6 research outputs found

    Cardiac Glycosides Ouabain and Digoxin Interfere with the Regulation of Glutamate Transporter GLAST in Astrocytes Cultured from Neonatal Rat Brain

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    Glutamate transport (GluT) in brain is mediated chiefly by two transporters GLT and GLAST, both driven by ionic gradients generated by (Na+, K+)-dependent ATPase (Na+/K+-ATPase). GLAST is located in astrocytes and its function is regulated by translocations from cytoplasm to plasma membrane in the presence of GluT substrates. The phenomenon is blocked by a naturally occurring toxin rottlerin. We have recently suggested that rottlerin acts by inhibiting Na+/K+-ATPase. We now report that Na+/K+-ATPase inhibitors digoxin and ouabain also blocked the redistribution of GLAST in cultured astrocytes, however, neither of the compounds caused detectable inhibition of ATPase activity in cell-free astrocyte homogenates (rottlerin inhibited app. 80% of Pi production from ATP in the astrocyte homogenates, IC50 = 25 ΌM). Therefore, while we may not have established a direct link between GLAST regulation and Na+/K+-ATPase activity we have shown that both ouabain and digoxin can interfere with GluT transport and therefore should be considered potentially neurotoxic

    Easy drainage of presacral abscess

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    Presacral region is one of the difficult regions for drainage of abscess as the approaches described for this carry a lot of morbidities. Transpedicular approach is described for the drainage of presacral abscess. Further, tuberculous abscess as a cause of cauda equina syndrome is reported. Patient had complete neurological recovery within weeks of drainage of abscess. Transpedicular drainage of presacral abscess is a safer option for recently developed neurological deficit. Late presentation may need anterior approach, which is associated with increased morbidity

    The Long-Term Safety of Antiepileptic Drugs

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