## Abstract In Na^+^โ and K^+^โfree solution, an inwardโdirected current can be detected in Xenopus oocytes, which is inhibited by cardic glycosides and activated by ATP. Therefore, it is assumed to be generated by the Na^+^, K^+^ pump. At negative membrane potentials, the pump current increases wi
Glial and neuronal Na+-K+ pump in epilepsy
โ Scribed by Dr Thierry Grisar
- Publisher
- John Wiley and Sons
- Year
- 1984
- Tongue
- English
- Weight
- 689 KB
- Volume
- 16
- Category
- Article
- ISSN
- 0364-5134
No coin nor oath required. For personal study only.
โฆ Synopsis
Because high extracellular K+ concentrations (18-20 m ~) increased glial NaC-and K+-dependent adenosine triphosphatase {(Na' + K+)-ATPase} activities, while this increase was not observed in neuronal preparations, it is hypothesized that K+ released in the extracellular space during neuronal firing is actively taken up by glial cells. In acute and chronic epileptogenic lesions of cats, glial (Na+ + K+)-ATPase dramatically decreased when compared to both control animals and the perifocal area, while its activation by extracellular KC in concentrations between 3 and 18 mM was absent 3, 6, and up to 45 days after production of freezing lesions. Similar results were observed in 13 specimens of anterolateral temporal neocortex obtained during temporal lobectomies in patients with intractable temporal lobe epilepsy, compared with postmortem human specimen or control brain tissues. Hence, a glial (Na+ + K+)-ATPase abnormality exists in epileptogenic tissue. Further experimental data are presented supporting the notion that this glial abnormality may favor the transition from interictal episodes to ictal phenomena.
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