Search results for the GEO ID: GSE5841
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GSM135756
GPL1261
1 mt E11.5 heart skNAC knockout heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
GSM135757
GPL1261
26 mt E11.5 heart skNAC knockout heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
GSM135758
GPL1261
66 mt E11.5 heart skNAC knockout heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
GSM135759
GPL1261
13 wt E11.5 heart wild-type heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
GSM135760
GPL1261
23 wt E11.5 heart wild-type heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
GSM135761
GPL1261
57 wt E11.5 heart wild-type heart strain: 129SvEv developmental stage: E11.5 tissue: ventricle Targeted deletion of skNAC in mice rsulted in embryonic lethality with cardiac defects by E12.5. In order to investigate the molecular mechanism of the cardiac defect, we compared gene expression profiles of the knockout heart and wild type heart.
 
 
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