Neuroligand-evoked calcium-dependent release of excitatory amino acids from Schwann cells
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Summary
Bradykinin stimulates EAA release from Schwann cells through a mechanism that is neither the previously described volume regulated release mechanism nor due to the reversal of the glutamate transporter.
- Type
- article
- Published
- 1995-08-01
- Cited by
- 93
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W1545656149
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2524011
Keywords
Bradykinin, Calcium, Glutamate receptor, Ionomycin, Chemistry
References
- The uptake inhibitor L-trans-PDC enhances responses to glutamate but fails to alter the kinetics of excitatory synaptic currents in the hippocampus.
- Glia-neuron signaling
- Differential intracellular calcium responses to glutamate in type 1 and type 2 cultured brain astrocytes
- New roles for glia
- Role of calcium in astrocyte volume regulation and in the release of ions and amino acids
- Expression of nerve growth factor receptors by Schwann cells of axotomized peripheral nerves: ultrastructural location, suppression by axonal contact, and binding properties
- Swelling-induced release of glutamate, aspartate, and taurine from astrocyte cultures
- The release and uptake of excitatory amino acids.
- Inositol phospholipid hydrolysis in cultured astrocytes and oligodendrocytes.
- THE STRUCTURAL SPECIFICITY OF THE HIGH AFFINITY UPTAKE OF l‐GLUTAMATE AND l‐ASPARTATE BY RAT BRAIN SLICES
- The release and uptake of excitatory amino acids in rat brain: effect of aging and oxidative stress.
- Ca2+ waves in astrocytes.
- Intercellular signaling in glial cells: calcium waves and oscillations in response to mechanical stimulation and glutamate.
- Quantal transmitter secretion from myocytes loaded with acetylcholine
- Bradykinin highlights the role of phospholipid metabolism in the control of nerve excitability
- Type-2 astrocytes show intracellular Ca2+ elevation in response to various neuroactive substances.
- Transmitter release increases intracellular calcium in perisynaptic Schwann cells in situ.
- Glia-neuron intercellular calcium signaling.
- Dose‐Dependent, K+‐Stimulated Efflux of Endogenous Taurine from Primary Astrocyte Cultures Is Ca2+‐Dependent
- Electrically induced release of acetylcholine from denervated Schwann cells
Cited by
- Effects of subcutaneous administration of glutamate on pain, sensitization and vasomotor responses in healthy men and women
- Cross talk between vestibular neurons and Schwann cells mediates BDNF release and neuronal regeneration
- Neuroglial Modulation in Peripheral Sensory Systems
- Neuroligand-evoked release of excitatory neurotransmitters from cultured glial cells
- Astrocytes: a driving force in brain signaling and encephalopathies
- Astrocyte volume regulation
- The Retinal Müller Cell
- CARACTERIZAÇÃO DO EFEITO HIPERALGÉSICO INDUZIDO PELAS INJEÇÕES INTRATECAIS DE GLUTAMATO E CININAS EM CAMUNDONGOS.
- P2Y1 receptor inhibits GABA transport through a calcium signalling‐dependent mechanism in rat cortical astrocytes
- Glia: listening and talking to the synapse
- Glial cells as active partners in synaptic functions.
- Bradykinin‐induced astrocyte–neuron signalling: glutamate release is mediated by ROS‐activated volume‐sensitive outwardly rectifying anion channels
- Localization of bradykinin-like immunoreactivity in the rat spinal cord: effects of capsaicin, melittin, dorsal rhizotomy and peripheral axotomy.
- Morphological evidence for functional capsaicin receptor expression and calcitonin gene-related peptide exocytosis in isolated peripheral nerve axons of the mouse.
- Functional interactions between NMDA receptors and TRPV1 in trigeminal sensory neurons mediate mechanical hyperalgesia in the rat masseter muscle
- Transglial transmission at the dorsal root ganglion sandwich synapse: glial cell to postsynaptic neuron communication
- Glutamate‐induced Release of the Nitric Oxide Precursor, Arginine, From Glial Cells
- Changes in Bioelectric Activity in the Human Retina after Transcranial Magnetic Stimulation
- Formalin-induced release of excitatory amino acids in the skin of the rat hindpaw.
- Glutamate-induced homocysteic acid release from astrocytes: possible implication in glia-neuron signaling.
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