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Home > Journals > Minerva Medica > Past Issues > Minerva Medica 2004 April;95(2) > Minerva Medica 2004 April;95(2):125-32

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CURRENT ISSUEMINERVA MEDICA

A Journal on Internal Medicine

Indexed/Abstracted in: Current Contents/Clinical Medicine, EMBASE, PubMed/MEDLINE, Science Citation Index Expanded (SciSearch), Scopus
Impact Factor 1,236

Frequency: Bi-Monthly

ISSN 0026-4806

Online ISSN 1827-1669

 

Minerva Medica 2004 April;95(2):125-32

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Role of TNF-a producing T-cells in bone loss induced by estrogen deficiency

Roggia C., Tamone C., Cenci S., Pacifici R., Isaia G. C.

Many study in literature have suggested a possible role of T cells and tumor necrosis factor-a (TNF-a) in the pathogenesis of bone loss that occurs in pathological conditions, such as systemic inflammatory diseases; the molecular bases through which this phenomenon occurs and the relevance of this mechanism also in estrogen deficiency induced bone loss remain unclear. In our study we observed that TNF-a knock-out mice (TNF-/-), as well as transgenic mice without thymus (and therefore without mature T cell), do not lose bone after ovariectomy like observed for mice of normal genetic background (wild type, WT). Moreover, after transfer into athymic mice of T cell isolated from WT ovariectomized animals (and so stimulated by estrogen deficiency to proliferate and to produce TNF-a), ovariectomy recovers its ability to induce bone loss; whereas there is no change in bone density after injection into athymic mice of T-cell purified from TNF-/- animals which, even if mature, are unable to produce TNF-a. Therefore the presence of TNF-a producing T-cell is essential for estrogen deficiency to influence bone metabolism. In the following study of the research group of Prof. Pacifici it has been shown that the increased activation of TNF-a producing T-cell in the ovariectomized mice is due to increased INF-g levels, resulting from ovariectomy-induced enhanced secretion of IL-12 and IL-18 by macrophages. INF-g promotes expression in immunocompetent cells of class II transactivator (CIITA), that, up-regulating expression of the major system of histocompatibility of class II, makes the macrophages more active in antigen presentation to T-cells, which in turn start producing TNF. For the first time an immune mechanism is involved in the pathogenesis of post-menopausal osteoporosis; nevertheless the applicability of these conclusions also in humans remains still to be proved.

language: English, Italian


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