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D Leipold

Publications and source records attributed to D Leipold.

4 recordsLinked to original sources

Mechanism of enhancement of intestinal ulcerogenicity of S-aryl propionic acids by their R-enantiomers in the rat.

We previously observed a marked increase in gastrointestinal toxicity of rac-flurbiprofen compared to the therapeutically equivalent dose of the S enantiomer. This paper quantitates these observations and examines the mechanism by which this paradoxical toxicity occurs. We have evaluated the ulcer scores, mucosal neutrophil infiltration, by immunostaining of CD11/18 antigen, and mucosal neutrophil activity by myeloperoxidase measurement at two dose levels of (R)-, (S)-, and rac-flurbiprofen, administered over 30 days. Dose-response for intestinal ulcer production was observed for rac- and (S)-flurbiprofen; animals given (R)-flurbiprofen exhibited no ulcers. Yet rac-flurbiprofen proved to be twice as ulcerogenic as (S)-flurbiprofen. The mechanism of the exacerbation of gastrointestinal toxicity of (S)-flurbiprofen by the noncyclooxygenase inhibiting (R)-flurbiprofen is believed to be associated with its effect on ICAM-1 up-regulation. This is followed by neutrophil adhesiveness to ICAM-1 via the LFA-1 antigen on its surface and the extravasation of neutrophils into the tissue. We also examined the effect of high dose (R)-flurbiprofen vs vehicle over 15 days in animals in which ulcers had been produced by treatment with (S)-flurbiprofen for the previous 15 days. (R)-flurbiprofen did not sustain induced ulcers. The results of this study suggest that human studies be conducted to determine if enhanced gastrointestinal toxicity occurs in man. This is at issue since rac compounds of this class are available over the counter and others may be introduced.

Animals↗

Endogenous natriuretic factors 7: biospecificity of a natriuretic gamma-tocopherol metabolite LLU-alpha.

The structural elucidation and mechanism of action of a potential component, LLU-alpha, of what is possibly a multifactorial complex known as "natriuretic hormone" was recently reported [Wechter, W.J. et al. (1996a) Proc. Natl. Acad. Sci. U.S.A. 93: 6002-6007]. "Natriuretic hormone," a long-sought factor, is believed to regulate extracellular fluid volume and consequently be pathomimetic for hypertension, cirrhosis, congestive heart failure and other volume expanded states. The studies reported herein further characterize LLU-alpha. The precursor of the endogenous LLU-alpha was demonstrated to be gamma-tocopherol by radiolabeling studies. The pharmacokinetics of infused rac-LLU-alpha proved to be biphasic (half-lives: 12 min and 6 h). Specificity of the inhibition of the 70 pS potassium channel of the thick ascending limb of the loop of Henle was examined with the natural S-enantiomer being the most potent known inhibitor whereas the analogous alpha-tocopherol metabolite, rac-5-Me-LLU-alpha, showed no inhibition. Rac-LLU-alpha does not inhibit two isozymes of the Na+/K+-ATPase. LLU-alpha is natriuretic acting via inhibition of the 70 pS potassium channel and not Na+/K+-ATPase, the assumed mechanism of action of the "natriuretic hormone." LLU-alpha, a metabolite of a vitamin, if it were found to play a role in the regulation of extracellular fluid volume, would be the second example of a vitamin acting as a precursor for a hormone. Of considerable interest is the fact that this manuscript reports the first biological activity of gamma-tocopherol, a member of the vitamin E complex.

Animals↗