Transmembrane voltage potential of somatic cells controls oncogene-mediated tumorigenesis at long-range.
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On Having No Head: Cognition throughout Biological SystemsAn oncologist׳s friend: How Xenopus contributes to cancer researchRe-membering the body: applications of computational neuroscience to the top-down control of regeneration of limbs and other complex organsMolecular bioelectricity: how endogenous voltage potentials control cell behavior and instruct pattern regulation in vivo.Long-range gap junctional signaling controls oncogene-mediated tumorigenesis in Xenopus laevis embryos.Cancer as a mitochondrial metabolic disease.Bioelectrical regulation of cell cycle and the planarian model system.Genome-wide analysis reveals conserved transcriptional responses downstream of resting potential change in Xenopus embryos, axolotl regeneration, and human mesenchymal cell differentiation.Physiological controls of large-scale patterning in planarian regeneration: a molecular and computational perspective on growth and form.Exploring Instructive Physiological Signaling with the Bioelectric Tissue Simulation Engine.Use of genetically encoded, light-gated ion translocators to control tumorigenesis.Gap junctional signaling in pattern regulation: Physiological network connectivity instructs growth and form.Gap Junctional Blockade Stochastically Induces Different Species-Specific Head Anatomies in Genetically Wild-Type Girardia dorotocephala Flatworms.Physiological inputs regulate species-specific anatomy during embryogenesis and regeneration.Bioelectric signalling via potassium channels: a mechanism for craniofacial dysmorphogenesis in KCNJ2-associated Andersen-Tawil Syndrome.The brain is required for normal muscle and nerve patterning during early Xenopus development.Multiscale memory and bioelectric error correction in the cytoplasm-cytoskeleton-membrane system.Bioelectric signaling in regeneration: Mechanisms of ionic controls of growth and form.HCN2 Rescues brain defects by enforcing endogenous voltage pre-patterns.Booting up the organism during development: Pre-behavioral functions of the vertebrate brain in guiding body morphogenesis.The Bioelectric Code: Reprogramming Cancer and Aging From the Interface of Mechanical and Chemical Microenvironments.Involvement of AMP-activated Protein Kinase (AMPK) in Regulation of Cell Membrane Potential in a Gastric Cancer Cell Line.Bioelectric regulation of innate immune system function in regenerating and intact Xenopus laevis.Intercellular Connectivity and Multicellular Bioelectric Oscillations in Nonexcitable Cells: A Biophysical Model
P2860
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P2860
Transmembrane voltage potential of somatic cells controls oncogene-mediated tumorigenesis at long-range.
description
2014 nî lūn-bûn
@nan
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
2014年论文
@zh
2014年论文
@zh-cn
name
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@en
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@nl
type
label
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@en
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@nl
prefLabel
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@en
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@nl
P2860
P356
P1433
P1476
Transmembrane voltage potentia ...... d tumorigenesis at long-range.
@en
P2093
Brook T Chernet
Michael Levin
P2860
P304
P356
10.18632/ONCOTARGET.1935
P407
P577
2014-05-01T00:00:00Z