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Brain Research|August 6, 1993
Hyperammonemia and hepatic encephalopathy stimulate rat cerebral synaptic mitochondrial glutamate dehydrogenase activity specifically in the direction of glutamate oxidationL Faff-Michalak, J AlbrechtMolecular and Chemical Neuropathology|April 1, 1993
Changes in the cytoplasmic (lactate dehydrogenase) and plasma membrane (acetylcholinesterase) marker enzymes in the synaptic and nonsynaptic mitochondria derived from rats with moderate hyperammonemiaL Faff-Michalak, J AlbrechtNeurochemical Research|February 1, 1993
The two catalytic components of the 2-oxoglutarate dehydrogenase complex in rat cerebral synaptic and nonsynaptic mitochondria: comparison of the response to in vitro treatment with ammonia, hyperammonemia, and hepatic encephalopathyL Faff-Michalak, J AlbrechtMetabolic Brain Disease|December 1, 1991
Aspartate aminotransferase, malate dehydrogenase, and pyruvate carboxylase activities in rat cerebral synaptic and nonsynaptic mitochondria: effects of in vitro treatment with ammonia, hyperammonemia and hepatic encephalopathyL Faff-Michalak, J AlbrechtNeurochemistry International|August 1, 1997
Two modes of stimulation by ammonia of taurine release from cultured rabbit Müller cellsL Faff, A Reichenbach, J AlbrechtActa Neurobiologiae Experimentalis|January 1, 1996
Rat cerebral mitochondrial glutaminase activity is unaffected by moderate hyperammonemia in two modelsJ Albrecht, W Hilgier, L FaffJournal of Neuroscience Research|October 15, 1996
Ammonia-induced taurine release from cultured rabbit Müller cells is an osmoresistant process mediated by intracellular accumulation of cyclic AMPL Faff, A Reichenbach, J AlbrechtActa Neurobiologiae Experimentalis|January 1, 1991
Effects of acute hepatic encephalopathy and in vitro treatment with ammonia on glutamate oxidation in bulk-isolated astrocytes and mitochondria of the rat brainU Wysmyk-Cybula, L Faff-Michalak, J AlbrechtGlia|February 1, 1994
K(+)-, hypoosmolarity-, and NH4(+)-induced taurine release from cultured rabbit Müller cells: role of Na+ and Cl- ions and relation to cell volume changesL Faff-Michalak, A Reichenbach, D Dettmer, et al.Brain Research|January 8, 2000
Extracellular acidification decreases the basal motility of cultured mouse microglia via the rearrangement of the actin cytoskeletonL Faff, C NoltePageof 50