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Titlebook: Connective Tissues; Biochemistry and Pat Reinhard Fricke,Fritz Hartmann Book 1974 Springer-Verlag Berlin · Heidelberg 1974 Tissues.biochemi

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The Relationship between Chemical Structure and Fibrogenic Character of Glycosaminoglycansrides determine their influence on extracellular fibril formation. Therefore it seems to be important to deal with the significance of the chemical structure of polysaccharides of the polygalactic type.
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Biosynthesis of Collagenbout 300,000. In most of the body collagen there are two chains of one type, designated α1, and one of another type designated α2, each having a similar but distinct amino acid sequence (for reviews on collagen structure, see Ramachandran, 1967; Grant and Prockop, 1972).
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Introduction: What Happens Now,, contrary to previous statements, the dermatan sulfate remains approximately constant (Pearson, 1970). Keratan sulfate may be implicated in the formation of very thin fibrils found in more transparent tissues like cornea and nucleus pulposus.
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Metastases to the Digestive Tracteen called “sialic acids” by Blix et al. (1957), contain acyl residues bound to the amino-group and in some cases also to the hydroxyl groups. The best known and most widely distributed sialic acid is N-acetylneuraminic acid, systematically named β-D (-)-5-acetamido-3, 5-dideoxy-D-glycero-D-galacto-nonulosaminic acid (Fig. 1).
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The Subcellular Site of the Biosynthesis of N-Glycoloyl- and N-Acetyl-O-Acetylneuraminic Acid Componeen called “sialic acids” by Blix et al. (1957), contain acyl residues bound to the amino-group and in some cases also to the hydroxyl groups. The best known and most widely distributed sialic acid is N-acetylneuraminic acid, systematically named β-D (-)-5-acetamido-3, 5-dideoxy-D-glycero-D-galacto-nonulosaminic acid (Fig. 1).
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