Oral Cells and Tissues. Philias R. Garant. Читать онлайн. Newlib. NEWLIB.NET

Автор: Philias R. Garant
Издательство: Bookwire
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Жанр произведения: Медицина
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isbn: 9780867156195
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      101. Murakami C, Dohi N, Fukae M, Tanabe T, Yamakoshi Y, Wakida K, Satoda T, Takahashi O, Shimizu M, Ryu OH, Simmer JP, Uchida T. Immunochemical and immunohistochemical study of the 27- and 29-kDa calcium-binding proteins and related proteins in the porcine tooth germ. Histochem Cell Biol 1997;107:485–494.

      102. Taylor AN. Tooth formation and the 28000-dalton vitamin D-dependent calcium-binding protein: An immunocytochemical study. J Histchem Cytochem 1984;32:159–164.

      103. Hubbard MJ. Enamel cell biology. Towards a comprehensive biochemical understanding. Connect Tissue Res 1998; 38:17–32.

      104. Wakida K, Amizuka N, Murakami C, Satoda T, Fukae M, Simmer JP, Ozawa H, Uchida T. Maturation ameloblasts of the porcine tooth germ do not express amelogenin. Histochem Cell Biol 1999;111:297–303.

      105. Chen JK, Sasaguri K, Sodek J, Aufdemorte TB, Jiang HP, Thomas HF. Enamel epithelium expresses bone sialoprotein (BSP). Eur J Oral Sci 1998;106:331–336.

      106. Nishikawa S, Sasaki F. DNA localization in nuclear fragments of apoptotic ameloblasts using anti-DNA immunoelectron microscopy: Programmed cell death of ameloblasts. Histochem Cell Biol 1995;104:151–159.

      107. Smith CE, Warshawsky H. Quantitative analysis of cell turnover in the enamel organ of the rat incisor. Anat Rec 1977;187:63–98.

      108. Garant PR, Nalbandian J. The fine structure of the papillary region of the mouse enamel organ. Arch Oral Biol 1968; 13:1167–1185.

      109. Kallenbach E. Electron microscopy of the papillary layer of rat incisor enamel organ during enamel maturation. J Ultrastruc Res 1966;14:518–533.

      110. Kallenbach E. Cell architecture in the papillary layer of the rat incisor at the stage of enamel maturation. Anat Rec 1967; 157:685–698.

      111. Sasaki T, Higashi S. A morphological, tracer and cytochemical study of the role of the papillary layer of the rat-incisor enamel organ during enamel maturation. Arch Oral Biol 1983;28:201–210.

      112. Garant P, Gillespie R. The presence of fenestrated capillaries in the papillary layer of the enamel organ. Anat Rec 1969;163:71–80.

      113. Garant P, Sasaki T, Colflesch D. Na-K-ATPase in the enamel organ: Localization and possible roles in enamel maturation. Adv Dent Res 1987;1:267–275.

      114. Robinson C, Briggs H, Kirkham J, Atkinson P. Changes in the protein components of rat incisor enamel during tooth development. Arch Oral Biol 1983;28:993–1000.

      115. Deutsch D, Shapira L. Pattern of mineral uptake in the developing human deciduous enamel. J Craniofac Genet Dev Biol 1987;7:137–143.

      116. Tanabe T, Fukae M, Uchida T, Shimizu M. The localization and characterization of proteinases for the initial cleavage of porcine amelogenin. Calcif Tissue Int 1992;51:213–217.

      117. Fukae M, Tanabe T. Degradation of enamel matrix proteins in porcine secretory enamel. Connect Tissue Res 1998;39: 123–129.

      118. Scully JL, Bartlett JD, Chaparian MG, Fukae M, Uchida T, Xue J, Hu C-C, Simmer JP. Enamel matrix serine proteinase 1: Stage-specific expression and molecular modeling. Connect Tissue Res 1998;39:111–122.

      119. Caron C, Xue J, Bartlett JD. Expression and localization of membrane type 1 matrix metalloproteinase in tooth tissues. Matrix Biol 1998;17:501–511.

      120. Kallenbach E. Fine structure of rat incisor ameloblasts during enamel maturation. J Ultrastruc Res 1968;22:90–119.

      121. Reith E. The stages of amelogenesis as observed in molar teeth of young rats. J Ultrastruc Res 1970;30:111–151.

      122. Josephsen K, Fejerskov O. Ameloblast modulation in the maturation zone of the rat incisor enamel organ. J Anat 1977;124:45–70.

      123. Goldberg M, Sasaki T. Intramembrane particle distribution on the plasma membrane of ruffle-ended and smooth-ended maturation ameloblasts of the rat incisor. J Biol Buccale 1985;13:251–260.

      124. Boyde A, Reith E. Scanning electron microscopy of rat maturation ameloblasts. Cell Tissue Res 1977;178:221–228.

      125. Eisenmann DR, Sarraj S, Becker R, Zaki AE. Ameloblast cycling patterns as measured by fluorochrome infiltration of rat incisor enamel. Arch Oral Biol 1995;40:193–198.

      126. Smith CE, McKee MD, Nanci A. Cyclic induction and rapid movement of sequential waves of new smooth-ended ameloblast modulation bands in rat incisors as visualized by polychrome fluorescent labeling and GBHA-staining of maturing enamel. Adv Dent Res 1987;1:162–175.

      127. Reith E, Cotty V. The absorptive activity of ameloblasts during the maturation of enamel. Anat Rec 1967;157:577–588.

      128. Nanci A, Slavkin HC, Smith CE. Application of high resolution immunocytochemistry to the study of the secretory, resorptive, and degradative functions of ameloblasts. Adv Dent Res 1987;1:148–161.

      129. Takano Y. Cytochemical studies of ameloblasts and the surface layer of enamel of the rat incisor at the maturation stage. Arch Histol Jpn 1979;42:11–32.

      130. Robinson C, Kirkham J, Briggs HD. Enamel proteins: From secretion to maturation. J Dent Res 1982;61:1490–1495.

      131. Debari K, Takiguchi R, Higashi S, Sasaki T, Garant P. Correlated observations and analysis of maturation-ameloblast morphology and enamel mineralization. J Dent Res 1986; 65:669–672.

      132. Al-Kawas S, Amizuka N, Bergeron JJM, Warshawsky H. Immunolocalization of the cation-independent mannose 6-phosphate receptor and cathepsin B in the enamel organ and alveolar bone of the rat incisor. Calcif Tissue Int 1996; 59:192–199.

      133. Takano Y. Enamel mineralization and the role of ameloblasts in calcium transport. Connect Tissue Res 1995;33:127–137.

      134. Reith E, Boyde A. Autoradiographic evidence of cyclical entry of calcium into maturing enamel of the rat incisor tooth. Arch Oral Biol 1981;26:983–987.

      135. Takano Y, Crenshaw M, Reith E. Correlation of 45Ca incorporation with maturation ameloblast morphology in the rat incisor. Calcif Tissue Int 1982;34:211–213.

      136. Gomez S, Boyde A. Correlated alkaline phosphatase histochemistry and quantitative backscattered electron imaging in the study of rat incisor ameloblasts and enamel mineralization. Microsc Res Tech 1994;29:29–36.

      137. Lin HM, Nakamura H, Noda T, Ozawa H. Localization of H+-ATPase and carbonic anhydrase II in ameloblasts at maturation. Calcif Tissue Int 1994;55:38–45.

      138. Toyosawa S, Ogawa Y, Inagaki T, Ijuhin N. Immunohistochemical localization of carbonic anhydrase isozyme II in rat incisor epithelial cells at various stages of amelogenesis. Cell Tissue Res 1996;285:217–225.

      139. Kakei M, Nakahara H. Aspects of carbonic anhydrase and carbonate content during mineralization of the rat enamel. Biochim Biophys Acta 1996;1289:226–230.

      140. Guthrie SC, Gilula NB. Gap junctional communication and development. Trends Neurosci 1989;12:12–16.

      141. Sosinsky GE. Molecular organization of gap junction membrane channels. J Bioenerg Biomembr 1996;28:297–309.

      142. Kumar NM, Gilula NB. The gap junction communication channel. Cell 1996;84:381–388.

      143. Peracchia C. Cell coupling. In: Martonosi A (ed). The Enzymes of Biological Membranes. New York: Plenum Press, 1984:81–130.

      144. Saez JC, Connor JA, Spray DC, Bennett MVL. Hepatocyte gap junctions are permeable to second messenger inositol 1,4,5-triphosphate, and to calcium ions. Proc Natl Acad Sci USA 1989;86:2708–2712.

      145. Beyer EC. The connexins, a family of related gap junction proteins. Mod Cell Biol 1988;7:175–176.

      146. White TW, Bruzzone R. Multiple connexin proteins in single intercellular channels: Connexin compatibility and functional consequences. J Bioenerg Biomembr 1996;28:339–350.

      147. Guerrier A, Fonlupt P, Morand I, Rabilloud R, Audebet C, Krutovskikh V, Gros D, Rousset B, Munari-Silem Y. Gap junctions and cell polarity: Connexin32