scholarly article | Q13442814 |
P356 | DOI | 10.1074/JBC.C600120200 |
P698 | PubMed publication ID | 16926163 |
P2093 | author name string | Yi-Jang Lee | |
Qun Lin | |||
Zhong Yun | |||
P2860 | cites work | Pref-1, a protein containing EGF-like repeats, inhibits adipocyte differentiation | Q28269495 |
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Progenitor cell trafficking is regulated by hypoxic gradients through HIF-1 induction of SDF-1 | Q29615241 | ||
Low O2 tensions and the prevention of differentiation of hES cells | Q33932268 | ||
Mice lacking paternally expressed Pref-1/Dlk1 display growth retardation and accelerated adiposity | Q34284044 | ||
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Deconstructing stemness | Q36204218 | ||
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EPAS1 promotes adipose differentiation in 3T3-L1 cells | Q40534492 | ||
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Transcriptional repression of pref-1 by glucocorticoids promotes 3T3-L1 adipocyte differentiation | Q41647338 | ||
Hypoxia dysregulates the production of adiponectin and plasminogen activator inhibitor-1 independent of reactive oxygen species in adipocytes | Q42805950 | ||
Inhibition of PPAR gamma 2 gene expression by the HIF-1-regulated gene DEC1/Stra13: a mechanism for regulation of adipogenesis by hypoxia | Q42817965 | ||
Function of GATA transcription factors in preadipocyte-adipocyte transition | Q42835284 | ||
Hypoxia-inducible factor-dependent histone deacetylase activity determines stem cell fate in the placenta | Q46081787 | ||
P433 | issue | 41 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | hypoxia | Q105688 |
P304 | page(s) | 30678-30683 | |
P577 | publication date | 2006-08-22 | |
P1433 | published in | Journal of Biological Chemistry | Q867727 |
P1476 | title | Differentiation arrest by hypoxia | |
P478 | volume | 281 |
Q36951488 | "Destemming" cancer stem cells |
Q34974334 | A role of miR-27 in the regulation of adipogenesis |
Q37457670 | Activation of hypoxia-inducible factor-2 in adipocytes results in pathological cardiac hypertrophy |
Q35152524 | An Aggressive Hypoxia Related Subpopulation of Melanoma Cells is TRP-2 Negative. |
Q38202671 | An update on niche composition, signaling and functional regulation of the adipose-derived stem cells |
Q34347866 | Anti-inflammatory effects of Rubus coreanus Miquel through inhibition of NF-κB and MAP Kinase |
Q91622832 | BRCA1 regulates the cancer stem cell fate of breast cancer cells in the context of hypoxia and histone deacetylase inhibitors |
Q38180398 | Cellular and molecular stimulation of adipose-derived stem cells under hypoxia |
Q55070294 | Chemical Activation of the Hypoxia-Inducible Factor Reversibly Reduces Tendon Stem Cell Proliferation, Inhibits Their Differentiation, and Maintains Cell Undifferentiation. |
Q39367734 | Chemopreventive effects of Rubus coreanus Miquel on prostate cancer |
Q37295213 | Chromosomal variability of human mesenchymal stem cells cultured under hypoxic conditions |
Q37585450 | Comparison of human adipose-derived stem cells isolated from subcutaneous, omental, and intrathoracic adipose tissue depots for regenerative applications |
Q37212195 | Constitutive stabilization of hypoxia-inducible factor alpha selectively promotes the self-renewal of mesenchymal progenitors and maintains mesenchymal stromal cells in an undifferentiated state |
Q39933539 | Continuous Expression of HIF-1α in Neural Stem/Progenitor Cells |
Q35624893 | DLK1, delta-like 1 homolog (Drosophila), regulates tumor cell differentiation in vivo |
Q35053481 | Differential hypoxic regulation of hypoxia-inducible factors 1alpha and 2alpha |
Q33950008 | Differential roles of hypoxia inducible factor subunits in multipotential stromal cells under hypoxic condition |
Q41603731 | Differentiation of 3T3-L1 preadipocytes is inhibited under a modified ceiling culture |
Q36719115 | Differentiation of human adipocytes at physiological oxygen levels results in increased adiponectin secretion and isoproterenol-stimulated lipolysis |
Q24618089 | Differentiation of human embryonic stem cells and induced pluripotent stem cells to cardiomyocytes: a methods overview |
Q37834458 | Ductal plates in hepatic ductular reactions. Hypothesis and implications. I. Types of ductular reaction reconsidered |
Q37836470 | Ductal plates in hepatic ductular reactions. Hypothesis and implications. II. Ontogenic liver growth in childhood |
Q33725554 | Early Surgical Decompression Restores Neurovascular Blood Flow and Ischemic Parameters in an in Vivo Animal Model of Nerve Compression Injury |
Q41140879 | Echinomycin inhibits adipogenesis in 3T3-L1 cells in a HIF-independent manner. |
Q38754669 | Effect of hypoxia on human adipose-derived mesenchymal stem cells and its potential clinical applications. |
Q26768456 | Energy Metabolism Plays a Critical Role in Stem Cell Maintenance and Differentiation |
Q39030766 | Environmental preconditioning rejuvenates adult stem cells' proliferation and chondrogenic potential |
Q34781591 | Extracellular matrix genes as hypoxia-inducible targets |
Q38342415 | Extramedullary hematopoiesis (EMH) in laboratory animals: offering an insight into stem cell research. |
Q38868136 | HIF-1α-induced microRNA-210 reduces hypoxia-induced osteoblast MG-63 cell apoptosis |
Q42749448 | HIF-2: the missing link between obesity and cardiomyopathy |
Q33713321 | HIF1α and pancreatic β-cell development. |
Q37575407 | Hepatocyte growth factor regulates neovascularization in developing fat pads |
Q40578167 | High-Density Lipoprotein Binds to Mycobacterium avium and Affects the Infection of THP-1 Macrophages |
Q41877149 | Hypoxia Alters the Expression of Dipeptidyl Peptidase 4 and Induces Developmental Remodeling of Human Preadipocytes |
Q50053882 | Hypoxia Enhances Differentiation of Adipose Tissue-Derived Stem Cells toward the Smooth Muscle Phenotype. |
Q51608534 | Hypoxia Promotes the Inflammatory Response and Stemness Features in Visceral Fat Stem Cells From Obese Subjects. |
Q38072900 | Hypoxia and adipose tissue function and dysfunction in obesity. |
Q34986265 | Hypoxia and radiation therapy: past history, ongoing research, and future promise |
Q33705149 | Hypoxia and regulation of cancer cell stemness |
Q38782787 | Hypoxia enhances tenocyte differentiation of adipose-derived mesenchymal stem cells by inducing hypoxia-inducible factor-1α in a co-culture system |
Q37132401 | Hypoxia in adipose tissue: a basis for the dysregulation of tissue function in obesity? |
Q39139799 | Hypoxia induces re-entry of committed cells into pluripotency |
Q38851280 | Hypoxia promotes AMP-activated protein kinase (AMPK) and induces apoptosis in mouse osteoblasts. |
Q41812685 | Hypoxia, HIFs and bone development |
Q38161730 | Hypoxia-inducible factors: mediators of cancer progression; prognostic and therapeutic targets in soft tissue sarcomas. |
Q33688386 | Hypoxia-regulated delta-like 1 homologue enhances cancer cell stemness and tumorigenicity |
Q30423548 | Hypoxic culture and in vivo inflammatory environments affect the assumption of pericyte characteristics by human adipose and bone marrow progenitor cells |
Q33670820 | Hypoxic tumor microenvironment and cancer cell differentiation |
Q38659248 | ICRP Publication 131: Stem Cell Biology with Respect to Carcinogenesis Aspects of Radiological Protection |
Q36799983 | Impact of the hypoxic tumor microenvironment on the regulation of cancer stem cell characteristics |
Q40061190 | In vitro Culture of Naïve Human Bone Marrow Mesenchymal Stem Cells: A Stemness Based Approach |
Q37406275 | Inhaled carbon monoxide reduces leukocytosis in a murine model of sickle cell disease |
Q33998448 | Inhibition of adipogenesis by Tempol in 3T3-L1 cells |
Q36882755 | Low oxygen tension enhances proliferation and maintains stemness of adipose tissue-derived stromal cells. |
Q42696954 | Low oxygen tension positively influences cardiomyocyte progenitor cell function |
Q35173866 | Many mechanisms mediating mobilization: an alliterative review |
Q38393672 | Mass spectrometry analysis of adipose-derived stem cells reveals a significant effect of hypoxia on pathways regulating extracellular matrix. |
Q33862436 | Metabolic oxidation regulates embryonic stem cell differentiation |
Q38287785 | Metabolic regulation of mesenchymal stem cell in expansion and therapeutic application |
Q38041206 | Mimicking the functional niche of adipose-derived stem cells for regenerative medicine. |
Q34009248 | Mobilisation of hematopoietic CD34+ precursor cells in patients with acute stroke is safe--results of an open-labeled non randomized phase I/II trial |
Q35579264 | Mobilization of hematopoietic stem cells from the bone marrow niche to the blood compartment |
Q45344125 | Mulberry leaf extract inhibits cancer cell stemness in neuroblastoma |
Q35835941 | Noninvasive Oxygen Monitoring in Three-Dimensional Tissue Cultures Under Static and Dynamic Culture Conditions |
Q24310736 | Notch3 signaling promotes the development of pulmonary arterial hypertension |
Q37321843 | Oxygen and Cell Fate Decisions. |
Q33688598 | Oxygen tension regulates pancreatic beta-cell differentiation through hypoxia-inducible factor 1alpha |
Q41631623 | Peroxisome Proliferator-Activated Receptor Gamma in Obesity and Colorectal Cancer: the Role of Epigenetics |
Q37730939 | Posttranslational modifications of collagens as targets of hypoxia and Hif-1alpha in endochondral bone development |
Q59135959 | Pre-culturing human adipose tissue mesenchymal stem cells under hypoxia increases their adipogenic and osteogenic differentiation potentials |
Q60706839 | Primary Sensory Neuron Addition in the Adult Rat Trigeminal Ganglion: Evidence for Neural Crest Glio-Neuronal Precursor Maturation |
Q49597978 | Proliferation, Metabolic Activity, and Adipogenic Differentiation of Human Preadipocytes Exposed to 2 Surfactants In Vitro |
Q37080282 | Prostaglandin F2alpha induces the normoxic activation of the hypoxia-inducible factor-1 transcription factor in differentiating 3T3-L1 preadipocytes: Potential role in the regulation of adipogenesis |
Q34979390 | Regulation of HIF-1{alpha} activity in adipose tissue by obesity-associated factors: adipogenesis, insulin, and hypoxia |
Q43375908 | Regulation of Osteogenic Differentiation of Placental-Derived Mesenchymal Stem Cells by Insulin-Like Growth Factors and Low Oxygen Tension. |
Q38989143 | Regulation of obesity and insulin resistance by hypoxia-inducible factors |
Q37603358 | Responses of adipose-derived stem cells during hypoxia: enhanced skin-regenerative potential |
Q92874495 | Role of the Microenvironment in Regulating Normal and Cancer Stem Cell Activity: Implications for Breast Cancer Progression and Therapy Response |
Q52726988 | Short-term hypoxia improves early cardiac progenitor cell function in vitro. |
Q38410928 | The Hypoxia-Inducible Factor Pathway in Adipocytes: The Role of HIF-2 in Adipose Inflammation and Hypertrophic Cardiomyopathy |
Q34027531 | The evolving biology of small molecules: controlling cell fate and identity |
Q52671376 | The hypoxic tumor microenvironment in vivo selects the cancer stem cell fate of breast cancer cells. |
Q38109377 | The molecular composition of the metastatic niche |
Q37599071 | The quinoxaline di-N-oxide DCQ blocks breast cancer metastasis in vitro and in vivo by targeting the hypoxia inducible factor-1 pathway |
Q37676615 | The role of hypoxia in stem cell differentiation and therapeutics |
Q36787285 | The role of oxygen during fracture healing |
Q35957756 | Three-Dimensional Modelling inside a Differential Pressure Laminar Flow Bioreactor Filled with Porous Media |
Q38965194 | Unripe Rubus coreanus Miquel suppresses migration and invasion of human prostate cancer cells by reducing matrix metalloproteinase expression |
Q36431667 | Up-regulated miR-145 expression inhibits porcine preadipocytes differentiation by targeting IRS1. |
Q37968614 | miR-210: the master hypoxamir |
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