PubMed Health⌕ Search

Biomedical subjects

Sumant Chugh

Publications and source records attributed to Sumant Chugh.

3 recordsLinked to original sources

Relevance of renal-specific oxidoreductase in tubulogenesis during mammalian nephron development.

Renal-specific oxidoreductase (RSOR), an enzyme relevant to diabetic nephropathy, is exclusively expressed in renal tubules. Studies were initiated to determine whether, like other tubule-specific proteins, it selectively modulates tubulogenesis. Northern blot analyses revealed a approximately 1.5-kb transcript, and RSOR expression was detectable in mice embryonic kidneys at day 13, gradually increased by day 17, and extended into neo- and postnatal periods. RSOR mRNA and protein expression was confined to proximal tubules, commencing at gestational day 17 and increasing subsequently, but remained absent in glomeruli and medulla. Treatment with RSOR antisense oligodeoxynucleotide resulted in a dose-dependent dysmorphogenesis of metanephric explants harvested at gestational day 13. The explants were smaller and had expanded mesenchyme, and the population of tubules was markedly decreased. The glomeruli were unaffected, as assessed by mRNA expression of glomerular epithelial protein 1 and reactivity with wheat germ agglutinin. Antisense treatment led to a selective reduction of RSOR mRNA. Immunoprecipitation also indicated a selective translational blockade of RSOR. These findings suggest that RSOR is developmentally regulated, exhibits a distinct spatiotemporal distribution, and probably plays a role in tubulogenesis.

Aldehyde Reductase↗

Identification of developmentally regulated mesodermal-specific transcript in mouse embryonic metanephros.

Mesodermal-specific cDNA or transcript (MEST) was identified by suppression subtractive hybridization-PCR of cDNA isolated from embryonic day 13 vs. newborn mice kidneys. At day 13 of mouse gestation, a high expression of MEST, with a single approximately 2.7-kb transcript that was exclusively localized to the metanephric mesenchyme was observed. The MEST mRNA expression gradually decreased during the later stages and then abruptly decreased in the newborn kidneys and subsequent postnatal life, after which a very mild expression persisted in the glomerular mesangium. Regression in mRNA expression during embryonic renal development appears to be related to methylation of the MEST gene. Treatment of metanephroi, harvested at day 13 of gestation with MEST-specific antisense oligodeoxynucleotide resulted in a dose-dependent decrease in the size of the explants and the nephron population. This was associated with a selective decrease in MEST mRNA expression and accelerated apoptosis of the mesenchyme. These findings suggest that MEST, a gene with a putative mesenchymal cell-derived protein, conceivably plays a role in mammalian metanephric development.

Animals↗

Juxtaglomerular apparatus tumor: a rare, surgically correctable cause of hypertension.

Although uncommon, presentation of juxtaglomerular cell tumor is distinct and should allow a correct preoperative diagnosis in most patients. Typical clinical presentations include headaches, polyuria, or isolated, asymptomatic, severe hypertension. The diagnosis of a juxtaglomerular apparatus (JGA) tumor typically results from identification of plasma renin levels two- to sevenfold greater than the normal value. Although JGA tumors are considered benign, with no reports of metastases or recurrence, they are potentially lethal if left untreated. Surgical excision is curative.

Case Reports↗