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Heparin and Related Polysaccharides

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Cover of 'Heparin and Related Polysaccharides'

Table of Contents

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    Book Overview
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    Chapter 1 Heparin — an Introduction
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    Chapter 2 Chemical Synthesis and Hemisynthesis in the Field of Glycosaminoglycans
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    Chapter 3 Structural Analysis of Periodate-Oxidized Heparin
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    Chapter 4 New Methodologies in Heparin Structure Analysis and the Generation of LMW Heparins
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    Chapter 5 Heparan Sulphate Proteoglycans: Molecular Organisation of Membrane-Associated Species and an Approach to Polysaccharide Sequence Analysis
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    Chapter 6 Regulation of the Gene that Encodes the Peptide Core of Heparin Proteoglycan and Other Proteoglycans that are Stored in the Secretory Granules of Hematopoietic Cells
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    Chapter 7 Structural and Functional Diversity of the Heparan Sulfate Proteoglycans
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    Chapter 8 Syndecan — A Cell Surface Proteoglycan that Selectively Binds Extracellular Effector Molecules
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    Chapter 9 Heparan Sulfate Proteoglycans and Signalling in Cell Adhesion
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    Chapter 10 Animal Cell Mutants Defective in Heparan Sulfate Polymerization
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    Chapter 11 Two Enzymes in One: N-Deacetylation and N-Sulfation in Heparin Biosynthesis are Catalyzed by the Same Protein
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    Chapter 12 Metabolism of Plasma Membrane-Associated Heparan Sulfate Proteoglycans
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    Chapter 13 Lysosomal Degradation of Heparin and Heparan Sulphate
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    Chapter 14 Heparin Binding Properties of the Carboxyl Terminal Domain of [A 103,106,108 ] Antistasin 93–119
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    Chapter 15 Heparin Protein Interactions
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    Chapter 16 Role of Protein Conformational Changes, Surface Approximation and Protein Cofactors in Heparin-Accelerated Antithrombin-Proteinase Reactions
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    Chapter 17 The Interaction of Glycosaminoglycans with Heparin Cofactor II: Structure and Activity of a High-Affinity Dermatan Sulfate Hexasaccharide
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    Chapter 18 Thrombomodulin: An Anticoagulant Cell Surface Proteoglycan With Physiologically Relevant Glycosaminoglycan Moiety
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    Chapter 19 The Interaction Between LACI and Heparin
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    Chapter 20 Tissue Factor Pathway Inhibitor and Heparin
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    Chapter 21 LMW Heparin: Relationship Between Antithrombotic and Anticoagulant Effects
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    Chapter 22 The Mode of Action of Heparins In Vitro and In Vivo
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    Chapter 23 Prophylactically Effective Doses of Enoxaparin and Heparin Inhibit Prothrombin Activation
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    Chapter 24 Pharmacokinetics of Heparin and of Dermatan Sulfate: Clinical Implications
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    Chapter 25 Heparin in the Prevention and Treatment of Arterial Thromboembolism
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    Chapter 26 Glycosaminoglycans in Prophylaxis Against Venous Thromboembolism
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    Chapter 27 Treatment of Deep Vein Thrombosis (DVT) with Low Molecular Weight Heparins (LMWH)
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    Chapter 28 Relationship Between Dose, Anticoagulant Effect and the Clinical Efficacy and Safety of Heparin
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    Chapter 29 Regulation of Protease Nexin-1 Activity by Heparin and Heparan Sulfate
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    Chapter 30 New Approaches for Defining Sequence Specific Synthesis of Heparan Sulfate Chains
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    Chapter 31 Modulation of Neovascularization and Metastasis by Species of Heparin
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    Chapter 32 Anti-Inflammatory Effects of Heparin and its Derivatives Inhibition of Complement and of Lymphocyte Migration
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    Chapter 33 Heparan Sulfate Glycosaminoglycans as Primary Cell Surface Receptors for Herpes Simplex Virus
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    Chapter 34 Control of Angiogenesis by Heparin and Other Sulfated Polysaccharides
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Citations

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Title
Heparin and Related Polysaccharides
Published by
Springer Science & Business Media, November 2013
DOI 10.1007/978-1-4899-2444-5
ISBNs
978-1-4899-2444-5, 978-0-306-44212-4, 978-1-4899-2446-9
Editors

Lane, David A., Björk, I., Lindahl, Ulf

Mendeley readers

The data shown below were compiled from readership statistics for 9 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 33%
Professor > Associate Professor 2 22%
Student > Ph. D. Student 2 22%
Student > Bachelor 1 11%
Student > Doctoral Student 1 11%
Other 0 0%
Readers by discipline Count As %
Medicine and Dentistry 3 33%
Agricultural and Biological Sciences 3 33%
Pharmacology, Toxicology and Pharmaceutical Science 1 11%
Chemistry 1 11%
Engineering 1 11%
Other 0 0%