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Titlebook: Biological Mineralization and Demineralization; Report of the Dahlem G. H. Nancollas Conference proceedings 1982 Dr. S. Bernhard, Dahlem Ko

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https://doi.org/10.1007/978-3-642-92735-5s of these compartments are analyzed in relation to a possible cellular control of calcification. Special attention is paid to the role of matrix vesicles, cellular derivatives which seem to be involved in the initial phase of mineral deposition in most calcifying tissues.
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Structural Properties of Cells Related to Tissue Mineralization,s of these compartments are analyzed in relation to a possible cellular control of calcification. Special attention is paid to the role of matrix vesicles, cellular derivatives which seem to be involved in the initial phase of mineral deposition in most calcifying tissues.
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https://doi.org/10.1007/978-94-010-3634-4l mRNAs which are used for translation. Also, the polypeptides first synthesized on ribosomes must undergo extensive post-translational processing before the protein can be assembled into an extracellular collagen fiber. (For reviews see (2,11,13); additional references cited here are to a few recent papers not included in these reviews.)
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https://doi.org/10.1007/978-3-663-14069-6lluscs is primarily a sulfated, high molecular weight glycoprotein that selectively binds calcium. This glycoprotein is assigned a primary role in crystal nucleation in the ionotropic nucleation hypothesis. Postnucleation growth may be controlled in varying degrees by the bathing medium and by the insoluble matrix.
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Kleines Praktikum der Vegetationskundee mineralization of the calcium oxalate hydrates. The thermodynamically most stable monohydrate may be formed from the di- and tri-hydrates by nucleation and growth processes, the rates of which are sensitive to temperature, solution composition, and the presence of growth inhibitors typical of those in vivo.
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https://doi.org/10.1007/978-3-642-66820-3zed tissues also contain an organic matrix, and this may have to be removed to provide access to the mineral. Although many factors which affect demineralization have been identified, and the cells involved have been described in detail, the precise biochemical mechanisms are largely unknown.
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Mechanisms and Regulation of Normal and Pathologic Demineralization,zed tissues also contain an organic matrix, and this may have to be removed to provide access to the mineral. Although many factors which affect demineralization have been identified, and the cells involved have been described in detail, the precise biochemical mechanisms are largely unknown.
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