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Effects of calcium phosphate bioceramics on skeletal muscle cells.

作者信息

Sun J S, Tsuang Y H, Yao C H, Liu H C, Lin F H, Hang Y S

机构信息

Department of Orthopedic Surgery, National Taiwan University Hospital, Taipei, R.O.C.

出版信息

J Biomed Mater Res. 1997 Feb;34(2):227-33. doi: 10.1002/(sici)1097-4636(199702)34:2<227::aid-jbm12>3.0.co;2-f.

DOI:10.1002/(sici)1097-4636(199702)34:2<227::aid-jbm12>3.0.co;2-f
PMID:9029303
Abstract

With advances in ceramics technology, calcium phosphate bioceramics have been applied as bone substitutes. The effects of implants on bony tissue have been investigated. The effects upon adjacent skeletal muscles have not been determined. The focus of this work is to elucidate the biological effects of various calcium phosphate bioceramics on skeletal muscles. Four different kinds of powder of calcium phosphate biomaterials including beta-tricalcium phosphate (beta-TCP), hydroxyapatite (HA), beta-dicalcium pyrophosphate (beta-DCP) and sintered beta-dicalcium pyrophosphate (SDCP), were tested by myoblast cell cultures. The results were analyzed by cell count, cell morphology and concentration of transforming growth factor beta 1 (TGF-beta 1) in culture medium. The cell population and TGF-beta 1 concentration of the control sample increased persistently as the time of culture increased. The changes in cell population and TGF-beta 1 concentration in culture medium of the beta-TCP and HA were quite low in the first 3 days of culture, then increased gradually toward the seventh day. The changes in cell population and TGF-beta 1 concentration in culture medium of the silica, beta-DCP, and SDCP were quite similar. They were lower during the first day of culture but increased and reached that of the control medium after 7 days' culture. Most cells on B-TCP and HA diminished in size with radially spread, long pseudopods. We conclude that HA and beta-TCP are thought to have an inhibitory effect on growth of the myoblasts. The HA and beta-TCP may interfere with the repair and regeneration of injured skeletal muscle after orthopedic surgery.

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