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Hydralazine kinetics after single and repeated oral doses
Author(s) -
Shepherd Alexander M M,
Ludden Thomas M,
McNay John L,
Lin MinShung
Publication year - 1980
Publication title -
clinical pharmacology and therapeutics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.941
H-Index - 188
eISSN - 1532-6535
pISSN - 0009-9236
DOI - 10.1038/clpt.1980.238
Subject(s) - hydralazine , pharmacokinetics , pharmacology , metabolite , chemistry , bioavailability , oral administration , kinetics , medicine , endocrinology , biochemistry , physics , quantum mechanics , blood pressure
In reports on hydralazine kinetics plasma hydralazine levels have been measured with nonspecific assay techniques. The techniques used also include acid‐labile hydralazine metabolites and therefore markedly overestimate hydralazine levels. We have developed specific, sensitive assay methods for the measurement of hydralazine and its major plasma metabolite, hydralazine pyruvic acid hydrazone (HPH). By these methods, we determined hydralazine and HPH kinetics after single and repeated oral doses of hydralazine in eight hypertensive patients. Hydralazine bioavailability in the fast acetylator group (9.5% single dose, 6.6% repeated doses) and in the slow acetylator group (31.3% single dose, 39.3% repeated doses) was phenotype dependent. Peak plasma levels were lower than those reported with nonspecific assays: 0.32 μM for the single dose and 0.14 μM for repeated doses in the fast acetylator group and 1.03 μM for the single dose and 0.96 μM repeated doses in the slow acetylator group. There was no alteration in kinetics and no cumulation in plasma on repeated administration. HPH plasma levels were proportional to those of hydralazine in both acetylator groups and were 2.5 to 4 times as high as those of hydralazine. Elimination half‐lifes were phenotype independent, ranging from 4 to 6 hr. HPH cumulated in the rapid but not in the slow acetylator group after repeated doses of hydralazine. Clinical Pharmacology and Therapeutics (1980) 28 , 804–811; doi: 10.1038/clpt.1980.238

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