The Skeletal Biology Unit has focused on bone marrow stromal cells (BMSCs), which have the ability to form bone, cartilage, hematopoiesis-supportive stroma, associated fat cells, and perhaps other connective tissues as well, and are important mediators of skeletal metabolism in the post-natal organism. Previously, we had found that some, but not all, of the members of the stromal cell population maintain their ability to form bone, hematopoiesis supportive stroma and associated adipocytes. The differences between non-bone forming clones, clones that form bone are being further investigated by examining their expression of receptors, growth factors, extracellular matrix proteins and transcription factors and other phenotypic markers. These studies are being performed using in vitro analysis of phentypic by using RT-PCR and microarray analysis, and by in vivo transplantation. In collaboration with investigators at the University of North Carolina, we have used a new approach, to isolate and characterize human cementoblasts for the first time. These cells were found to be similar, but not identical to cells that produce bone. This provides an excellent model system to study the physiology of this unusual cell type, and for future design of periodontal reconstructions. The program has continued its collaboration with members of NHGRI in the Skeletal Genome Anatomy Project (SGAP) which is designed to aide in gene discovery and to determine changes in the pattern of gene expression of skeletally derived cells as a function of developmental age and of disease processes. To date, over 10,000 clones from two of our libraries have been sequenced and are being analyzed for novel and unknown gene expression, and the pattern of gene expression within two different libraries is being compared. Bone-enhance arrays are being developed for these studies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Dental & Craniofacial Research (NIDCR)
Type
Intramural Research (Z01)
Project #
1Z01DE000380-17
Application #
6432007
Study Section
(CSDB)
Project Start
Project End
Budget Start
Budget End
Support Year
17
Fiscal Year
2000
Total Cost
Indirect Cost
Name
Dental & Craniofacial Research
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Padmanabhan, Raji; Chen, Kevin G; Gillet, Jean-Pierre et al. (2012) Regulation and expression of the ATP-binding cassette transporter ABCG2 in human embryonic stem cells. Stem Cells 30:2175-87
Balakumaran, Arun; Robey, Pamela Gehron; Fedarko, Neal et al. (2010) Bone marrow microenvironment in myelomagenesis: its potential role in early diagnosis. Expert Rev Mol Diagn 10:465-80
Mazar, Julia; Thomas, Molly; Bezrukov, Ludmila et al. (2009) Cytotoxicity mediated by the Fas ligand (FasL)-activated apoptotic pathway in stem cells. J Biol Chem 284:22022-8
Pawelczyk, Edyta; Jordan, Elaine K; Balakumaran, Arun et al. (2009) In vivo transfer of intracellular labels from locally implanted bone marrow stromal cells to resident tissue macrophages. PLoS One 4:e6712
Inkson, Colette A; Ono, Mitsuaki; Kuznetsov, Sergei A et al. (2008) TGF-beta1 and WISP-1/CCN-4 can regulate each other's activity to cooperatively control osteoblast function. J Cell Biochem 104:1865-78
Tsutsui, T W; Riminucci, M; Holmbeck, Kenn et al. (2008) Development of craniofacial structures in transgenic mice with constitutively active PTH/PTHrP receptor. Bone 42:321-31
Pawelczyk, Edyta; Arbab, Ali S; Chaudhry, Aneeka et al. (2008) In vitro model of bromodeoxyuridine or iron oxide nanoparticle uptake by activated macrophages from labeled stem cells: implications for cellular therapy. Stem Cells 26:1366-75
Bianco, Paolo; Robey, Pamela Gehron; Simmons, Paul J (2008) Mesenchymal stem cells: revisiting history, concepts, and assays. Cell Stem Cell 2:313-9
Wallace, Joseph M; Rajachar, Rupak M; Allen, Matthew R et al. (2007) Exercise-induced changes in the cortical bone of growing mice are bone- and gender-specific. Bone 40:1120-7
Michienzi, Stefano; Cherman, Natasha; Holmbeck, Kenn et al. (2007) GNAS transcripts in skeletal progenitors: evidence for random asymmetric allelic expression of Gs alpha. Hum Mol Genet 16:1921-30

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