0000000000235697

AUTHOR

Alexander M. Herrmann

showing 7 related works from this author

The potassium channels TASK2 and TREK1 regulate functional differentiation of murine skeletal muscle cells.

2015

Two-pore domain potassium (K2P) channels influence basic cellular parameters such as resting membrane potential, cellular excitability, or intracellular Ca2+-concentration [Ca2+]i. While the physiological importance of K2P channels in different organ systems (e.g., heart, central nervous system, or immune system) has become increasingly clear over the last decade, their expression profile and functional role in skeletal muscle cells (SkMC) remain largely unknown. The mouse SkMC cell line C2C12, wild-type mouse muscle tissue, and primary mouse muscle cells (PMMs) were analyzed using quantitative PCR, Western blotting, and immunohistochemical stainings as well as functional analysis includin…

0301 basic medicinemedicine.medical_specialtyPhysiologyCellular differentiationMuscle Fibers SkeletalMedizinDown-RegulationBiologyCell LineMembrane Potentials03 medical and health sciencesMyoblast fusionMicePotassium Channels Tandem Pore DomainInternal medicinemedicineMyocyteAnimalsHumansPatch clampMuscle SkeletalMyogenesisSkeletal muscleCell DifferentiationCell BiologyPotassium channelCell biologyUp-Regulation030104 developmental biologyEndocrinologymedicine.anatomical_structurePotassiumC2C12American journal of physiology. Cell physiology
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Intracellular fluoride influences TASK mediated currents in human T cells.

2019

The expression of Kv1.3 and KCa channels in human T cells is essential for maintaining cell activation, proliferation and migration during an inflammatory response. Recently, an additional residual current, sensitive to anandamide and A293, compounds specifically inhibiting currents mediated by TASK channels, was observed after complete pharmacological blockade of Kv1.3 and KCa channels. This finding was not consistently observed throughout different studies and, an in-depth review of the different recording conditions used for the electrophysiological analysis of K+ currents in T cells revealed fluoride as major anionic component of the pipette intracellular solutions in the initial studie…

0301 basic medicinePatch-Clamp TechniquesTime FactorsPotassium CompoundsT-LymphocytesImmunologyMagnesium ChlorideMembrane Potentials03 medical and health scienceschemistry.chemical_compoundFluorides0302 clinical medicinePotassium Channels Tandem Pore DomainPotassium Channel BlockersImmunology and AllergyHumansCells CulturedKv1.3 Potassium ChannelActivator (genetics)ChemistryPipetteAnandamideElectrophysiology030104 developmental biologyMembraneBiophysicsCell activationFluorideIntracellular030215 immunologyJournal of immunological methods
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The quality of cortical network function recovery depends on localization and degree of axonal demyelination

2016

AbstractMyelin loss is a severe pathological hallmark common to a number of neurodegenerative diseases, including multiple sclerosis (MS). Demyelination in the central nervous system appears in the form of lesions affecting both white and gray matter structures. The functional consequences of demyelination on neuronal network and brain function are not well understood. Current therapeutic strategies for ameliorating the course of such diseases usually focus on promoting remyelination, but the effectiveness of these approaches strongly depends on the timing in relation to the disease state. In this study, we sought to characterize the time course of sensory and behavioral alterations induced…

0301 basic medicinePathologymedicine.medical_specialtyImmunologyCentral nervous systemSensationMedizinSensory systemBiologyAdaptive ImmunityWhite matter03 medical and health sciencesBehavioral NeuroscienceCuprizoneMice0302 clinical medicineWhite matter lesionmedicineBiological neural networkAnimalsRemyelinationGray MatterPathologicalMyelin SheathCerebral CortexBehavior AnimalEndocrine and Autonomic SystemsMultiple sclerosisLysophosphatidylcholinesThalamocortical systemRecovery of Functionmedicine.diseaseWhite MatterElectrodes ImplantedMice Inbred C57BLGray matter lesion030104 developmental biologymedicine.anatomical_structureRemyelinationDemyelinationTonotopyNerve NetNeuroscience030217 neurology & neurosurgeryDemyelinating Diseases
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Human T cells in silico: Modelling their electrophysiological behaviour in health and disease

2016

Although various types of ion channels are known to have an impact on human T cell effector functions, their exact mechanisms of influence are still poorly understood. The patch clamp technique is a well-established method for the investigation of ion channels in neurons and T cells. However, small cell sizes and limited selectivity of pharmacological blockers restrict the value of this experimental approach. Building a realistic T cell computer model therefore can help to overcome these kinds of limitations as well as reduce the overall experimental effort. The computer model introduced here was fed off ion channel parameters from literature and new experimental data. It is capable of simu…

CD4-Positive T-Lymphocytes0301 basic medicineStatistics and ProbabilityT-LymphocytesT cellIn silicoElectrophysiological PhenomenaBiologyModels BiologicalIon ChannelsGeneral Biochemistry Genetics and Molecular BiologyMembrane Potentials03 medical and health sciences0302 clinical medicineTRPM7CationsmedicineHumansComputer SimulationDiseasePatch clampIon channelMembrane potentialGeneral Immunology and MicrobiologyApplied MathematicsGeneral MedicineHydrogen-Ion ConcentrationElectrophysiological PhenomenaElectrophysiology030104 developmental biologymedicine.anatomical_structureSpinal CordHealthModeling and SimulationImmunologyPotassiumCalciumGeneral Agricultural and Biological SciencesIon Channel GatingNeuroscience030217 neurology & neurosurgeryJournal of Theoretical Biology
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Dimethyl fumarate treatment restrains the antioxidative capacity of T cells to control autoimmunity

2021

Abstract Dimethyl fumarate, an approved treatment for relapsing-remitting multiple sclerosis, exerts pleiotropic effects on immune cells as well as CNS resident cells. Here, we show that dimethyl fumarate exerts a profound alteration of the metabolic profile of human CD4+ as well as CD8+ T cells and restricts their antioxidative capacities by decreasing intracellular levels of the reactive oxygen species scavenger glutathione. This causes an increase in mitochondrial reactive oxygen species levels accompanied by an enhanced mitochondrial stress response, ultimately leading to impaired mitochondrial function. Enhanced mitochondrial reactive oxygen species levels not only result in enhanced T…

AdultCD4-Positive T-LymphocytesMaleDimethyl FumarateT cellAutoimmunityCD8-Positive T-Lymphocytesmedicine.disease_causeAntioxidantsCohort StudiesMiceYoung Adultchemistry.chemical_compoundMultiple Sclerosis Relapsing-RemittingImmune systemmedicineAnimalsHumanschemistry.chemical_classificationReactive oxygen speciesDimethyl fumarateExperimental autoimmune encephalomyelitisGlutathioneMiddle Agedmedicine.diseaseCell biologyMice Inbred C57BLmedicine.anatomical_structurechemistryFemaleNeurology (clinical)Immunosuppressive AgentsOxidative stressCD8Brain
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Cross-reactivity of a pathogenic autoantibody to a tumor antigen in GABA(A) receptor encephalitis

2021

Encephalitis associated with antibodies against the neuronal gamma-aminobutyric acid A receptor (GABA A -R) is a rare form of autoimmune encephalitis. The pathogenesis is still unknown but autoimmune mechanisms were surmised. Here we identified a strongly expanded B cell clone in the cerebrospinal fluid of a patient with GABA A -R encephalitis. We expressed the antibody produced by it and showed by enzyme-linked immunosorbent assay (ELISA) and immunohistochemistry that it recognizes the GABA A -R. Patch-clamp recordings revealed that it tones down inhibitory synaptic transmission and causes increased excitability of hippocampal CA1 pyramidal neurons. Thus, the antibody likely contributed to…

AutoimmunityCross Reactionsmedicine.disease_causeCross-reactivityAutoantigensPathogenesisAutoimmune Diseases of the Nervous SystemAntigens NeoplasmmedicineHumansAutoantibodiesAutoimmune encephalitisB-LymphocytesMultidisciplinarybiologyPyramidal CellsAutoantibodyGABA-A-receptor encephalitis autoantibody autoimmune encephalitis epilepsy paraneoplastic encephalitisBiological Sciencesmedicine.diseaseReceptors GABA-ATumor antigennervous systemImmunologybiology.proteinImmunohistochemistryEncephalitisDisease SusceptibilityAntibodyEncephalitisBiomarkers
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Blood coagulation factor XII drives adaptive immunity during neuroinflammation via CD87-mediated modulation of dendritic cells

2016

Aberrant immune responses represent the underlying cause of central nervous system (CNS) autoimmunity, including multiple sclerosis (MS). Recent evidence implicated the crosstalk between coagulation and immunity in CNS autoimmunity. Here we identify coagulation factor XII (FXII), the initiator of the intrinsic coagulation cascade and the kallikrein–kinin system, as a specific immune cell modulator. High levels of FXII activity are present in the plasma of MS patients during relapse. Deficiency or pharmacologic blockade of FXII renders mice less susceptible to experimental autoimmune encephalomyelitis (a model of MS) and is accompanied by reduced numbers of interleukin-17A-producing T cells.…

AdultMale0301 basic medicineEncephalomyelitis Autoimmune ExperimentalMultiple Sclerosisanimal structuresT-LymphocytesScienceMedizinGeneral Physics and AstronomyKininsCoagulation Factor XIIAdaptive ImmunityBiologymedicine.disease_causeArticleGeneral Biochemistry Genetics and Molecular BiologyReceptors Urokinase Plasminogen ActivatorAutoimmunityYoung Adult03 medical and health sciencesImmune systemddc:570medicineAnimalsHumansddc:610cardiovascular diseasesNeuroinflammationAgedFactor XIIMultidisciplinaryInterleukin-17QExperimental autoimmune encephalomyelitisCell DifferentiationDendritic CellsGeneral ChemistryMiddle Agedmedicine.diseaseAcquired immune systemMice Inbred C57BL030104 developmental biologyNeuroimmunologyFactor XIIImmunologyFemaleKallikreinscirculatory and respiratory physiologyNature Communications
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