The Role of Autocrine Growth Factors in Radiation Damage to the Epiphyseal Growth Plate
暂无分享,去创建一个
P. Okunieff | L. Constine | E. Schwarz | R. O’Keefe | R. Rosier | D. Pateder | R. Eliseev | J. Edward Puzas
[1] M. D'souza,et al. PTHrP expression in chondrocytes, regulation by TGF-beta, and interactions between epiphyseal and growth plate chondrocytes. , 2000, Experimental cell research.
[2] Bo Xu,et al. ATM phosphorylates p95/nbs1 in an S-phase checkpoint pathway , 2000, Nature.
[3] Paul Dent,et al. Signal Transduction and Cellular Radiation Responses , 2000, Radiation research.
[4] R. Schmidt-Ullrich,et al. Ionizing radiation stimulates existing signal transduction pathways involving the activation of epidermal growth factor receptor and ERBB-3, and changes of intracellular calcium in A431 human squamous carcinoma cells. , 1999, Journal of receptor and signal transduction research.
[5] P. Okunieff,et al. Circulating basic fibroblast growth factor declines during Cy/TBI bone marrow transplantation , 1999, Bone Marrow Transplantation.
[6] J C Reed,et al. Ca2+-induced apoptosis through calcineurin dephosphorylation of BAD. , 1999, Science.
[7] R. Kolesnick,et al. BAD Enables Ceramide to Signal Apoptosis via Ras and Raf-1* , 1998, The Journal of Biological Chemistry.
[8] A. Giaccia,et al. The complexity of p53 modulation: emerging patterns from divergent signals. , 1998, Genes & development.
[9] V. Dixit,et al. Death receptors: signaling and modulation. , 1998, Science.
[10] Giuseppe M Peretti,et al. Recapitulation of signals regulating embryonic bone formation during postnatal growth and in fracture repair , 1998, Mechanisms of Development.
[11] J. Crow. Dichlorodihydrofluorescein and dihydrorhodamine 123 are sensitive indicators of peroxynitrite in vitro: implications for intracellular measurement of reactive nitrogen and oxygen species. , 1997, Nitric oxide : biology and chemistry.
[12] J. Puzas,et al. Differential regulation of type‐II and type‐X collagen synthesis by parathyroid hormone‐related protein in chick growth‐plate chondrocytes , 1997, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[13] Sakae Tanaka,et al. Bcl-2 Lies Downstream of Parathyroid Hormone–related Peptide in a Signaling Pathway That Regulates Chondrocyte Maturation during Skeletal Development , 1997, The Journal of cell biology.
[14] J S Beckman,et al. Nitric oxide, superoxide, and peroxynitrite: the good, the bad, and ugly. , 1996, The American journal of physiology.
[15] Clifford J. Tabin,et al. Regulation of Rate of Cartilage Differentiation by Indian Hedgehog and PTH-Related Protein , 1996, Science.
[16] B. Lanske,et al. PTH/PTHrP Receptor in Early Development and Indian Hedgehog--Regulated Bone Growth , 1996, Science.
[17] C. Walker,et al. Radiation-induced genomic instability and persisting oxidative stress in primary bone marrow cultures. , 1996, Carcinogenesis.
[18] J. Puzas,et al. Identification and characterization of a unique chondrocyte gene involved in transition to hypertrophy. , 1996, Experimental cell research.
[19] L. Zon,et al. Requirement for ceramide-initiated SAPK/JNK signalling in stress-induced apoptosis , 1996, Nature.
[20] Michael E. Greenberg,et al. Opposing Effects of ERK and JNK-p38 MAP Kinases on Apoptosis , 1995, Science.
[21] R. Mikkelsen,et al. Ionizing radiation induces a transient increase in cytosolic free [Ca2+] in human epithelial tumor cells. , 1994, Cancer research.
[22] N. Amizuka,et al. Parathyroid hormone-related peptide-depleted mice show abnormal epiphyseal cartilage development and altered endochondral bone formation , 1994, The Journal of cell biology.
[23] D. Church,et al. Mutations in the transmembrane domain of FGFR3 cause the most common genetic form of dwarfism, achondroplasia , 1994, Cell.
[24] J. Puzas,et al. Effects of parathyroid hormone‐related peptide on chick growth plate chondrocytes , 1993, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[25] D. Schoenfeld,et al. Regulation of growth-plate chondrocytes by insulin-like growth-factor I and basic fibroblast growth factor. , 1993, The Journal of bone and joint surgery. American volume.
[26] B. Thorp,et al. Transforming growth factor-beta 1, -beta 2 and -beta 3 in cartilage and bone cells during endochondral ossification in the chick. , 1992, Development.
[27] J. Puzas,et al. Synergistic effect of transforming growth factor β and fibroblast growth factor on DNA synthesis in chick growth plate chondrocytes , 1990, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[28] J. Puzas,et al. The production of transforming growth factor-beta by chick growth plate chondrocytes in short term monolayer culture. , 1990, Endocrinology.
[29] J. Puzas,et al. Cytosolic free calcium concentrations in avian growth plate chondrocytes. , 1990, Cell calcium.
[30] J. Puzas,et al. Countercurrent centrifugal elutriation. High-resolution method for the separation of growth-plate chondrocytes. , 1989, The Journal of bone and joint surgery. American volume.
[31] J. Puzas,et al. Effects of transforming growth factor-β on matrix synthesis by chick growth plate chondrocytes , 1988 .
[32] D. González,et al. Clinical data from irradiated growing long bones in children. , 1983, International journal of radiation oncology, biology, physics.
[33] J. Cassady,et al. An evaluation of long‐term survival and treatment complications in children with Hodgkin's disease , 1983, Cancer.
[34] R. Wuthier. A review of the primary mechanism of endochondral calcification with special emphasis on the role of cells, mitochondria and matrix vesicles. , 1982, Clinical orthopaedics and related research.
[35] S. Donaldson,et al. Complications of treatment of Hodgkin's disease in children. , 1982, Cancer treatment reports.
[36] Riley Lh,et al. Skeletal changes during prolonged external irradiation: alterations in marrow, growth plate and osteoclast populations. , 1979 .
[37] A. Alter. Skeletal alterations following irradiation for Wilms' Tumor, with particular reference to Scoliosis and Kyphosis: E. J. Riseborough, S. L. Grabias, R. I. Burton and N. Jaffe. J. Bone Joint Surg.: 58A:526–536 (June) 1976 , 1977 .
[38] N. Jaffe,et al. Skeletal alterations following irradiation for Wilms' tumor: with particular reference to scoliosis and kyphosis. , 1976, The Journal of bone and joint surgery. American volume.
[39] W. Berdon,et al. Skeletal changes following irradiation of childhood tumors. , 1969, The Journal of bone and joint surgery. American volume.
[40] R. Phillips,et al. Age and dose dependence of bone growth retardation induced by x-irradiation. , 1966, Radiation research.
[41] A. B. Wells,et al. Radiation damage to growing bone: the effect of x-ray doses of 100 to 1,000 r on mouse tibia and knee-joint. , 1963, The British journal of radiology.
[42] M. H. Wittenborg,et al. Irradiation effects of roentgen therapy on the growing spine. , 1952, Radiology.
[43] J. Massagué. TGF-beta signal transduction. , 1998, Annual review of biochemistry.
[44] J. Buckwalter. Skeletal growth and development : clinical issues and basic science advances , 1998 .
[45] Y. Ibuki,et al. Enhancement of NO production from resident peritoneal macrophages by in vitro gamma-irradiation and its relationship to reactive oxygen intermediates. , 1997, Free radical biology & medicine.
[46] M. Kastan,et al. p53 and ATM: cell cycle, cell death, and cancer. , 1997, Advances in cancer research.
[47] J. Pickles,et al. The expression of messenger RNAs coding for growth factors, their receptors, and eph-class receptor tyrosine kinases in normal and ototoxically damaged chick cochleae. , 1997, Developmental neuroscience.
[48] M. Bolander,et al. Transforming growth factor-beta in the regulation of fracture repair. , 1990, The Orthopedic clinics of North America.
[49] J. Puzas,et al. Differential expression of biological effects in maturationally distinct subpopulations of growth plate chondrocytes. , 1990, Connective tissue research.
[50] J. Iannotti,et al. Growth plate physiology and pathology. , 1990, The Orthopedic clinics of North America.
[51] J. Puzas,et al. Effects of transforming growth factor-beta on matrix synthesis by chick growth plate chondrocytes. , 1988, Endocrinology.
[52] J. Probert,et al. The effects of radiation therapy on bone growth. , 1975, Radiology.
[53] G. Dodd,et al. Complications of radiation therapy: growing bone. , 1974, Seminars in roentgenology.