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Untersuchungen der Bildungsprozesse und der Struktur des ...

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LITERATURVERZEICHNIS

LITERATURVERZEICHNIS thermodynamics of nacre in mussel shell. Materials Chemistry and Physics, 114(1):367–370, 2009. [19] Kazuko Saruwatari, Tomoyuki Matsui, Hiroki Mukai, Hiromichi Nagasawa, and Toshihiro Kogure. Nucleation and growth of aragonite crystals at the growth front of nacres in pearl oyster, Pinctada fucata. Biomaterials, 30(16):3028–3034, 2009. [20] Katharina Gries, Roland Kröger, Christian Kübel, Marco Schowalter, Monika Fritz, and Andreas Rosenauer. Correlation of the orientation of stacked aragonite platelets in nacre and their connection via mineral bridges. Ultramicroscopy, 109(3):230–236, 2009. [21] Katharina Gries, Roland Kröger, Christian Kübel, Monika Fritz, and Andreas Rosenauer. Investigation of voids in the aragonite platelets of nacre. Acta Biomaterialia, 5:3038–3044, 2009. [22] Katharina Gries. Elektronenmikroskopische Untersuchungen des Polymer/Mineral - Verbundmaterials Perlmutt, 2007. Diplomarbeit. [23] Ingrid M. Weiss, Stefan Kaufmann, Karlheinz Mann, and Monika Fritz. Purification and Characterization of Perlucin and Perlustrin, Two New Proteins from the Shell of the Mollusc Haliotis laevigata. Biochemical and Biophysical Research Communications, 267:17–21, 2000. [24] Karlheinz Mann, Frank Siedler, Laura Treccani, Fabian Heinemann, and Monika Fritz. Perlinhibin, a Cysteine-, Histidine-, and Arginine-Rich Miniprotein from Abalone (Haliotis laevigata) Nacre, Inhibits In Vitro Calcium Carbonate Crystallization. Biophysical Journal, 93(4):1246– 1254, 2007. [25] Karlheinz Mann, Ingrid M. Weiss, Sabine Andre, Hans-Joachim Gabius, and Monika Fritz. The amino-acid sequence of the abalone (Haliotis laevigata) nacre protein perlucin. European Journal of Biochemistry, 267(16):5257–5264, 2000. [26] Laura Treccani, Karlheinz Mann, Fabian Heinemann, and Monika Fritz. Perlwapin, an Abalone Nacre Protein with Three Four-Disulfide Core (Whey Acidic Protein) Domains, Inhibits the Growth of Calcium Carbonate Crystals. Biophysical Journal, 91(7):2601–2608, 2006. [27] Germaine Fu, Suresh Valiyaveettil, Brigitte Wopenka, and Daniel E. Morse. CaCO3 Biomineralization: Acidic 8-kDa Proteins Isolated from Aragonitic Abalone Shell Nacre Can Specifically Modify Calcite Crystal Morphology. Biomacromolecules, 6(3):1289–1298, 2005. [28] G. Fu, S. R. Qiu, C. A. Orme, D. E. Morse, and J. J. DeYoreo. Acceleration of Calcite Kinetics by Abalone Nacre Proteins. Advanced Materials, 17(22):2678–2683, 2005. [29] Fabio Nudelman, Bat Ami Gotliv, Lia Addadi, and Steve Weiner. Mollusk shell formation: Mapping the distribution of organic matrix components underlying a single aragonitic tablet in nacre. Journal of Structural Biology, 153(2):176–187, 2006. [30] Jiddu Bezares, Robert J. Asaro, and Marilyn Hawley. Macromolecular structure of the organic framework of nacre in Haliotis rufescens: Implications for growth and mechanical behavior. Journal of Structural Biology, 163(1):61–75, 2008. [31] C. Jolly, S. Berland, C. Milet, S. Borzeix, E. Lopez, and D. Doumenc. Zonal localization of shell matrix proteins in mantle of Haliotis tuberculata (Mollusca, Gastropoda). Journal of marine biotechnology (NY), 6(6):541–551, 2004. [32] Ulrich Bielefeld, Karl Zierold, Karl Heinz Körtje, and Wilhelm Becker. Calcium localization in the shell-forming tissue of the freshwater snail, Biomphalaria glabrata: a comparative study of various methods for localizing calcium. The Histochemical Journal, 24(12):927–938, 1992. [33] Ulrich Bielefeld, Karl Heinz Körtje, Hinrich Rahmann, and Wilhelm Becker. The Shell- Forming Mantle Epithelium Of Biophalaria Glabrata (Pulmonata): Ultrastructure, Permeability And Cytochemistry. Journal of Molluscan Studies, 59(3):323–345, 1993. 114

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