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Biomedical subjects

S B Tanner

Publications and source records attributed to S B Tanner.

3 recordsLinked to original sources

The evolution of a case of overlap syndrome with systemic sclerosis, rheumatoid arthritis and systemic lupus erythematosus.

An unusual case of overlap syndrome which evolved over a 12-year period is described. The patient initially presented with limited cutaneous systemic sclerosis. She then developed seropositive erosive rheumatoid arthritis and subsequently vasculitis with positive lupus serology. There was no evidence that she had mixed or undifferentiated connective tissue disease, and antibody to ribonuclearprotein was negative. This unusual combination of connective tissue disorders in one patient is reported and the literature is reviewed.

Arthritis, Rheumatoid

Scleroderma is associated with differences in individual routes of drug metabolism: a study with dapsone, debrisoquin, and mephenytoin.

Exposure to certain environmental agents may induce a scleroderma-like syndrome in a small proportion of individuals. Differences in susceptibility could involve metabolic activation of a protoxin, with affected patients having a greater converting ability. This possibility was investigated in 84 patients with scleroderma and 108 control subjects with in vivo probes of specific pathways of metabolism. Scleroderma was associated with reduced hydroxylating activity for dapsone and S-mephenytoin, whereas the ability to hydroxylate debrisoquin and N-acetyl dapsone was similar in both groups. Logistic regression confirmed these associations based on the shift in frequency distribution. Individuals who were poor metabolizers for mephenytoin and only modest N-hydroxylators of dapsone had a tenfold increased risk of scleroderma (p = 0.008). Thus this combined metabolic impairment may be causally involved in the development of scleroderma or, alternatively, the disease may produce inhibition of selected metabolizing enzymes in a subset of patients.

Acetylation

Metabolism of diethylstilbestrol: identification of a catechol derived from dienestrol.

The enzymatic oxidation of E-3,4-bis-(p-hydroxyphenyl)-hex-3-ene (diethylstilbestrol) by either mushroom tyrosinase or rat liver microsomes in the presence of NADPH and air yields a catechol. Upon further oxidation of both compounds with periodate and condensation of the resulting o-quinones with o-phenylenediamine, phenazines are produced. The phenazines derived from the products of both the plant and animal enzyme systems are identical to the product obtained by oxidation of diethylstilbestrol with potassium nitrosodisulfonate and condensation of the o-quinone produced with o-phenylenediamine. High and low resolution mass spectra of the phenazine are consistent with its derivation from a catechol having two fewer hydrogens than diethylstilbestrol.

Animals