YKL-40 secreted from adipose tissue inhibits degradation of type I collagen

T Iwata, M Kuwajima, A Sukeno, N Ishimaru… - Biochemical and …, 2009 - Elsevier
T Iwata, M Kuwajima, A Sukeno, N Ishimaru, Y Hayashi, M Wabitsch, N Mizusawa, M Itakura…
Biochemical and biophysical research communications, 2009Elsevier
Obesity is considered a chronic low-grade inflammatory status and the stromal vascular
fraction (SVF) cells of adipose tissue (AT) are considered a source of inflammation-related
molecules. We identified YKL-40 as a major protein secreted from SVF cells in human
visceral AT. YKL-40 expression levels in SVF cells from visceral AT were higher than in
those from subcutaneous AT. Immunofluorescence staining revealed that YKL-40 was
exclusively expressed in macrophages among SVF cells. YKL-40 purified from SVF cells …
Obesity is considered a chronic low-grade inflammatory status and the stromal vascular fraction (SVF) cells of adipose tissue (AT) are considered a source of inflammation-related molecules. We identified YKL-40 as a major protein secreted from SVF cells in human visceral AT. YKL-40 expression levels in SVF cells from visceral AT were higher than in those from subcutaneous AT. Immunofluorescence staining revealed that YKL-40 was exclusively expressed in macrophages among SVF cells. YKL-40 purified from SVF cells inhibited the degradation of type I collagen, a major extracellular matrix of AT, by matrix metalloproteinase (MMP)-1 and increased rate of fibril formation of type I collagen. The expression of MMP-1 in preadipocytes and macrophages was enhanced by interaction between these cells. These results suggest that macrophage/preadipocyte interaction enhances degradation of type I collagen in AT, meanwhile, YKL-40 secreted from macrophages infiltrating into AT inhibits the type I collagen degradation.
Elsevier