Bookbot

Methods in Enzymology 215. Platelets: Receptors, Adhesion, Secretion

Parametri

  • 526pagine
  • 19 ore di lettura

Maggiori informazioni sul libro

This volume contains a comprehensive collection of methods for the isolation of platelet membranes, subcellular organelles, the cytoskeleton, and for the assay and purification of platelet receptors. Key Features * Platelets are cellular elements with the highest density of receptors per membrane surface area involved in binding of adhesive molecules, clotting, enzymes, and vasoactive amines * Platelets are essential for the arrest of bleeding and for formation of intravascular thrombi contributing to heart attacks, strokes, and disseminated intravascular coagulation, and are involved in immune complex disease * Platelets are useful for studying the processes of cell adhesion, neurotransmitter uptake, stimulus-response coupling, including signal transduction and secretion

Acquisto del libro

Methods in Enzymology 215. Platelets: Receptors, Adhesion, Secretion, Jacek J Hawiger

Lingua
Pubblicato
1992
Rilegatura
(Copertina rigida)
Ti avviseremo via email non appena lo rintracceremo.

Metodi di pagamento

Titolo
Methods in Enzymology 215. Platelets: Receptors, Adhesion, Secretion
Lingua
Inglese
Pubblicato
1992
Formato
Copertina rigida
Pagine
526
ISBN10
0121821161
ISBN13
9780121821166
Serie
Descrizione
This volume contains a comprehensive collection of methods for the isolation of platelet membranes, subcellular organelles, the cytoskeleton, and for the assay and purification of platelet receptors. Key Features * Platelets are cellular elements with the highest density of receptors per membrane surface area involved in binding of adhesive molecules, clotting, enzymes, and vasoactive amines * Platelets are essential for the arrest of bleeding and for formation of intravascular thrombi contributing to heart attacks, strokes, and disseminated intravascular coagulation, and are involved in immune complex disease * Platelets are useful for studying the processes of cell adhesion, neurotransmitter uptake, stimulus-response coupling, including signal transduction and secretion