Pages that link to "Q36379506"
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The following pages link to Hypoxic priming of mESCs accelerates vascular-lineage differentiation through HIF1-mediated inverse regulation of Oct4 and VEGF. (Q36379506):
Displaying 28 items.
- The Interplay of Reactive Oxygen Species, Hypoxia, Inflammation, and Sirtuins in Cancer Initiation and Progression (Q26769965) (← links)
- Comparative study of efficacy of dopaminergic neuron differentiation between embryonic stem cell and protein-based induced pluripotent stem cell (Q27333225) (← links)
- Strategy to Prime the Host and Cells to Augment Therapeutic Efficacy of Progenitor Cells for Patients with Myocardial Infarction (Q28077893) (← links)
- Blocking autocrine VEGF signaling by sunitinib, an anti-cancer drug, promotes embryonic stem cell self-renewal and somatic cell reprogramming (Q34124396) (← links)
- Hypoxia enhances differentiation of mouse embryonic stem cells into definitive endoderm and distal lung cells. (Q35098686) (← links)
- MicroRNA-26a induced by hypoxia targets HDAC6 in myogenic differentiation of embryonic stem cells (Q35131168) (← links)
- Murine Embryonic Stem Cell Plasticity Is Regulated through Klf5 and Maintained by Metalloproteinase MMP1 and Hypoxia (Q35885664) (← links)
- Multifactorial Optimizations for Directing Endothelial Fate from Stem Cells (Q36209680) (← links)
- Mitochondrial pyruvate dehydrogenase phosphatase 1 regulates the early differentiation of cardiomyocytes from mouse embryonic stem cells (Q37223770) (← links)
- Role of Mir-155 in Controlling HIF-1α Level and Promoting Endothelial Cell Maturation (Q37330414) (← links)
- Low oxygen tension enhances endothelial fate of human pluripotent stem cells (Q37689156) (← links)
- Modulators of HIF1α and NFkB in Cancer Treatment: Is it a Rational Approach for Controlling Malignant Progression? (Q38081415) (← links)
- The role of hypoxia in stem cell potency and differentiation (Q38154615) (← links)
- High oxygen condition facilitates the differentiation of mouse and human pluripotent stem cells into pancreatic progenitors and insulin-producing cells (Q38608910) (← links)
- Metabolic suppression during mesodermal differentiation of embryonic stem cells identified by single-cell comprehensive gene expression analysis. (Q38849223) (← links)
- Embryonic Stem Cell Differentiation to Functional Arterial Endothelial Cells through Sequential Activation of ETV2 and NOTCH1 Signaling by HIF1α. (Q41061677) (← links)
- Low oxygen tension enhances the generation of lung progenitor cells from mouse embryonic and induced pluripotent stem cells. (Q42123813) (← links)
- Potentiated therapeutic angiogenesis by primed human mesenchymal stem cells in a mouse model of hindlimb ischemia (Q44333476) (← links)
- Activated platelet supernatant can augment the angiogenic potential of human peripheral blood stem cells mobilized from bone marrow by G-CSF. (Q44954168) (← links)
- Reactive oxygen species regulate the quiescence of CD34-positive cells derived from human embryonic stem cells (Q46903669) (← links)
- Neural Differentiation Is Inhibited through HIF1α/β-Catenin Signaling in Embryoid Bodies (Q49546060) (← links)
- Hypoxia-enhanced Blood-Brain Barrier Chip recapitulates human barrier function and shuttling of drugs and antibodies. (Q64900124) (← links)
- Lung Microvascular Niche, Repair, and Engineering (Q90181007) (← links)
- The MicroRNA-92a/Sp1/MyoD Axis Regulates Hypoxic Stimulation of Myogenic Lineage Differentiation in Mouse Embryonic Stem Cells (Q90670989) (← links)
- Hypoxia Signaling Pathway in Stem Cell Regulation: Good and Evil (Q91643770) (← links)
- Adipose tissue loss and lipodystrophy in xylosyltransferase II deficient mice (Q91691025) (← links)
- Strategies for derivation of endothelial lineages from human stem cells (Q91735295) (← links)
- Hypoxia induces an endometrial cancer stem-like cell phenotype via HIF-dependent demethylation of SOX2 mRNA (Q99350020) (← links)