Lasse Kristoffer Bak
Guest Researcher, Professor
Molecular and Cellular Pharmacology
Jagtvej 160
2100 København Ø
TG IV
Jagtvej 160
2100 København Ø
- Published
Neuron-glia interactions in glutamatergic neurotransmission: roles of oxidative and glycolytic adenosine triphosphate as energy source
Schousboe, Arne, Sickmann, H. M., Bak, Lasse Kristoffer, Schousboe, I., Jajo, F. S., Faek, S. A. A. & Waagepetersen, Helle S., 1 Dec 2011, In: Journal of Neuroscience Research. 89, 12, p. 1926-34 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Misconceptions regarding basic thermodynamics and enzyme kinetics have led to erroneous conclusions regarding the metabolic importance of lactate dehydrogenase isoenzyme expression
Bak, Lasse Kristoffer & Schousboe, Arne, Nov 2017, In: Journal of Neuroscience Research. 95, 11, p. 2098-2102 5 p.Research output: Contribution to journal › Review › Research › peer-review
- Published
Metabolism of [U-13C]glutamine and [U-13C]glutamate in isolated rat brain mitochondria suggests functional phosphate-activated glutaminase activity in matrix
Bak, Lasse Kristoffer, Zieminska, E., Waagepetersen, Helle S., Schousboe, Arne & Albrecht, J., 2008, In: Neurochemical Research. 33, 2, p. 273-278Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Metabolic mapping of astrocytes and neurons in culture using stable isotopes and gas chromatography-mass spectrometry (GC-MS)
Walls, Anne Byriel, Bak, Lasse Kristoffer, Sonnewald, U., Schousboe, Arne & Waagepetersen, Helle S., 1 Jan 2014, In: Neuromethods. 90, p. 73-105 33 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Metabolic fate of isoleucine in a rat model of hepatic encephalopathy and in cultured neural cells exposed to ammonia
Bak, Lasse Kristoffer, Iversen, P., Sørensen, M., Keiding, S., Vilstrup, H., Ott, P., Waagepetersen, Helle S. & Schousboe, Arne, 2009, In: Metabolic Brain Disease. 24, 1, p. 135-145Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Low cerebral energy metabolism in hepatic encephalopathy reflects low neuronal energy demand. Role of ammonia-induced increased GABAergic tone
Sorensen, M., Walls, Anne Byriel, Dam, G., Bak, Lasse Kristoffer, Andersen, Jens Velde, Ott, P., Vilstrup, H. & Schousboe, Arne, 2022, In: Analytical Biochemistry. 654, 4 p., 114766.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Low Cerebral Oxygen Consumption and Blood Flow in Patients With Cirrhosis and an Acute Episode of Hepatic Encephalopathy
Iversen, P., Bak, Lasse Kristoffer, Waagepetersen, Helle S., Vafaee, M. S., Borghammer, P., Mouridsen, K., Jensen, S. B., Vilstrup, H., Schousboe, Arne, Ott, P., Gjedde, Albert & Keiding, S., 2009, In: Gastroenterology. 136, 3, p. 863-871Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Isoform-selective regulation of glycogen phosphorylase by energy deprivation and phosphorylation in astrocytes
Müller, M. S., Pedersen, Sofie E., Walls, Anne Byriel, Waagepetersen, Helle S. & Bak, Lasse Kristoffer, Jan 2015, In: Glia. 63, 1, p. 154-62 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
- Published
Interorgan metabolism of ornithine phenylacetate (OP)-A novel strategy for treatment of hyperammonemia
Dadsetan, S., Sørensen, M., Bak, Lasse Kristoffer, Vilstrup, H., Ott, P., Schousboe, Arne, Jalan, R., Keiding, S. & Waagepetersen, Helle S., 2013, In: Biochemical Pharmacology. 85, 1, p. 115-23 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
ID: 1303653
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Patient iPSC-derived neurons for disease modeling of frontotemporal dementia with mutation in CHMP2B
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321
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Compartmentalised signalling-metabolism coupling in brain cells - putative drug targets for neurological diseases?
Research output: Contribution to journal › Conference abstract in journal › Research › peer-review
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195
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Inhibition of soluble adenylyl cyclase (SAC) causes a robust increase in glycolysis in cultured astrocytes
Research output: Contribution to conference › Poster › Research
Published