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zadetkov: 18
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  • The leak channel NALCN cont... The leak channel NALCN controls tonic firing and glycolytic sensitivity of substantia nigra pars reticulata neurons
    Lutas, Andrew; Lahmann, Carolina; Soumillon, Magali ... eLife, 05/2016, Letnik: 5
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    Certain neuron types fire spontaneously at high rates, an ability that is crucial for their function in brain circuits. The spontaneously active GABAergic neurons of the substantia nigra pars ...
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2.
  • Systemic Administration of ... Systemic Administration of Glibenclamide Fails to Achieve Therapeutic Levels in the Brain and Cerebrospinal Fluid of Rodents
    Lahmann, Carolina; Kramer, Holger B; Ashcroft, Frances M PloS one, 07/2015, Letnik: 10, Številka: 7
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    Activating mutations in the Kir6.2 (KCNJ11) subunit of the ATP-sensitive potassium channel cause neonatal diabetes (ND). Patients with severe mutations also suffer from neurological complications. ...
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3.
  • BAD and KATP channels regul... BAD and KATP channels regulate neuron excitability and epileptiform activity
    Martínez-François, Juan Ramón; Fernández-Agüera, María Carmen; Nathwani, Nidhi ... eLife, 01/2018, Letnik: 7
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    Brain metabolism can profoundly influence neuronal excitability. Mice with genetic deletion or alteration of Bad (BCL-2 agonist of cell death) exhibit altered brain-cell fuel metabolism, accompanied ...
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4.
  • Role of KATP Channels in Gl... Role of KATP Channels in Glucose-Regulated Glucagon Secretion and Impaired Counterregulation in Type 2 Diabetes
    Zhang, Quan; Ramracheya, Reshma; Lahmann, Carolina ... Cell metabolism, 12/2013, Letnik: 18, Številka: 6
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    Glucagon, secreted by pancreatic islet α cells, is the principal hyperglycemic hormone. In diabetes, glucagon secretion is not suppressed at high glucose, exacerbating the consequences of ...
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  • A mutation causing increase... A mutation causing increased KATP channel activity leads to reduced anxiety in mice
    Lahmann, Carolina; Clark, Rebecca H; Iberl, Michaela ... Physiology & behavior, 04/2014, Letnik: 129
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    Abstract Activating mutations in the Kir6.2 ( KCNJ11 ) subunit of the ATP-sensitive potassium channel cause neonatal diabetes. Many patients also suffer from neurological complications. By using mice ...
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8.
  • A Mouse Model of Human Hype... A Mouse Model of Human Hyperinsulinism Produced by the E1506K Mutation in the Sulphonylurea Receptor SUR1
    SHIMOMURA, Kenju; TUSA, Maija; USTINOV, Jarkko ... Diabetes (New York, N.Y.), 11/2013, Letnik: 62, Številka: 11
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    Loss-of-function mutations in the KATP channel genes KCNJ11 and ABCC8 cause neonatal hyperinsulinism in humans. Dominantly inherited mutations cause less severe disease, which may progress to glucose ...
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  • Neuronal Stimulation Trigge... Neuronal Stimulation Triggers Neuronal Glycolysis and Not Lactate Uptake
    Díaz-García, Carlos Manlio; Mongeon, Rebecca; Lahmann, Carolina ... Cell metabolism, 08/2017, Letnik: 26, Številka: 2
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    Proper brain function requires a substantial energy supply, up to 20% of whole-body energy in humans, and brain activation produces large dynamic variations in energy demand. While local increases in ...
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10.
  • Quantitative in vivo imagin... Quantitative in vivo imaging of neuronal glucose concentrations with a genetically encoded fluorescence lifetime sensor
    Díaz‐García, Carlos Manlio; Lahmann, Carolina; Martínez‐François, Juan Ramón ... Journal of neuroscience research, August 2019, Letnik: 97, Številka: 8
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    Glucose is an essential source of energy for the brain. Recently, the development of genetically encoded fluorescent biosensors has allowed real time visualization of glucose dynamics from individual ...
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zadetkov: 18

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