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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-009.mrc:85473312:6138
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-009.mrc:85473312:6138?format=raw

LEADER: 06138mam a2200421 a 4500
001 4066176
005 20221027030508.0
008 010515s2002 njua b 001 0 eng
010 $a 2001026459
020 $a0896038815 (alk. paper)
035 $a(OCoLC)ocm46992161
035 $9ATW7430HS
035 $a(NNC)4066176
035 $a4066176
040 $aDLC$cDLC$dNNC-M$dOrLoB-B
042 $apcc
050 00 $aQH440.5$b.E43 2002
082 00 $a612/.0181$221
245 00 $aEmbryonic stem cells :$bmethods and protocols /$cedited by Kursad Turksen.
260 $aTotowa, NJ :$bHumana Press,$c2002.
300 $axvi, 499 pages :$billustrations ;$c26 cm.
336 $atext$btxt$2rdacontent
337 $aunmediated$bn$2rdamedia
490 1 $aMethods in molecular biology ;$v185
504 $aIncludes bibliographical references and index.
505 00 $g1.$tMethods for the Isolation and Maintenance of Murine Embryonic Stem Cells /$rMarsha L. Roach and John D. McNeish --$g2.$tThe Use of a Chemically Defined Media for the Analyses of Early Development in ES Cells and Mouse Embryos /$rGabriele Proetzel and Michael V. Wiles --$g3.$tAnalysis of the Cell Cycle in Mouse Embryonic Stem Cells /$rPierre Savatier, Helene Lapillonne and Ludmila Jirmanova /$r[et al.] --$g4.$tMurine Embryonic Stem Cells as a Model for Stress Proteins and Apoptosis During Differentiation /$rAndre-Patrick Arrigo and Patrick Mehlen --$g5.$tEffects of Altered Gene Expression on ES Cell Differentiation /$rYong Fan and J. Richard Chaillet --$g6.$tHypoxic Gene Regulation in Differentiating ES Cells /$rDavid M. Adelman and M. Celeste Simon --$g7.$tRegulation of Gap Junction Protein (Connexin) Genes and Function in Differentiating ES Cells /$rMasahito Oyamada, Yumiko Oyamada and Tomoyuki Kaneko /$r[et al.] --
505 80 $g8.$tEmbryonic Stem Cell Differentiation as a Model to Study Hematopoietic and Endothelial Cell Development /$rStuart T. Fraser, Minetaro Ogawa and Satomi Nishikawa /$r[et al.] --$g9.$tAnalysis of Bcr-Abl Function Using an in Vitro Embryonic Stem Cell Differentiation System /$rTakumi Era, Stephane Wong and Owen N. Witte --$g10.$tEmbryonic Stem Cells as a Model for Studying Osteoclast Lineage Development /$rToshiyuki Yamane, Takahiro Kunisada and Shin-Ichi Hayashi --$g11.$tDifferentiation of Embryonic Stem Cells as a Model to Study Gene Function During the Development of Adipose Cells /$rChristian Dani --$g12.$tEmbryonic Stem Cell Differentiation and the Vascular Lineage /$rVictoria L. Bautch --$g13.$tEmbryonic Stem Cells as a Model to Study Cardiac, Skeletal Muscle, and Vascular Smooth Muscle Cell Differentiation /$rAnna M. Wobus, Kaomei Guan and Huang-Tian Yang /$r[et al.] --
505 80 $g14.$tCardiomyocyte Enrichment in Differentiating ES Cell Cultures: Strategies and Applications /$rKishore B. S. Pasumarthi and Loren J. Field --$g15.$tEmbryonic Stem Cells as a Model for the Physiological Analysis of the Cardiovascular System /$rJurgen Hescheler, Maria Wartenberg and Bernd K. Fleischmann /$r[et al.] --$g16.$tIsolation of Lineage-Restricted Neural Precursors from Cultured ES Cells /$rTahmina Mujtaba and Mahendra S. Rao --$g17.$tLineage Selection for Generation and Amplification of Neural Precursor Cells /$rMeng Li --$g18.$tSelective Neural Induction from ES Cells by Stromal Cell-Derived Inducing Activity and Its Potential Therapeutic Application in Parkinson's Disease /$rHiroshi Kawasaki, Kenji Mizuseki and Yoshiki Sasai --$g19.$tEpidermal Lineage /$rTammy-Claire Troy and Kursad Turksen --$g20.$tES Cell Differentiation Into the Hair Follicle Lineage in Vitro /$rTammy-Claire Troy and Kursad Turksen --
505 80 $g21.$tEmbryonic Stem Cells as a Model for Studying Melanocyte Development /$rToshiyuki Yamane, Shin-Ichi Hayashi and Takahiro Kunisada --$g22.$tUsing Progenitor Cells and Gene Chips to Define Genetic Pathways /$rS. Steven Potter, M. Todd Valeruis and Eric W. Brunskill --$g23.$tES Cell-Mediated Conditional Transgenesis /$rMarina Gertsenstein, Corrinne Lobe and Andras Nagy --$g24.$tSwitching on Lineage Tracers Using Site-Specific Recombination /$rSusan M. Dymecki, Carolyn I. Rodriguez and Rajeshwar B. Awatramani --$g25.$tFrom ES Cells to Mice: The Gene Trap Approach /$rFrancesco Cecconi and Peter Gruss --$g26.$tFunctional Genomics by Gene-Trapping in Embryonic Stem Cells /$rThomas Floss and Wolfgang Wurst --$g27.$tPhage-Displayed Antibodies to Detect Cell Markers /$rJun Lu and Steven R. Sloan --$g28.$tGene Transfer Using Targeted Filamentous Bacteriophage /$rDavid Larocca, Kristen Jensen-Pergakes and Michael A. Burg /$r[et al.] --
505 80 $g29.$tSingle-Cell PCR Methods for Studying Stem Cells and Progenitors /$rJane E. Aubin, Fina Liu and G. Antonio Candeliere --$g30.$tNonradioactive Labeling and Detection of mRNAs Hybridized onto Nucleic Acid cDNA Arrays /$rThorsten Hoevel and Manfred Kubbies --$g31.$tExpression Profiling Using Quantitative Hybridization on Macroarrays /$rGenevieve Pietu and Charles Decraene --$g32.$tIsolation of Antigen-Specific Intracellular Antibody Fragments as Single Chain Fv for Use in Mammalian Cells /$rEric Tse, Grace Chung and Terence H. Rabbitts --$g33.$tDetection and Visualization of Protein Interactions with Protein Fragment Complementation Assays /$rIngrid Remy, Andre Galarneau and Stephen W. Michnick --$g34.$tDirect Selection of cDNAs by Phage Display /$rReto Crameri, Gernot Achatz and Michael Weichel /$r[et al.] --$g35.$tScreening for Protein-Protein Interactions in the Yeast Two-Hybrid System /$rR. Daniel Gletz and Robin A. Woods.
650 0 $aEmbryonic stem cells$vLaboratory manuals.
650 2 $aStem Cells.$0https://id.nlm.nih.gov/mesh/D013234
650 2 $aEmbryonic Induction.$0https://id.nlm.nih.gov/mesh/D004627
650 2 $aMolecular Biology.$0https://id.nlm.nih.gov/mesh/D008967
655 2 $aLaboratory Manual.$0https://id.nlm.nih.gov/mesh/D020484
700 1 $aTurksen, Kursad.$0http://id.loc.gov/authorities/names/n2001009018
830 0 $aMethods in molecular biology (Clifton, N.J.) ;$vv. 185.$0http://id.loc.gov/authorities/names/n92002874
852 00 $boff,hsl$hQH506$i.M56 2002 v.185