Systemic effects of severe trauma on the function and apoptosis of human skeletal cells

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Abstract

Systemic factors are believed to be pivotal for the development of heterotopic ossification in severely-injured patients. In this study, cell cultures of putative target cells (human fibroblastic cells, osteoblastic cells (MG-63), and bone-marrow stromal cells (hBM)) were incubated with serum from ten consecutive polytraumatised patients taken from post-traumatic day 1 to day 21 and with serum from 12 healthy control subjects. The serum from the polytraumatised patients significantly stimulated the proliferation of fibroblasts, MG-63 and of hBM cells. The activity of alkaline phosphatase in MG-63 and hBM cells was significantly decreased when exposed to the serum of the severely-injured patient. After three weeks in 3D cell cultures, matrix production and osteogenic gene expression of hBM cells were equal in the patient and control groups. However, the serum from the polytraumatised patients significantly decreased apoptosis of hBM cells compared with the control serum (4.3% vs 19.1%, p = 0.031). Increased proliferation of osteoblastic cells and reduced apoptosis of osteoprogenitors may be responsible for increased osteogenesis in severely-injured patients. © 2006 British Editorial Society of Bone and Joint Surgery.

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APA

Eid, K., Labler, L., Ertel, W., Trentz, O., & Keel, M. (2006). Systemic effects of severe trauma on the function and apoptosis of human skeletal cells. Journal of Bone and Joint Surgery - Series B, 88(10), 1394–1400. https://doi.org/10.1302/0301-620X.88B10.17139

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