N-terminal propeptide (PIINP) formation assay. This was performed in a cartilage model. METHODS Bovine articular cartilage explants were cultured in Dulbecco’s modified Eagle’s medium (DMEM):F12 in the presence […]

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Anabolic and catabolic function of chondrocyte ex vivo is reflected by the metabolic processing of type II collagen.

March 1, 2007

Osteoarthritis Cartilage

Abstract OBJECTIVE The aim of the present study was to investigate collagen metabolism after anabolic and catabolic stimulation of chondrocytes ex vivo. DESIGN Metabolic activities in ex vivo bovine cartilage explants were stimulated with insulin-like growth factor I (IGF-I) or a combination of tumor necrosis factor alpha (TNFalpha) and oncostatin M (OSM). Supernatants were assessed […]

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