<?xml version="1.0" encoding="ASCII"?>
<biogps><data><item><item key="name">Shifted Metabolic Bias in Livers of Mice Lacking Hepatocytic Thioredoxin Reductase-1 Protects Against Acetaminophen Toxicity</item><item key="sample_count">12</item><item key="tags"><item>liver</item></item><item key="slug">shifted-metabolic-bias-in-livers-of-mice-lacking-h</item><item key="geo_gse_id">E-GEOD-37874</item><item key="species">mouse</item><item key="id">8624</item><item key="factor_count">2</item></item><item><item key="name">CSF-1R inhibition alters macrophage polarization and blocks gliomagenesis</item><item key="sample_count">16</item><item key="tags"><item>brain</item><item>cell</item><item>glioblastoma multiforme</item><item>glioma</item><item>macrophage</item><item>primary brain tumor</item></item><item key="slug">csf-1r-inhibition-alters-macrophage-polarization-a</item><item key="geo_gse_id">E-GEOD-37475</item><item key="species">mouse</item><item key="id">8623</item><item key="factor_count">4</item></item><item><item key="name">Identification of stem cell populations in sweat glands and ducts: roles in homeostasis and wound repair</item><item key="sample_count">10</item><item key="tags"><item>body</item><item>cell</item><item>duct</item><item>gland</item><item>luminal</item><item>skin</item><item>stem cell</item><item>sweat gland</item></item><item key="slug">identification-of-stem-cell-populations-in-sweat-g</item><item key="geo_gse_id">E-GEOD-37274</item><item key="species">mouse</item><item key="id">8622</item><item key="factor_count">1</item></item><item><item key="name">Transcription profiling of human hematopoietic stem/progenitor cells treated with TGF-beta1 to idetntify its target genes (reference series)</item><item key="sample_count">28</item><item key="tags"><item>cancer</item><item>cell</item><item>leukemia</item><item>macrophage</item><item>protein</item><item>stem cell</item></item><item key="slug">transcription-profiling-of-human-hematopoietic-s-5</item><item key="geo_gse_id">E-GEOD-3725</item><item key="species">mouse</item><item key="id">8621</item><item key="factor_count">0</item></item><item><item key="name">Transcription profiling of human HSC enriched population, common myeloid progenitors, granulocyte macrophage progenitors, megakaryocyte progenitors, and leukemia stem cells (leukemic-GMP) reveals MLL-AF9 transforms committed progenitors to leukemia stem cells by activation of a stem cell program (expt 2)</item><item key="sample_count">22</item><item key="tags"><item>cancer</item><item>cell</item><item>leukemia</item><item>macrophage</item><item>megakaryocyte</item><item>protein</item><item>stem cell</item></item><item key="slug">transcription-profiling-of-human-hsc-enriched-popu</item><item key="geo_gse_id">E-GEOD-3722</item><item key="species">mouse</item><item key="id">8620</item><item key="factor_count">0</item></item><item><item key="name">Comparison expression data from wild-type and NFATc1-deficient osteoclasts</item><item key="sample_count">4</item><item key="tags"><item>bone</item><item>bone marrow</item><item>osteoclast</item><item>osteopetrosis</item></item><item key="slug">comparison-expression-data-from-wild-type-and-nfat</item><item key="geo_gse_id">E-GEOD-37219</item><item key="species">mouse</item><item key="id">8619</item><item key="factor_count">1</item></item><item><item key="name">Transcription profiling of isolated granulocyte macrophage progenitors were incubated with a retrovirus that expressed either GFP or MLL-AF9 and GFP reveals MLL-AF9 transforms committed progenitors to leukemia stem cells by activation of a stem cell program (expt 1)</item><item key="sample_count">6</item><item key="tags"><item>cancer</item><item>cell</item><item>leukemia</item><item>macrophage</item><item>protein</item><item>stem cell</item></item><item key="slug">transcription-profiling-of-isolated-granulocyte-ma</item><item key="geo_gse_id">E-GEOD-3721</item><item key="species">mouse</item><item key="id">8618</item><item key="factor_count">0</item></item><item><item key="name">Hematopoietic stem cells lacking Ott1 display aspects associated with aging and are unable to maintain quiescence during proliferative stress</item><item key="sample_count">6</item><item key="tags"><item>bone</item><item>bone marrow</item><item>cell</item><item>compartment</item><item>heart</item><item>leukemia</item><item>megakaryocyte</item><item>placenta</item><item>spleen</item><item>stem cell</item></item><item key="slug">hematopoietic-stem-cells-lacking-ott1-display-aspe</item><item key="geo_gse_id">E-GEOD-37047</item><item key="species">mouse</item><item key="id">8617</item><item key="factor_count">1</item></item><item><item key="name">Expression data from wild-type mice starved as compared to wild-type control mice</item><item key="sample_count">4</item><item key="tags"><item>liver</item></item><item key="slug">expression-data-from-wild-type-mice-starved-as-com</item><item key="geo_gse_id">E-GEOD-36510</item><item key="species">mouse</item><item key="id">8615</item><item key="factor_count">1</item></item><item><item key="name">Expression data from region-specific postnatal astrocytes</item><item key="sample_count">4</item><item key="tags"><item>astrocyte</item><item>brain</item><item>cell</item><item>hippocampus</item><item>neural stem cell</item><item>olfactory bulb</item><item>stem cell</item><item>ventral</item></item><item key="slug">expression-data-from-region-specific-postnatal-ast</item><item key="geo_gse_id">E-GEOD-36456</item><item key="species">mouse</item><item key="id">8614</item><item key="factor_count">1</item></item></data></biogps>
