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Aging-associated weakening of the action potential in fast-spiking interneurons in the human neocortex.
Szegedi, Viktor; Tiszlavicz, Ádám; Furdan, Szabina; Douida, Abdennour; Bakos, Emoke; Barzo, Pal; Tamas, Gabor; Szucs, Attila; Lamsa, Karri.
Afiliação
  • Szegedi V; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary; Department of Physiology, Anatomy and Neuroscience, University of Szeged, Hungary.
  • Tiszlavicz Á; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary.
  • Furdan S; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary.
  • Douida A; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary.
  • Bakos E; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary; Department of Physiology, Anatomy and Neuroscience, University of Szeged, Hungary.
  • Barzo P; Department of Neurosurgery, University of Szeged, Hungary.
  • Tamas G; MTA-SZTE Research Group for Cortical Microcircuits, Department of Physiology, Anatomy and Neuroscience, University of Szeged, Hungary.
  • Szucs A; Neuronal Cell Biology Research Group, Eötvös Loránd University, Budapest, Hungary.
  • Lamsa K; Hungarian Centre of Excellence for Molecular Medicine Research Group for Human Neuron Physiology and Therapy, Szeged, Hungary; Department of Physiology, Anatomy and Neuroscience, University of Szeged, Hungary. Electronic address: klamsa@bio.u-szeged.hu.
J Biotechnol ; 389: 1-12, 2024 Jun 20.
Article em En | MEDLINE | ID: mdl-38697361
ABSTRACT
Aging is associated with the slowdown of neuronal processing and cognitive performance in the brain; however, the exact cellular mechanisms behind this deterioration in humans are poorly elucidated. Recordings in human acute brain slices prepared from tissue resected during brain surgery enable the investigation of neuronal changes with age. Although neocortical fast-spiking cells are widely implicated in neuronal network activities underlying cognitive processes, they are vulnerable to neurodegeneration. Herein, we analyzed the electrical properties of 147 fast-spiking interneurons in neocortex samples resected in brain surgery from 106 patients aged 11-84 years. By studying the electrophysiological features of action potentials and passive membrane properties, we report that action potential overshoot significantly decreases and spike half-width increases with age. Moreover, the action potential maximum-rise speed (but not the repolarization speed or the afterhyperpolarization amplitude) significantly changed with age, suggesting a particular weakening of the sodium channel current generated in the soma. Cell passive membrane properties measured as the input resistance, membrane time constant, and cell capacitance remained unaffected by senescence. Thus, we conclude that the action potential in fast-spiking interneurons shows a significant weakening in the human neocortex with age. This may contribute to the deterioration of cortical functions by aging.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Potenciais de Ação / Envelhecimento / Neocórtex / Interneurônios Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Potenciais de Ação / Envelhecimento / Neocórtex / Interneurônios Idioma: En Ano de publicação: 2024 Tipo de documento: Article