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Bockbrader HN  Burger P  Knapp L 《Epilepsia》2011,52(2):405-409
By reducing neuronal excitability through selective binding to the α(2)δ subunit of voltage-dependent calcium channels, pregabalin effectively treats epilepsy, chronic pain, and anxiety disorders. To evaluate if pregabalin coadministration affects pharmacokinetics of other antiepileptic drugs, population pharmacokinetic analyses using NONMEM software were performed on data from three epilepsy trials involving seven antiepileptic drugs with pregabalin as add-on therapy. Results demonstrated that pregabalin did not alter the steady-state plasma concentrations of carbamazepine, lamotrigine, phenobarbital, phenytoin, tiagabine, topiramate, and valproate. Furthermore, the small percent change in the population estimate of antiepileptic drug plasma clearance values (-2% to +7%) suggests that pregabalin coadministration exerted no significant effect on the pharmacokinetics of these antiepileptic drugs, with the possible exception of tiagabine (+34.9%). These findings are in agreement with those of previously published reports. A further clarification study is necessary for tiagabine. In conclusion, it appears that pregabalin can be coadministered with other antiepileptic drugs without concern for significantly altering their pharmacokinetic profiles.  相似文献   

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A quantitative gas-liquid chromatographic procedure is described for the consecutive determination of phenytoin, phenobarbital, primidone, phenylethylmalondiamide, carbamazepine, trimethadione, dimethadione, ethosuximide and valproate from a single serum specimen of 1.2 ml. After extraction from serum by two different procedures, the anticonvulsants are chromatographed without further purification on a 3% OV 17 column either with or without derivative formation by means of "on-column" methylation. Multiple internal standards are employed in order to enhance the reproducibility of drug-concentration measurement.  相似文献   

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Recently, apoptosis has been implicated in the selective neuronal loss of Alzheimer's disease (AD). Apoptosis is regulated by the B cell leukemia-2 gene product (Bcl-2) family (Bcl-2, Bcl-x, Bax, Bak and Bad) and the caspase family (ICH-1 and CPP32), with apoptosis being prevented by Bcl-2 and Bcl-x, and promoted by Bax, Bak, Bad, ICH-1 and CPP32. In the present study, we examined the levels of these proteins in the membranous and cytosolic fractions of temporal cortex in AD and control brain. In the membranous fraction, the levels of Bcl-2, Bcl-xL, Bcl-xβ, Bak and Bad were increased in AD. In the cytosolic fractions, the level of Bcl-xβ was increased, while Bcl-xL, Bax, Bak, Bad and ICH-1L were unchanged. CPP32 was not detected in AD or control brain. These findings demonstrate a differential involvement of cell death-regulatory proteins in AD and suggest that Bak, Bad, Bcl-2 and Bcl-x are upregulated in AD brains.  相似文献   

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Combining the techniques of thin-layer chromatography (TLC) and mass spectrometry, we unambiguously identified the trace metals Cu, Zn, Fe, Pb, Mn, Co, and Mg in the brain of a female human who had no evidence of any pathologic disease in the central nervous system, and in brains from mouse, rat, guinea pig, and rabbit. These trace metals were also found in anatomic regions of human brain: cortex (gray), cortex (white), caudate nucleus, putamen, hippocampus, and thalamus, and in anatomic regions of rat brain: hypothalamus, cerebellum, stem striatum, and "the rest." The metals were characterized from the color and Rf values of their tetraphenylporphyrin chelates on TLC and from the mass and pattern of molecule ion cluster of the mass spectrum. The unexpected presence of lead in the brain is discussed.  相似文献   

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