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Journal of Molecular Histology|July 20, 2007
S100A8/S100A9 and their association with cartilage and boneH Zreiqat, C R Howlett, S Gronthos, et al.Journal of Biomedical Materials Research|September 17, 1999
Titanium substrata composition influences osteoblastic phenotype: In vitro studyH Zreiqat, C R HowlettJournal of Biomaterials Science. Polymer Edition|March 26, 1999
The effect of polymeric chemistry on the expression of bone-related mRNAs and proteins by human bone-derived cells in vitroH Zreiqat, C McFarland, C R HowlettJournal of Biomedical Materials Research|July 9, 1999
Effect of surface chemical modification of bioceramic on phenotype of human bone-derived cellsH Zreiqat, P Evans, C R HowlettMolecular Biotechnology|November 20, 1998
Quantitative aspects of an in situ hybridization procedure for detecting mRNAs in cells using 96-well microplatesH Zreiqat, R Sungaran, C R Howlett, et al.Journal of Biomedical Materials Research|January 1, 1996
A novel technique for quantitative detection of mRNA expression in human bone derived cells cultured on biomaterialsH Zreiqat, B Markovic, W R Walsh, et al.Journal of Biomedical Materials Research. Part A|March 14, 2003
Macrophages at the skeletal tissue-device interface of loosened prosthetic devices express bone-related genes and their productsH Zreiqat, R K Kumar, B Markovic, et al.Biomaterials|October 31, 2003
The functional expression of human bone-derived cells grown on rapidly resorbable calcium phosphate ceramicsC Knabe, G Berger, R Gildenhaar, et al.Journal of Biomedical Materials Research|May 13, 1999
Effect of ion modification of commonly used orthopedic materials on the attachment of human bone-derived cellsC R Howlett, H Zreiqat, Y Wu, et al.Journal of Materials Science. Materials in Medicine|September 7, 2004
Quantification of the bone-related mRNAs at the bone/prosthetic interfaceJ A Hunt, D F Williams, C R Howlett, et al.Pageof 29