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Collin, EC,Kilcoyne, M,White, SJ,Grad, S,Alini, M,Joshi, L,Pandit, AS
2016
March
Scientific Reports
Unique glycosignature for intervertebral disc and articular cartilage cells and tissues in immaturity and maturity
Published
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HUMAN NUCLEUS PULPOSUS CHONDROITIN SULFATE IN-VITRO PROGENITOR CELLS ANNULUS FIBROSUS EXTRACELLULAR-MATRIX DEGENERATION GLYCOSYLATION EXPRESSION DIFFERENTIATION
6
In this study, on/off markers for intervertebral disc (IVD) and articular cartilage (AC) cells (chondrocytes) and distinct glycoprofiles of cell and tissue-types were identified from immaturity to maturity. Three and eleven month-old ovine IVD and AC tissues were histochemically profiled with a panel of lectins and antibodies. Relationships between tissue and cell types were analysed by hierarchical clustering. Chondroitin sulfate (CS) composition of annulus fibrosus (AF), nucleus pulposus (NP) and AC tissues was determined by HPLC analysis. Clear on/off cell type markers were identified, which enabled the discrimination of chondrocytes, AF and NP cells. AF and NP cells were distinguishable using MAA, SNAI, SBA and WFA lectins, which bound to both NP cells and chondrocytes but not AF cells. Chondrocytes were distinguished from NP and AF cells with a specific binding of LTA and PNA lectins to chondrocytes. Each tissue showed a unique CS composition with a distinct switch in sulfation pattern in AF and NP tissues upon disc maturity while cartilage maintained the same sulfation pattern over time. In conclusion, distinct glycoprofiles for cell and tissue-types across age groups were identified in addition to altered CS composition and sulfation patterns for tissue types upon maturity.
10.1038/srep23062
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