Depletion of the nitrofuran antibiotics furazolidone, furaltadone, nitrofurantoin and nitrofurazone and their tissue-bound metabolites AOZ, AMOZ, AHD and SEM from pig muscle, liver and kidney tissues is described. Groups of pigs were given feed medicated with one of the nitrofuran drugs at a therapeutic concentration (400?mg?kg(-1)) for ten days. Animals were slaughtered at intervals and tissue samples collected for analysis for six weeks following withdrawal of medicated feed. These samples were analysed both for parent nitrofurans (using LC-MS/MS and HPLC-UV), and for tissue-bound metabolites (using LC-MS/MS). The parent drugs were detectable only sporadically and only in pigs subjected to no withdrawal period whatsoever. This confirms the instability of the four major nitrofuran antibiotics in edible tissues. In contrast, the metabolites accumulated to high concentrations in tissues (ppm levels) and had depletion half lives of between 5.5 and 15.5 days. The metabolites of all four drugs were still readily detectable in tissues six weeks after cessation of treatment. This emphasizes the benefits of monitoring for the stable metabolites of the nitrofurans.
Deficiency of folate during pregnancy is associated with megaloblastic anaemia. Lower levels of folate and vitamin B12 have been reported in mothers whose offspring had neural tube defects compared to unaffected controls. Increased methylmalonic acid levels are a sensitive indicator of mild vitamin B12 deficiency and elevated homocysteine levels denote vitamin B12 or folate deficiency. We have investigated the relationship between serum concentration of total homocysteine, methylmalonic acid, vitamin B12 and folate in pregnancy. A significant inverse correlation was found between homocysteine and red cell folate and, to a lesser extent, serum folate. In addition, a significant inverse correlation was found between methylmalonic acid and vitamin B12. No significant relationship was found between homocysteine and vitamin B12. The relationship between red cell folate and serum folate and homocysteine may be useful for detecting borderline folate deficiency in pregnancy and indicate pregnancies at risk of neural tube defect. These sensitive assays are useful tools for the further investigation of folate vitamin B12 and metabolism in normal and abnormal pregnancy.
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