38
Views
15
CrossRef citations to date
0
Altmetric
Original Article

Immunohistochemical Localization of Components of the Insulin-Like Growth Factor-System in Human Deciduous Teeth

, , , &
Pages 291-302 | Received 07 Mar 2001, Published online: 06 Aug 2009

References

  • Lerner U. H. Osteoclast formation and resorption. Matrix Biot 2000; 19: 107–120
  • Teitelbaum S. L. Bone resorption by osteoclasts. Science 2000; 289: 1504–1508
  • Vaananen H. K., Zhao H., Mulari M., Halleen J. M. The cell biology of osteoclast function. J Cell Sci 2000; 113: 377–381
  • Chambers T. J. Regulation of the differentiation and function of osteoclasts. J Pathol 2000; 192: 4–13
  • Greenfield E. M., Bi Y., Miyauchi A. Regulation of osteoclast activity. Life Science 1999; 65: 1087–1102
  • Roodman G. D. Cell biology of the osteoclast. Exper Hematol 1999; 27: 1229–1241
  • Mohan S., Baylink D. J. Insulin-like growth factor system components and the coupling of bone formation to resorption. Horm Res 1996; 45: 59–62, Suppl 1
  • Rosen C. J., Donahue L. R. Insulin-like growth factors and bone: The osteoporosis connection revisited. Proc Soc Exper Biol Med 1998; 219: 1–7
  • LeRoith D. Insulin-like growth factors. New Eng J Med 1997; 336: 633–640
  • Grothey A., Voigt W., Schöber C., Muller T., Dempke W., Schmoll H. J. The role of insulin-like growth factir I and ist receptor in cell growth transformation, apoptosis, and chemoresistance in solid tumors. J Cancer Res Clin Oncol 1999; 125: 166–173
  • Braulke T. Type-2 IGF receptor: a multi-ligand binding protein. Horm Metah Res 1999; 31: 242–246
  • Baxter R. C. Insulin-like growth factor (IGF)-binding proteins: interactions with IGFs and intrinsic bioactivities. Am J Physiol 2000; 278: E967–E976
  • Grimberg A., Cohen P. Role of insulin-like growth factors and their binding proteins in growth control and carcinogenesis. J Cell Physiol 2000; 183: 1–9
  • Ferry R. J., jr., Katz L. E.L., Grimberg A., Cohen P., Weinzimer S. A. Cellular actions of insulin-like growth factor binding proteins. Horm Metab Res 1999; 31: 192–202
  • Hwa V., Youngman O. H., Rosenfeld R. G. The insulin-like growth factor-binding protein (IGFBP) super-family. Endocrine Rev 1999; 20: 761–787
  • Clemmons D. R. Role of insulin-like growth factor binding proteins in controlling IGF actions. Mol Cell Endocrinol 1998; 140: 19–24
  • Middleton J., Arnott N., Walsh S., Beresford J. Osteoblasts and osteoclasts in adult human osteophyte tissue express the mRNAs for insulin-like growth factors I and II and the type 1 IGF receptor. Bone 1995; 16: 287–293
  • Jäger A., Radlanski R. J., Götz W. Demonstration of cells of the mononuclear phagocyte lineage in the periodontium following experimental tooth movement in the rat An immunohistochemical study using monoclonal antibodies EDI and ED 2 on paraffin-embedded tissues. Histochem 1993; 100: 161–166
  • Sahara N., Toyoki A., Ashizawa Y., Deguchi T., Suzuki K. Cytodifferentiation of the odontoclast prior to the shedding of human deciduous teeth: An ultrastructural and cytochemical study. Anat Rec 1996; 244: 33–54
  • Domon T., Osanai M., Yawaka Y., Suzuki R., Takahashi S., Yamamoto T., Wakita M. Ultrastructural study of the root dentine surface resuming resorption on human deciduous teeth. Ann Anat 2000; 182: 175–184
  • Tenorio D., Cruchley A., Hughes F. J. Immunocytochemical investigation of the rat cementoblast phenotype. J Periodont Res 1993; 28: 411–1119
  • Joseph B. K., Savage N. W., Young W. G., Gupta G. S., Breier B. H., Waters M. J. Expression and regulation of insulin-like growth factor-I in the rat incisor. Growth Factors 1993; 8: 267–275
  • Joseph B. K., Savage N. W., Young W. G., Waters M. J. Prenatal expression of growth hormone receptor/binding protein and insulin-like growth factor-I (IGF-I) in the enamel organ Role for growth hormone and IGF-I in cellular differentiation during early tooth formation. Anat Embryo 1994; 189: 489–494
  • Joseph B. K., Savage N. W., Daley T. J., Young W. G. In situ hybridization evidence for a paracrine/autocrine role for insulin-like growth factor-I in tooth development. Growth Factors 1996; 13: 11–17
  • Young W. G. Growth hormone and insulin-like growth factor-I in odontogenesis. Int J Dev Biel 1995; 39: 263–272
  • Young W. G., Ruch J. V., Stevens M. R., Bègue-Kirn C., Zhang C. Z., Lesot H., Waters M. J. Comparison of the effects of growth hormone insulin-like growth factor-I and fetal calf serum on mouse molar odontogenesis in vitro. Arch Oral Biol 1995; 40: 789–799
  • Takahashi K., Yamane A., Bringas P., Caton J., Slavkin H. C., Zeichner-David M. Induction of amelogenin and ameloblastin by insulin and insulin-like growth factors (IGF-I and IGF-II) during embryonic mouse tooth development in vitro. Conn Tiss Res 1998; 38: 269–278
  • Giannobile W. V. Periodontal tissue engineering by growth factors. Bone 1996; 19: 23S–37S, Suppl
  • Narayanan A. S., Bartold P. M. Biochemistry of periodontal connective tissues and their regeneration: A current perspective. Conn Tiss Res 1996; 34: 191–201
  • Rutherford R. B., Niekrash C. E., Kennedy J. E., Charette M. F. Platelet-derived and insulin-like growth factors stimulate regeneration of periodontal attachment in monkeys. J Periodontal Res 1992; 27: 285–290
  • Giannobile W. V., Finkelman R. D., Lynch S. E. Comparison of canine and non-human primate models for periodontal regenerative therapy: Results following a single administration of PDGF/IGF-I. J Periodontal 1994; 65: 1158–1168
  • Howell T. H., Fiorellini J. P., Paquette D. W., Offenbacher S., Giannobile W. V., Lynch S. E. A phase I/II clinical trial to evaluate a combination of recombinant human platelet-derived growth factor-BB and recombinant human insulin-like growth factor-1 in patients with periodontal disease. J Peridodontol 1997; 68: 1186–1193
  • Narayanan S. A., Ikezawa K., Wu D., Pitaru S. Cementum specific components which influence periodontal connective tissue. Conn Tiss Res 1995; 33: 19–21
  • Ikezawa K., Hart C E., Williams D. C., Narayanan A. S. Characterization of cementum derived growth factor as an insulin-like growth factor-I like molecule. Conn Tiss Res 1997; 36: 309–319
  • Ikezawa K., Ohtsubo M., Norwood T H., Narayanan A S. Role of cyclin E and cyclin E-dependent kinase in mitogenic stimulation by cementum-derived growth factor in human fibroblasts. FASEB J 1998; 12: 1233–1239
  • Warshawsky H., Moore G. A technique for the fixation and decalcification of rat incisors for electron microscopy. J Histochem Cytochem 1967; 15: 542–549
  • Götz W., Quondamatteo F., Ragotzki S., Affeldt J., Jager A. Localization of cathepsin D in human odontoclasts A light and electron microscopical immunocytochemical study. Conn Tiss Res 2000; 41: 185–194
  • Hou P., Sato T., Hofstetter W., Foged N. T. Identification and characterization of the insulin-like growth factor I receptor in mature rabbit osteoclasts. J Bone Min Res 1997; 12: 534–540
  • Fiorelli G., Formigli L., Zecchi-Orlandini S., Gori F., Falchetti A., Morelli A., Tanini A., Benvenuti S., Brandi M. L. Characterization and function of the receptor for IGF-I in humna preosteoclastic cells. Bone 1996; 18: 269–276
  • Formigli L., Fiorelli G., Benvenuti S., Tani A., Orlandini G. E., Brandi M. L., Zecchi-Orlandini S. Insulin-like growth factor-I stimulates in vitro migration or preosteoclasts across bone endotehlial cells. Cell Tiss Res 1997; 288: 101–110
  • Butt A. J., Firth S. M., Baxter R. C. The IGF axis and programmed cell death. Immunol Cell Biol 1999; 77: 256–272
  • Kanatani M., Sugimoto T., Nishiama K., Chihara K. Stimulatory effect of insulin-like growth factor binding protein-5 on mouse osteoclast formation and osteoclastic bone-resorbing activity. J Bone Min Res 2000; 15: 902–910
  • Bautista C. M., Baylink D. J., Mohan S. Isolation of a novel insulin-like growth factor (IGF) binding protein from human bone: A potential candidate for fixing IGF-II in human bone. Biochem Biophys Res Commun 1991; 176: 756–763
  • Nam T-J., Busby W. H., jr., Rees C., Clemmons D. R. Thrombospondin and osteopontin bind to insulin-like growth factor (IGF)-binding protein-5 leading to an alteration in IGF-I-stimulated cell growth. Endocrinology 2000; 141: 1100–1106
  • Ababneh K. T., Hall R. C., Embery G. The proteoglycans of human cementum: immunohistochemical localization in healthy periodontally involved and ageing teeth. J Periodont Res 1999; 34: 87–96
  • Cheng H., Caterson B., Yamauchi M. Identification and immunolocalization of chondroitin sulfate proteoglycans in tooth cementum. Conn Tiss Res 1999; 40: 37–47
  • Nanci A. Content and distribution of noncollagenous matrix proteins in bone and cementum: Relationships to speed of formation and collagen packing density. J Struct Biol 1999; 126: 256–269
  • Nakae H., Narayanan A. S., Raines E., Page R. C. Isolation and partial characterization of mitogenic factors from cementum. Biochemistry 1991; 30: 7047–7052
  • Yonemura K., Narayanan A. S., Mild Y., Page R. C., Okada H. Isolation and partial characterization of a growth factor from human cementum. Bone Miner 1992; 18: 187–198
  • Narayanan S. A., Yonemura K. Purification and characterization of a novel growth factor from cementum. J Periodont Res 1993; 28: 563–565
  • Yonemura K., Raines E. W., Ahn N. G., Narayanan A. S. Mitogenic signaling mechanisms of human cementum derived growth factors. J Biol Chem 1993; 268: 26120–26126
  • Sahara N., Okafuji N., Toyoki A., Ashizawa Y., Deguchi T., Suzuki K. Cementum-like deposition on the resorbed pulp chamber wall of human deciduous teeth prior to shedding. Acat anat 1993; 147: 24–34
  • Yamamoto T., Domon T., Takahashi S., Suzuki R., Islam M. N. The fibrillar structure of cement lines on resorbed root surfaces of human teeth. J Periodont Res 2000; 35: 208–213
  • Bosshardt D. D., Schroeder H. E. How repair cementum becomes attached to the resorbed roots of human permanent teeth. Acat anat 1994; 150: 253–266
  • Saygin N. E., Tokiyasu Y., Giannobile W. V., Somerman M. J. Growth factors regulate expression of mineral associated genes in cementoblasts. J Periodontol 2000; 71: 1591–1600
  • Finkelman R. D., Mohan S., Jennings J. C., Taylor A. K., Jepsen S., Baylink D. F. Quantitation of growth factors IGF-I, SGF/IGF-II and TGF-beta in human dentin. J Bone Min Res 1990; 5: 717–723
  • Roberts-Clark D. J., Smith A. J. Angiogenic growth factors in human dentine matrix. Arch Oral Biol 2000; 45: 1013–1016
  • Nishimura F., Terranova V. P. Comparative study of the chemotactic responses of periodontal ligament cells and gingival fibroblasts to polypeptide growth factors. J Dent Res 1996; 75: 986–992
  • Blom S., Holmstrup P., Dabelsteen E. The effect of insulin-like growth factor-I and human growth hormone on periodontal ligament fibroblast morphology, growth pattern, DNA synthesis and receptor binding. J Periodontol 1992; 63: 960–968
  • Matsuda N., Lin W-L., Kumar N. M., Cho M. I., Genco R. J. Mitogenic, chemotactic and synthetic responses of rat periodontal ligament fibroblastic cells to polypeptide growth factors in vitro. J Periodontol 1992; 63: 515–525
  • Lynch S. E., Ruiz de Castilla G., Williams R. C., Kiritsy C. P., Howell T. H., Reddy M. S., Antoniades H. N. The effects of short-term application of a combination of platelet-derived and insulin-like growth factors on periodontal wound healing. J Periodontol 1991; 62: 458–467
  • Trackman P. C., Graham R. J., Bittner H. K., Carnes D. L., Gilles J. A., Graves D. T. Inflammation-associated lysyl oxidase protein expression in vivo and modulation by FGF-2 plus IGF-l. Histochem Cell Blot 1998; 110: 9–14
  • Lekic P., McCulloch C. A.G. Periodontal ligament cell populations: The central role of fibroblasts creating a unique tissue. Anat Rec 1996; 245: 327–341

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.