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Bone‐resorbing agents promote and interferon‐γ inhibits bone cell collagenase production
Author(s) -
Shen Victor,
Kohler Gail,
Jeffrey John J.,
Peck William A.
Publication year - 1988
Publication title -
journal of bone and mineral research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.882
H-Index - 241
eISSN - 1523-4681
pISSN - 0884-0431
DOI - 10.1002/jbmr.5650030611
Subject(s) - collagenase , bone resorption , prostaglandin e2 , endocrinology , resorption , medicine , cycloheximide , bone cell , microbial collagenase , chemistry , biology , microbiology and biotechnology , biochemistry , protein biosynthesis , enzyme
Parathyroid hormone, prostaglandin E 2 , 1α,25‐dihydroxyvitamin D 3 , interleukin‐1, tumor necrosis factor α, and epidermal growth factor, all known stimulators of bone resorption, markedly enhanced collagenase secretion by rat fetus osteoblastlike cells in primary culture as judged by enzyme‐linked immunosorbent assay. Untreated cells contained no immunostainable or extractable collagenase. Collagenase was detected in the treated cells and media only after 1–3 h of treatment, and there was no increment in collagenase activity when cells were treated in the presence of actinomycin D or cycloheximide. Cells secreted collagenase in a latent form and also elaborated collagenase inhibitor; chromatographic separation of collagenase from collagenase inhibitor and subsequent activation of the collagenase with trypsin yielded the active species in stimulated but not in unstimulated cells. The ability of individual prostanoids, among seven tested, to promote collagenase production correlated positively with their reported capacity to promote bone resorption. Interferon‐γ (IFN‐γ), a known resorption inhibitor, blocked the increment in collagenase production caused by all agents tested. These results indicate a close linkage between stimulation of bone resorption and collagenase production by osteoblastlike cells. Various resorption stimulators, including some not previously tested for effects on collagenase, augment the de novo synthesis and secretion of collagenase and act by an IFN‐γ‐inhibitable mechanism.

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