Search PubMed⌕ Search

PubMed · 9132953

[Testing bone implants in cell lines and human osteoblasts].

Abstract

Two different types of cell-line and fresh human osteoblasts, cultured from cancellous bone grafts from the iliac crest, were used for the study. Three different biomaterials were compared regarding biocompatibility: titanium, steel and hydroxyapatite. The cells were fibroblast cell line (3T3), "osteoblast-like" cell line (MC3T3-E1), and fresh human osteoblasts (HOB) which we cultured in our laboratory. 5 x 10(4) cells of each type were seeded on the three different bone implants. All experiments were performed in triplicate. Cell proliferation and alkaline phosphatase activity were determined 24 and 72 h after the cells were plated on the biomaterials. Human osteoblast growth was better on titanium than on steel and hydroxyapatite. The most remarkable observation was the continuously decreasing alkaline phosphatase activity (ALP) of "osteoblast-like" cells (MC3T3-E1) and human osteoblasts (HOB) on hydroxyapatite. In conclusion, our in vitro observations suggest that the best cell/material interactions were with human osteoblasts (HOB) and titanium.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

O A Trentz, R Zellweger, M G Amgwerd, G K Uhlschmid. 1997. [Testing bone implants in cell lines and human osteoblasts].. https://doi.org/10.1007/s001130050093

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Stacked plating for metadiaphyseal fractures of the distal radius: a technique report.

Combined injuries of the distal radius and shaft are rare, are usually caused by high energy, and pose a surgical dilemma. Surgical tactics and implants that are routinely used either for isolated fractures of the distal radius or for fractures of the radial shaft are often not applicable for this combined injury. We describe a technique of dual-stacked plating for these metadiaphyseal fractures and its use in two patients.

Bone Plates↗

Plate fixation of olecranon osteotomies.

The management of intra-articular distal humeral fractures remains a difficult surgical problem. Although an olecranon osteotomy provides excellent exposure for management of these fractures, a number of complications can occur after the creation and repair of the osteotomy including nonunion, malunion, hardware failure, and pain secondary to prominent hardware. In an effort to reduce the incidence of these complications, the senior authors now use contoured 3.5 mm reconstruction plates for the fixation of their apex-distal chevron olecranon osteotomies. Two surgeons at a single institution used this technique of exposure on a series of 17 consecutive patients with intra-articular distal humerus fractures between 1996 and 1999. In this series, all osteotomies united. There was one complication related specifically to the osteotomy: one of the screws in the plate penetrated the proximal radioulnar joint, interfering with forearm rotation; a second procedure was required to shorten the screw. Only one of the 17 patients requested plate removal during the 32 month (average) follow-up period. Plate fixation of olecranon osteotomies using a 3.5 mm reconstruction plate provides a construct with predictable healing and few complications. The overall results using this technique are comparable with other reported methods in the literature.

Bone Plates↗