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Biomedical subjects

S Kenouch

Publications and source records attributed to S Kenouch.

27 records · Page 2Linked to original sources

[Involvement of the renal interstitium in systemic diseases (I)].

Interstitial lesions which are frequent in systemic diseases such as systemic lupus erythematosus, Sjögren's syndrome, sarcoidosis and Dobrin's syndrome (acute interstitial nephritis with uveitis) are described as well as their clinical expression. The immune reactions which are recognized to be responsible for these lesions are discussed in respect to each of these diseases.

Adult↗

Pyrazinamide and pyrazinoic acid pharmacokinetics in patients with chronic renal failure.

Pharmacokinetics of pyrazinamide and its major metabolite, pyrazinoic acid, were assessed in 10 chronic uremic patients treated by maintenance hemodialysis in comparison with 10 normal subjects. All subjects ingested a single dose of 1 g of pyrazinamide, the patients receiving the drug immediately after the end of a dialysis session. Bioavailability of pyrazinamide was only slightly increased in patients, its dialysis extraction coefficient being 55.3%. In contrast, pyrazinoic acid has an elimination rate-dependent metabolism with a bioavailability markedly increased in patients and a dialysis extraction coefficient of 59.8%. These data may lead to recommendations of a reduction in the dosage of pyrazinamide in dialysis patients. However, administering the usual dosage of the drug at the end of each dialysis session seems preferable to the daily administration of a reduced dosage.

Adult↗

Piridoxilate-associated nephrocalcinosis: a new form of chronic oxalate nephropathy.

Piridoxilate is an association of glyoxylic acid and pyridoxine in which pyridoxine is supposed to facilitate in vivo transformation of glyoxylic acid to glycine rather than to oxalic acid. However, it has recently been shown that long-term treatment with piridoxilate may result in overproduction of oxalic acid and in calcium oxalate nephrolithiasis. We report a patient in whom piridoxilate induced both oxalate nephrolithiasis and chronic oxalate nephropathy with renal insufficiency, an association that has not been previously described. Therefore, piridoxilate should be added to the list of chemicals responsible for chronic oxalate nephropathy.

Aged↗

[Interstitial nephropathies induced by meticillin: demonstration of distal tubule functional anomalies].

Renal tubular dysfunction was investigated in two patients with meticillin-induced interstitial nephritis. Some degree of renal failure persisted after the acute episode in both cases. The first patient was investigated 10 weeks after the onset of the nephropathy. Nephrogenic diabetes insipidus and distal tubular acidosis were demonstrated. The second patient was investigated 7 months after the onset of the nephropathy. A major impairment in urinary concentration ability was demonstrated. Neither patient had proximal tubular dysfunction. These data show that meticillin-induced interstitial nephritis may be responsible for distal tubular abnormalities, namely nephrogenic diabetes insipidus and distal tubular acidosis, which may persist long after the onset of the nephropathy.

Adult↗

Changes in erythromycin pharmacokinetics induced by renal failure.

As erythromycin ototoxicity appears to be favored by renal insufficiency, its pharmacokinetics were assessed in chronic uremic patients treated by maintenance hemodialysis in comparison with normal subjects. Two groups of 8 patients each were studied, the first one on an interdialytic day, the second immediately after the end of an hemodialysis session. All subjects ingested a single dose of 1 gram of erythromycin ethylsuccinate. Times of peak serum concentration and biological half-lifes were similar in patients and in controls. Maximum serum concentrations and areas under the serum concentration time-curve were higher in patients than in controls whereas apparent oral clearances were lower in the former. The differences between the two groups of patients were not significant. These pharmacokinetic changes are suggestive of an enhanced bioavailability of erythromycin in chronic renal failure which might predispose uremics to the ototoxicity of the drug.

Adult↗