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  • 1
    ISSN: 1432-1041
    Keywords: Diclofenac sodium ; gut ; manometry ; motility
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary In experimental animal models nonsteroidal anti-inflammatory drugs may influence gastrointestinal motility, but as evidence is lacking in man. The effect of diclofenac sodum 75 mg i.m. on the motor response of the upper gastrointestinal tract to food has been studied by manometry in 9 healthy volunteers. Diclofenac had no effect on the motor activity of the stomach, duodenum, or jejunum after a 605 kcal meal.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-2568
    Keywords: 23-methyl-ursodeoxycholic acid ; bile flow ; liver biotransformation ; critical micellar concentration
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract 3α,7β-Dihydroxy-23-methyl-5β-cholan-24-oic acid (MUDCA) and its two diastereoisomers, α- and β-MUDCA, were infused intraduodenally in biliary fistula hamsters in order to evaluate the effect on bile flow and their hepatic biotransformation processes compared with the natural analog ursodeoxycholic acid (UDCA). In addition, the corresponding glycine conjugates were compared. The bile acids were administered at different doses (0.7–6 μmol/min/kg) over periods of 90 min. The results indicate that the racemic mixture exhibits a potent choleretic effect at both low and high doses, while the two individual diastereoisomers show this effect only at high doses. The presence of a C-23 methyl group in the side chain prevents hepatic amidation and alternative conjugations occur, such as glucuronidation, in order to facilitate their biliary secretion. Biotransformation of the methyl derivatives of UDCA occurred mainly by conversion to more polar glucuronide conjugates. There was little alteration to the molecule and, unlike UDCA, very little amidation occurred. These data indicate that the presence of a C-23 methyl group prevents the usual side-chain amidation common to the most naturally occurring bile acids and that glucuronidation is a requisite for efficient biliary excretion.
    Type of Medium: Electronic Resource
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