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D R Prasad

Publications and source records attributed to D R Prasad.

4 recordsLinked to original sources

Immunohistologic features of minimal-change nephrotic syndrome.

To assess the role of immune mechanisms in the pathogenesis of minimal-change nephrotic syndrome (MCNS), immunohistologic studies were performed on renal biopsy specimens from 31 patients. Glomerular immunoglobulin and/or complement (C3) deposition was present in 20 specimens. Deposits were usually minimal to moderate, granular, and focal in nature. IgM was present in 17 specimens, C3 in 10, IgG in 8 and IgA in only 3. With a mean follow-up of 5 1/2 years, there is no difference in the response to therapy of patients with no glomerular immunoglobulin or C3, those with glomerular immunoglobulin without C3, and those with glomerular C3. These findings indicate that glomerular immune deposits can be seen in a substantial percentage of patients with MCNS, but the minimal and focal nature of the deposits and lack of correlation with response to therapy suggest that immunoglobulin and C3 deposits are nonspecific and have no pathogenetic role.

Adolescent↗

Diuretic-induced uricosuria: interaction with pyrazinoate transport in man.

We investigated the acute effect of an orally administered uricosuric natriuretic agent (SKF-62698) on renal urate transport in paired clearance studies in seven normal men. The participants received SKF-62698 on two separate occasions. Prior to the second study, each received pyrazinamide (PZA) in order to inhibit the tubular secretion of urate. Within 3 hours, SKF-62698 significantly decreased the plasma urate and trebled the rate of urate excretion in the studies without PZA. In contrast, after PZA pretreatment. SKF-62698 did not diminish the plasma urate appreciably and elicited only 60% of the previous increase in urate excretion. Sodium excretion quadrupled after SKF-62698, irrespective of the presence of PZA. Plasma concentrations of pyrazinoate, the renally active metabolite of PZA, were at levels previously shown in the chimpanzee to primarily inhibit the tubular secretion of urate. Therefore, intact tubular secretion of urate probably was necessary in order for SKF-62698 to elicit its maximum uricosuric response. SKF-62698 appeared to inhibit the tubular secretion of pyrazinoate, but the observed changes in urate transport could not be explained on that basis.

Adult↗