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Practical Cell Culture Techniques / edited by Alan A. Boulton, Glen B. Baker, Wolfgang Walz

Material type: materialTypeLabelE-bookSeries: (Neuromethods, 1940-6045; 23).Publisher: Totowa, NJ : Humana Press, 1992Edition: 1st edition 1992.Description: 1 recurso en línea (XIX, 392 páginas).ISBN: 9781592596287.Subject: Neurociencias -- Manuales de laboratorioOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Basic Techniques for Cell Culturing -- Identification of Cell Types in Neural Cultures -- Environmental Influences on Cells in Culture -- Detection and Analysis of Growth Factors Affecting Neural Cells -- The Role of Cell Adhesion Molecules in Neurite Growth -- Three-Dimensional Organ Culture Systems -- Organotypic Slice Explant Roller-Tube Cultures -- Neurons -- Astrocytes -- Oligodendrocytes -- Brain Capillaries.
Summary: Most cells will survive removal from the natural mic- environment of their in vivo tissue and placement into a sterile culture dish under optimal conditions. Not only do they survive, but they also multiply and express differen- ated properties in such a culture dish. A few cells do this in suspension, but most will need some kind of mechanical support substituting for their natural connections with other cells. The surface of a culture dish that might have to be coated is usually sufficient. The recent trend to standa- ization of conditions and the existence of commercial ent- prises with adequate funds and specializing in the needs of scientists were responsible for the tremendous proliferation of cell culture techniques in all fields of research in the last 20 years. No longer does a scientist have to concentrate all his/her efforts on that technology; the new trends make it feasible to employ cell culture techniques as only one of the many methods available in a small corner of a larger research laboratory. Some areas of research depend more heavily than others on cell culture techniques. Neuroscience is one of the areas that has developed hand in hand with the prol- eration of cell culture methodology. Molecular biological aspects, cell differentiation and development, neurophy- ological and neurochemical studies, as well as investigations into the nature of various diseases are now to a large extent dependent on the use of cell cultures.
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Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) FCBS | FCAD QP357 1992 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20122031
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Basic Techniques for Cell Culturing -- Identification of Cell Types in Neural Cultures -- Environmental Influences on Cells in Culture -- Detection and Analysis of Growth Factors Affecting Neural Cells -- The Role of Cell Adhesion Molecules in Neurite Growth -- Three-Dimensional Organ Culture Systems -- Organotypic Slice Explant Roller-Tube Cultures -- Neurons -- Astrocytes -- Oligodendrocytes -- Brain Capillaries.

Most cells will survive removal from the natural mic- environment of their in vivo tissue and placement into a sterile culture dish under optimal conditions. Not only do they survive, but they also multiply and express differen- ated properties in such a culture dish. A few cells do this in suspension, but most will need some kind of mechanical support substituting for their natural connections with other cells. The surface of a culture dish that might have to be coated is usually sufficient. The recent trend to standa- ization of conditions and the existence of commercial ent- prises with adequate funds and specializing in the needs of scientists were responsible for the tremendous proliferation of cell culture techniques in all fields of research in the last 20 years. No longer does a scientist have to concentrate all his/her efforts on that technology; the new trends make it feasible to employ cell culture techniques as only one of the many methods available in a small corner of a larger research laboratory. Some areas of research depend more heavily than others on cell culture techniques. Neuroscience is one of the areas that has developed hand in hand with the prol- eration of cell culture methodology. Molecular biological aspects, cell differentiation and development, neurophy- ological and neurochemical studies, as well as investigations into the nature of various diseases are now to a large extent dependent on the use of cell cultures.

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