Biomolecular mechanisms of calvarial bone induction: immature versus mature dura mater.
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M. Longaker | B. Mehrara | J. Spector | P. Saadeh | G. Gittes | D. Steinbrech | J. Greenwald | G. Chin | J. Luchs | M. Paccione | J. A. Greenwald | Michael F. Paccione
[1] M. Longaker,et al. Hypoxia Regulates VEGF Expression and Cellular Proliferation by Osteoblasts in Vitro , 1999 .
[2] M. Longaker,et al. Regional differentiation of rat cranial suture-derived dural cells is dependent on association with fusing and patent cranial sutures. , 1999, Plastic and reconstructive surgery.
[3] M. Longaker,et al. Basic fibroblast growth factor and transforming growth factor beta-1 expression in the developing dura mater correlates with calvarial bone formation. , 1999, Plastic and reconstructive surgery.
[4] J. McCarthy,et al. Rat mandibular distraction osteogenesis: II. Molecular analysis of transforming growth factor beta-1 and osteocalcin gene expression. , 1999, Plastic and reconstructive surgery.
[5] Y. Kato,et al. Local Application of Basic Fibroblast Growth Factor Minipellet Induces the Healing of Segmental Bony Defects in Rabbits , 1998, Calcified Tissue International.
[6] J. McCarthy,et al. Rat Mandibular Distraction Osteogenesis: Part I. Histologic and Radiographic Analysis , 1998, Plastic and reconstructive surgery.
[7] G. Karsenty,et al. Genetic control of cell differentiation in the skeleton. , 1998, Current opinion in cell biology.
[8] R H Christenson,et al. Biochemical markers of bone metabolism: an overview. , 1997, Clinical biochemistry.
[9] S. Glück,et al. Evaluation of three rapid RNA extraction reagents: relevance for use in RT-PCR's and measurement of low level gene expression in clinical samples. , 1997, Cellular and molecular biology.
[10] Jack C. Yu,et al. Regional Differences of Dura Osteoinduction: Squamous Dura Induces Osteogenesis, Sutural Dura Induces Chondrogenesis and Osteogenesis , 1997, Plastic and reconstructive surgery.
[11] G. Karsenty,et al. Osf2/Cbfa1: A Transcriptional Activator of Osteoblast Differentiation , 1997, Cell.
[12] Douglas C. Miller,et al. Histopathologic and Biochemical Changes in the Muscles Affected by Distraction Osteogenesis of the Mandible , 1997, Plastic and reconstructive surgery.
[13] A. Tencer,et al. TGF-beta 1 forms functionally normal bone in a segmental sheep tibial diaphyseal defect. , 1996, The Journal of otolaryngology.
[14] A. Caplan,et al. Osteochondrogenic potential of marrow mesenchymal progenitor cells exposed to TGF‐β1 or PDGF‐BB as assayed in vivo and in vitro , 1996, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[15] J. Zerwekh,et al. The importance of the dura in craniofacial surgery. , 1996, Plastic and reconstructive surgery.
[16] M. Crescenzi,et al. Adenovirus Infection Induces Reentry into the Cell Cycle of Terminally Differentiated Skeletal Muscle Cells a , 1995, Annals of the New York Academy of Sciences.
[17] M. Crescenzi,et al. Mitotic cycle reactivation in terminally differentiated cells by adenovirus infection , 1995, Journal of cellular physiology.
[18] S. Nomura,et al. Localization of the mRNA for bone matrix proteins during fracture healing as determined by in situ hybridization , 1994, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[19] E. Ogata,et al. Stimulation of fracture repair by recombinant human basic fibroblast growth factor in normal and streptozotocin-diabetic rats. , 1994, Endocrinology.
[20] U. Novak,et al. Cytokine modulation of plasminogen activator inhibitor-1 (PAI-1) production by human articular cartilage and chondrocytes. Down-regulation by tumor necrosis factor alpha and up-regulation by transforming growth factor-B basic fibroblast growth factor. , 1994, Biochimica et biophysica acta.
[21] L. Bonewald,et al. Effects of transforming growth factor β on bone nodule formation and expression of bone morphogenetic protein 2, osteocalcin, osteopontin, alkaline phosphatase, and type I collagen mRNA in long‐term cultures of fetal rat calvarial osteoblasts , 1994 .
[22] G. Rodan,et al. Activity of the rat osteocalcin basal promoter in osteoblastic cells is dependent upon homeodomain and CP1 binding motifs. , 1994, Molecular endocrinology.
[23] Jonathan A. Cooper,et al. A new function for a phosphotyrosine phosphatase: linking GRB2-Sos to a receptor tyrosine kinase , 1994, Molecular and cellular biology.
[24] Kjeld Søballe,et al. Transforming growth factor-β enhances fracture healing in rabbit tibiae , 1993 .
[25] J. McCarthy,et al. The Role of the Dura in Cranial Bone Regeneration in the Immature Animal , 1993, Plastic and reconstructive surgery.
[26] J. Risteli,et al. Biochemical markers of bone metabolism. , 1993, Annals of medicine.
[27] M. Berridge,et al. Characterization of the cellular reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT): subcellular localization, substrate dependence, and involvement of mitochondrial electron transport in MTT reduction. , 1993, Archives of biochemistry and biophysics.
[28] Tue Nguyen,et al. TGF‐β1 induces bone closure of skull defects: Temporal dynamics of bone formation in defects exposed to rhTGF‐β1 , 1993 .
[29] W. Kueng,et al. Quantification of cells cultured on 96-well plates. , 1989, Analytical biochemistry.
[30] B. Olwin,et al. Cell surface fibroblast growth factor and epidermal growth factor receptors are permanently lost during skeletal muscle terminal differentiation in culture , 1988, The Journal of cell biology.
[31] J. Pfeilschifter,et al. Transforming growth factor beta inhibits bone resorption in fetal rat long bone cultures. , 1988, The Journal of clinical investigation.
[32] D. Gospodarowicz,et al. Regulation of bovine bone cell proliferation by fibroblast growth factor and transforming growth factor beta. , 1988, Endocrinology.
[33] G. Spizz,et al. Decrease in transforming growth factor-beta binding and action during differentiation in muscle cells. , 1988, The Journal of biological chemistry.
[34] R. Bravo,et al. Existence of two populations of cyclin/proliferating cell nuclear antigen during the cell cycle: association with DNA replication sites , 1987, The Journal of cell biology.
[35] J B Lian,et al. Expression of differentiated function by mineralizing cultures of chicken osteoblasts. , 1987, Developmental biology.
[36] M. Sporn,et al. Osteoblasts synthesize and respond to transforming growth factor-type beta (TGF-beta) in vitro , 1987, The Journal of cell biology.
[37] E. Canalis,et al. Transforming growth factor beta is a bifunctional regulator of replication and collagen synthesis in osteoblast-enriched cell cultures from fetal rat bone. , 1987, The Journal of biological chemistry.
[38] E. Vuorio,et al. Differential expression of fibrillar collagen genes during callus formation. , 1987, Biochemical and biophysical research communications.
[39] J. Massagué,et al. Human platelet-derived transforming growth factor-beta stimulates parameters of bone growth in fetal rat calvariae. , 1986, Endocrinology.
[40] G. Rodeheaver,et al. Skull growth after coronal suturectomy, periostectomy, and dural transection. , 1982, Journal of neurosurgery.
[41] J. McCarthy,et al. A Study of Regeneration in Parietal Bone Defects in Rabbits , 1981, Plastic and reconstructive surgery.
[42] J. Loeser,et al. Subtotal neonatal calvariectomy. A radiographic and histological evaluation of calvarial and sutural redevelopment in rabbits. , 1979, Journal of neurosurgery.
[43] V. Kokich,et al. Calvarial and sutural re-development following craniectomy in the neonatal rabbit. , 1979, Journal of anatomy.
[44] J. Hanson,et al. Subtotal neonatal calvariectomy for severe craniosynostosis. , 1977, The Journal of pediatrics.
[45] A. Krasinskas,et al. Properties of coralline hydroxyapatite and expanded polytetrafluoroethylene membrane in the immature craniofacial skeleton. , 1999, Plastic and reconstructive surgery.
[46] K. Kato,et al. In vivo stimulation of endosteal bone formation by basic fibroblast growth factor in rats. , 1993, Growth factors.
[47] P. Fottrell,et al. Osteocalcin: diagnostic methods and clinical applications. , 1991, Critical reviews in clinical laboratory sciences.
[48] J. Wergedal,et al. Growth factor-induced proliferation of osteoblasts measured by bromodeoxyuridine immunocytochemistry. , 1991, Growth factors.