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The Lin28/let-7 axis regulates glucose metabolismLin28a transgenic mice manifest size and puberty phenotypes identified in human genetic association studiesLin28: primal regulator of growth and metabolism in stem cellsLin28 enhances tissue repair by reprogramming cellular metabolismMapping the Pairwise Choices Leading from Pluripotency to Human Bone, Heart, and Other Mesoderm Cell Types.Conserved regulation of p53 network dosage by microRNA-125b occurs through evolving miRNA-target gene pairs.Stress from Nucleotide Depletion Activates the Transcriptional Regulator HEXIM1 to Suppress Melanoma.Glutamine supports pancreatic cancer growth through a KRAS-regulated metabolic pathway.Stem cell metabolism in tissue development and agingFetal deficiency of lin28 programs life-long aberrations in growth and glucose metabolism.Concise Review: Balancing Stem Cell Self-Renewal and Differentiation with PLZF.Proteomic and Metabolomic Characterization of a Mammalian Cellular Transition from Quiescence to Proliferation.Lin28 and let-7 in the Metabolic Physiology of Aging.Stem cell mitochondria during aging.Excessive fatty acid oxidation induces muscle atrophy in cancer cachexia.Molecular Targets of Ascochlorin and Its Derivatives for Cancer Therapy.Glycine decarboxylase activity drives non-small cell lung cancer tumor-initiating cells and tumorigenesis.MicroRNA-125b is a novel negative regulator of p53.Human pluripotent stem cells decouple respiration from energy production.Influence of threonine metabolism on S-adenosylmethionine and histone methylationOocyte Factors Suppress Mitochondrial Polynucleotide Phosphorylase to Remodel the Metabolome and Enhance Reprogramming.Metabolic Changes During Cancer Cachexia Pathogenesis.Polyurethane acrylates as effective substrates for sustained in vitro culture of human myotubes.Efficient RNA drug delivery using red blood cell extracellular vesicles.Metabolic switches linked to pluripotency and embryonic stem cell differentiationSIRT2 and glycolytic enzyme acetylation in pluripotent stem cellsOncofetal SALL4-Driven Tumorigenesis Is Highly Dependent on Oxidative Phosphorylation, Revealing Therapeutic OpportunitiesTelomere-dependent and telomere-independent roles of RAP1 in regulating human stem cell homeostasisAssessment of different strategies for scalable production and proliferation of human myoblastsCirculating factors associated with sarcopenia during ageing and after intensive lifestyle intervention
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description
researcher
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wetenschapper
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հետազոտող
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Ng Shyh-Chang
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P106
P1153
26432863200
P31
P496
0000-0003-3138-9525
P569
2000-01-01T00:00:00Z