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| 001 | 235746 | ||
| 003 | ES-VaUE | ||
| 005 | 20221220020724.0 | ||
| 007 | cr nn 008mamaa | ||
| 008 | 100301s1993 xxu| s |||| 0|eng d | ||
| 020 | _a9781592595051 | ||
| 024 | 7 |
_a10.1385/0896032450 _2doi |
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| 040 |
_aES-MaUEC _bspa _cES-MaUEC |
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| 100 | 1 |
_aMurphy, David. _eautor _4aut _4http://id.loc.gov/vocabulary/relators/aut |
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| 245 | 1 | 0 |
_aTransgenesis Techniques _bPrinciples and Protocols _cby David Murphy, David A. Carter. |
| 250 | _a1st edition 1993 | ||
| 264 | 1 |
_aTotowa, NJ _bHumana Press _c1993 |
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| 300 |
_a1 recurso en línea (XII, 467 páginas) _b |
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| 336 |
_atexto _btxt _2rdacontent |
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| 337 |
_aelectrónico _bc _2rdamedia |
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| 338 |
_arecurso electrónico _bcr _2rdacarrier |
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| 347 |
_aarchivo de texto _bPDF |
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| 490 | 0 |
_aMethods in Molecular Biology _x1940-6029 _v18 |
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| 505 | 0 | _aand Topical Reviews -- to Transgenesis -- Transgenic Rodents and the Study of the Central Nervous System -- Transgenic Animals and the Study of Cancer -- Transgenic Animals and the Study of the Immune System -- The Commercial and Agricultural Applications of Animal Transgenesis -- Transgenesis in Invertebrate and Lower Vertebrate Species -- P Element-Mediated Germ-Line Transformation of Drosophila -- Gene Transfer by Microinjection in the Zebra Fish Brachydanio rerio -- Transgenic Induction in Salmonid and Tilapia Fish -- Transgenesis in the Mouse -- An Overview of Transgenic Mouse Production -- Transgene Design -- Isolation of DNA Fragments for Microinjection -- Establishing a Colony for Efficient Production of Transgenic Mice -- Mating Mice -- Anesthetizing Mice -- Vasectomizing a Mouse -- Preparation of Culture Media for Fertilized One-Cell Mouse Eggs -- Collection of Fertilized One-Cell Mouse Eggs for Microinjection -- Microinjection of Cloned DNA Fragments into Fertilized One-Cell Mouse Eggs -- Microinjection of Cloned DNA Fragments into Fertilized One-Cell Mouse Eggs -- Delivery of Microinjected Eggs to Surrogate Mothers by Oviduct Transfer -- Caesarean Section and Fostering -- In vitro Fertilization of Mouse Eggs -- The In Vitro Isolation of Murine Embryonic Stem Cells -- Production of Chimeras Derived from Murine Embryonic Stem Cells -- Cryopreservation of Transgenic Mouse Lines -- Transgenesis in the Rat -- to the Physiology and Husbandry of the Rat -- Mating of Rats -- Vasectomy of the Male Rat -- Harvest of Fertilized One-Cell Rat Eggs -- Implantation of Microinjected Eggs -- Cryopreservation of Transgenic Rat Lines -- Transgenesis in a Domestic Species-The Sheep -- Production of Transgenic Sheep -- Cryopreservation of Transgenic Sheep Lines -- Genomic Analysis of Transgenic Animals -- Isolation of Genomic DNA from Tail Tissue -- Slot Blotting of Genomic Tail DNA -- Genomic Analysis of Transgenic Animals by the Polymerase Chain Reaction -- Genomic Analysis of Transgenic Animals -- Expression Analysis of Transgenic Animals -- The Preparation of RNA from the Tissues of Transgenic Animals -- Northern Blotting -- Rna slot Blotting -- Analysis of Gene Expression by PCR -- Nuclear Run-On Analysis of Transcription -- S1 Nuclease Protection Mapping -- Primer Extension -- In Situ Hybridization Analysis of Transgenic Tissues -- Immunohistochemical Analysis of Transgene Expression -- Postmortem Examination of Transgenic Mice -- Histological Examination of Transgenic Mice -- Reporter Enzyme Assays -- Restriction Endonuclease Digestion of DNA -- Agarose Gel Electrophoresis -- Working with Radioactivity in the Transgenic Animal Laboratory -- Random Primed Labeling of DNA -- Filter Hybridization -- DNA Transfection. | |
| 520 | _aOver the past twenty years, the disciplines of cellular and molecular biology have generated a bounty of information pertaining to the understanding of the structure and function of eukaryotic cells . It is now recognized that individual cells regulate their activities in response to a multitude of external signals ; that external signals, a- ing through a limited number of second messenger systems, modulate the cell's pattern of gene expression; and that the cohort of genes available for regulation is dependent upon the developmental history of the cell. Extrapolating these truths to the whole organism is a challenge that has been met by an increasing number of investigators . The wealth of information that molecular and cell biology has provided us with is now being integrated into an understanding of whole t- sues, organs, and organisms. Without such an integration, the molecular information will be nothing more than a confusing catalog of sequences and structures. Central to this project will be the app- cation of the powerful new techniques described in Transgenesis Techniques: Principles and Protocols . | ||
| 700 | 1 |
_aCarter, David A. _eautor _4aut _4http://id.loc.gov/vocabulary/relators/aut |
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| 776 | 0 | 8 |
_iPrinted edition: _z9780896032453 |
| 776 | 0 | 8 |
_iPrinted edition: _z9781489940254 |
| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1385/0896032450 _z(usuarios Universidad Europea de Valencia) |
| 942 |
_2lcc _cLE |
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| 988 | _aSpringer_Protocols_1993 | ||
| 999 |
_c235746 _d235746 |
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