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Biomedical subjects

A Sahai

Publications and source records attributed to A Sahai.

At least 37 records · Page 2Linked to original sources

Mechanisms of chronic hypoxia-induced renal cell growth.

Chronic local tissue hypoxia appears to play an important role in the initiation and progression of chronic renal disease. We examined the effect of local hypoxia on cultured renal tubular epithelial and mesangial cell proliferation, dedifferentiation, and extracellular matrix synthesis. The underlying signaling mechanisms whereby hypoxia induces renal cell growth were evaluated. The roles of protein kinase C, p38 mitogen-activated protein kinase, TGF-beta1, osteopontin, and nitric oxide were determined.

Animals↗

Poliomyelitis trends in Pondicherry, south India, 1989-91.

STUDY OBJECTIVES: To assess the poliomyelitis trend, including study of the epidemiological features, and to correlate this with the immunisation coverage of infants. DESIGN: Three annual lameness surveys in children aged 0-60 months employing cluster sampling methods and a series of five cross sectional surveys of immunisation coverage in children aged 12-23 months of age were undertaken. SETTING: Pondicherry, India, 1988-92. SUBJECTS: More than 10,000 children in the age group of 0-60 months took part in the three annual lameness surveys and samples of 210 children aged 12-23 months were covered each year in immunisation coverage surveys. MEASUREMENTS AND MAIN RESULTS: Altogether 50 of 11,461, 24 of 10,093, and 17 of 11,218 children surveyed during 1989, 1990, and 1991 respectively had become lame as a result of poliomyelitis, giving prevalences of 4.4, 2.4, and 1.5 per 1000 children for the three surveys. The corrected prevalences of poliomyelitis were 5.9, 3.2, and 2.0 per 1000 children during 1989, 1990, and 1991 respectively. The proportion of cases aged up to 36 months fell from 48% in 1989 to 12.5% in 1990 and 6% in 1991. The age at onset was less than 1 year in most. The median age at onset was 10.7 months. About 54% of the affected children had received three doses of oral poliomyelitis vaccine (OPV) before the onset of paralysis. In 1988 immunisation coverage for the third dose of OPV was 91% and in 1992 it was 97.6%. The drop out rate for the first versus the third dose of OPV fell from 6.3 in 1988 to 1.9% in 1992. CONCLUSION: Three successive annual lameness surveys showed that poliomyelitis was declining between 1989 and 1991. Five immunisation coverage surveys conducted from 1988 to 1992 showed high initial coverage followed by an improvement in the form of almost universal coverage for OPV.

Age Factors↗

Chronic hypoxia induces LLC-PK1 cell proliferation and dedifferentiation by the activation of protein kinase C.

The effect of chronic hypoxia on the proliferation and dedifferentiation of LLC-PK1 cells was examined. Cultures were exposed either to hypoxia (3% O2) or normoxia (18% O2), and [3H]thymidine incorporation, cell number, and sodium-dependent glucose (Na/Glc) uptakes were assessed. Cultures exposed to hypoxia for 16 h significantly increased [3H]thymidine incorporation followed by a significant increase in cell number both at 24 and 48 h in comparison with respective normoxic controls. Cultures exposed to 24 and 72 h of hypoxia exhibited significant inhibition of Na/Glc uptake when compared with their respective normoxic counterparts. Significant inhibition of cell ATP levels were observed under hypoxic conditions. Acute reoxygenation of hypoxic cells normalized cell ATP levels without any effect on the Na/Glc uptake. Hypoxia also activated protein kinase C (PKC) at 1 and 4 h followed by a subsequent return to baseline with reactivation at 24 h, which remained sustained up to 72 h, suggesting both acute and sustained activation of PKC. Furthermore, the hypoxia-induced alterations in [3H]thymidine incorporation as well as Na/Glc uptake were mitigated by inhibitors of PKC. These results indicate that chronic hypoxia induces both proliferation and dedifferentiation of LLC-PK1 cells mediated, in part, by the activation of PKC.

Animals↗

Chronic hypoxia induces proliferation of cultured mesangial cells: role of calcium and protein kinase C.

The effect of hypoxia on the proliferation of cultured rat mesangial cells was examined. To evaluate the underlying signaling mechanisms, the roles of intracellular calcium ([Ca2+]i) and protein kinase C (PKC) were determined. Quiescent cultures were exposed to hypoxia (3% O2) or normoxia (18% O2), and [3H]thymidine incorporation, cell number, [Ca2+]i, and PKC were assessed. Mesangial cells exposed to 28 h of hypoxia exhibited a significant increase in [3H]thymidine incorporation followed by a significant increase in cell number at 72 h in comparison with respective normoxic controls. Hypoxia induced a biphasic activation of PKC, reflected by translocation of the enzyme activity from cytosol to membrane at 1 h, a return to baseline at 4 and 8 h, with subsequent reactivation from 16 to 48 h. In addition, hypoxia-induced proliferation was prevented by a PKC inhibitor 1-(5-isoquinolinylsulfonyl)-2-methylpiperazine (H-7). Cells exposed to hypoxia produced progressive increases in resting [Ca2+]i from 15 to 60 min which remain sustained up to 24 h of examination. Verapamil significantly prevented the hypoxia-induced proliferation, and both verapamil treatment and incubations in a calcium-free medium for 1 h blocked the hypoxia-induced stimulation of [Ca2+]i as well as PKC. These results provide the first in vitro evidence that chronic hypoxia induces proliferation of cultured glomerular mesangial cells, which is mediated by the stimulation of [Ca2+]i and the subsequent activation of PKC.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Percutaneous drainage of intra-abdominal abscesses in Crohn's disease: short and long-term outcome.

OBJECTIVE: To determine whether percutaneous drainage of Crohn's abscesses obviates the need for early surgical drainage. METHODS: All cases of percutaneous drainage of Crohn's abscesses between 1990 and 1995 were reviewed and classified as a success or failure on the basis of the need for surgery within < 30 days of catheter removal. RESULTS: Twenty-seven drainage procedures were performed in 24 patients; 15 (56%) were classified as successes, and 12 (44%) were classified as failures. Successes and failures did not significantly differ with respect to patient demographics and Crohn's disease characteristics. Patients whose abscesses were successfully drained had significantly fewer associated fistulae (46.6 vs 92.0%, p = 0.037), and their abscesses tended more often to be first (vs recurrent), spontaneous (vs postoperative), located in the right lower quadrant, and smaller. Patients whose abscesses were successfully drained also tended to spend more time with the catheter in place and to require more imaging procedures. Complications were noted in four cases (15%), enterocutaneous fistula at the site of catheter insertion in three cases and postprocedure fever in one case. Hospital stay was significantly shorter after successful drainage (16.3 +/- 6.9 vs 31.7 +/- 22.1 days, p = 0.017). After a total of 543.5 patient-months of follow-up, subsequent intra-abdominal Crohn's-related surgery was required in only two of the successes and one failure. CONCLUSIONS: 1) Percutaneous drainage of Crohn's abscess successfully obviates the need for early surgery in approximately 50% of cases, and this benefit is maintained on long term follow-up. 2) Percutaneous drainage shortens hospital stay. 3) Crohn's abscesses in various locations, single or multiple, with or without an associated fistula may be successfully drained percutaneously. 4) Presence of an associated fistula may be a risk factor for failure.

Abdominal Abscess↗

Enhanced apoptosis in transformed human lung fibroblasts after exposure to sodium butyrate.

Simian virus-transformed human cells, WI-38 VA13A, showed a dose-dependent induction of apoptosis and reduction in cell numbers after exposure to sodium butyrate. Apoptosis was confirmed by ApopTag staining, isolation of apoptotic envelopes, and immunofluorescent staining with an antibody specific for apoptotic envelopes. Examination of the cell cultures by phase contrast and fluorescent microscopy revealed the presence of enlarged cells that displayed a more flattened morphology and morphological changes in the nucleus of cells exposed to sodium butyrate. Cell proliferation assays showed control and sodium butyrate cultures were synthesizing DNA and excluded any cytotoxic effects of sodium butyrate. Flow cytometry results indicated an increase in the number of aneuploid cells following sodium butyrate treatment. There was a decrease in the percentage of cells in G2/M in the diploid populations, but an increase in the percentage of cells in G2/ M in aneuploid populations. This human in vitro model system suggests a mode of action for the therapeutic effects of sodium butyrate, which have been observed in the topical treatment of neoplastic cells and reversal of symptom in ulcerative colitis, namely, the induction of apoptosis.

Aneuploidy↗

Effects of parathyroid hormone on hepatocyte pHi and Na(+)-H+ exchanger activity.

Parathyroid hormone (PTH) induces a rise in cytosolic calcium--[Ca2+]i--in many cells. A rise in [Ca2+]i activates the Na(+)-H+ antiport, but PTH inhibits the Na(+)-H+ exchanger in kidney cells. Since PTH induces a rise in [Ca2+]i of hepatocytes, we examined the effect of PTH on their Na(+)-H+ antiport and intracellular pH(pHi). PTH caused an initial activation of Na(+)-H+ exchanger, and this stimulation is amiloride sensitive. The activation of the Na(+)-H+ exchanger was followed by progressive inhibition. This inhibitory effect was dose dependent and occurred over a wide range of external sodium concentrations. PTH also caused a progressive rise in hepatocyte pHi which became apparent after the initial activation of the Na(+)-H+ antiport. This alkalinization of hepatocytes occurred when the cells were placed in sodium or potassium media. These actions of PTH were mimicked by dibutyryl cyclic AMP and 12-o-tetradecanoylphorbol-13-acetate(TPA) and were abolished by H-89 (an inhibitor of protein kinase A), staurosporine (an inhibitor of protein kinase C), and the calcium channel blockers verapamil or nifedipine. The data are consistent with the formulation that PTH, through the activation of the cAMP-protein kinase A pathway, protein kinase C, and calcium channels inhibitable by verapamil or nifedipine, induces a rise in [Ca2+]i of hepatocytes. The latter event causes an initial activation of Na(+)-H+ antiport which is followed by a rise in pHi. Also, PTH may facilitate a Ca2+/2H+ exchange across the hepatocyte membrane and causes an initial and persistent rise in pHi, since the rise in pHi occurred under conditions where Na(+)-H+ antiport is inactive (potassium media). In addition, PTH either directly or through activation of second messenger(s) leads to an increased ammonia content of hepatocytes which could maintain a high pHi. Consequently, the Na(+)-H+ antiport is inhibited in an effort to restore the pHi back to normal.

Ammonia↗

Renal dopamine receptors are involved in the development of cardiac hypertrophy.

The present study examined the effect of fenoldopam, a known dopamine-1 receptor (DA1) agonist in order to understand its involvement in the cardiac hypertrophic process. Male Sprague-Dawley rats underwent abdominal aortic constriction (AB) with placement of a suprarenal ligature while sham operated animals served as controls. The AB groups showed an increase in their heart wt, left ventricular (LV) wt, heart wt/body wt and LV wt/body ratio. Furthermore, the length of these hearts, as measured from the auriculoventricular border to the apex, LV wall and interventricular (IV) septal thickness were increased from control levels. Treatment with SCH 23390, a DA1 antagonist, on the other hand, was able to partially regress the cardiac hypertrophic changes. All these parameters were also increased in control animals treated with fenoldopam (F). Such changes were more striking in the F+AB group which showed a significant acceleration of the cardiac hypertrophic process on superimposing the two treatments. Plasma dopamine and renin activity were increased in all the groups as compared to control. These results indicate that dopamine receptors are implicated in the development of cardiac hypertrophy.

Animals↗

Storage-phosphor autoradiography: a rapid and highly sensitive method for spatial imaging and quantitation of radioisotopes.

This study evaluates a storage-phosphor imaging system for rapid autoradiography and quantitation of beta- and gamma-ray emitters in mice. Known quantities of authentic 3H, 14C, and 195mPt (0.06 to 31,714 DPM/mm2) were exposed to imaging plates of the storage-phosphor system for 0.5 min to 15 hr at room temperature. Immediately after exposure, the imaging plates were scanned and the autoradiograms were quantified. Radioactivity as low as 1.8 DPM/mm2 (3H), 0.06 DPM/mm2 (14C) and 3.1 DPM/mm2 (195mPt) was visualized and quantified in 8 hr (3H and 14C) and 6 min (195mPt), respectively. The system displayed a linear range of four to five orders of magnitude (14C: 0.5 to 6,914 DPM/mm2 for 2-hr exposure; 3H: 1.8 to 15,372 DPM/mm2 for 15-hr exposure; and 195mPt: 66 to 198,000 DPM 6 min-exposure). Variation from scan-to-scan was small (< 1% to 5%) and was more pronounced at the lower detection limits and exposure periods. Similar sensitivity, linearity, and variability were obtained in cryosections of murine tumors treated with 14C-fluorouracil or 3H-epinephrine and whole-body autoradiograms of mice treated with 195mPt-cisplatin via liver. The high sensitivity allowed noninvasive imaging of live unanesthetized mice treated with 195mPt with a short exposure time (105 sec). These results validate, for the first time, the high sensitivity, linearity, and wide dynamic range of storage-phosphor technology for quantitative autoradiography of 14C, 3H, and 195mPt isotopes. Storage-phosphor imaging will be useful in rapid quantitative autoradiographic disposition studies of radiolabeled drugs and excipients in vitro and in vivo.

Animals↗

Prostaglandin F2 alpha- and 12-O-tetradecanoylphorbol-13-acetate-induced alterations in the pathways of renal ammoniagenesis.

The mechanisms whereby prostaglandin F2 alpha (PGF2 alpha) and the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA) inhibit ammoniagenesis and the reason why they behave differently at pH 7.4, were examined with (15N)glutamine to assess the metabolic pathways and 2'-7'-bis(2-carboxyethyl)-5-(and-6)-carboxylfluorescein, acetoxymethylester (BCECF-AM) to evaluate Na+/H+ antiporter activity. LLC-PK1 cultures were incubated for 1 h in a Krebs-Hensleit bicarbonate buffer of pH 7.4 and pH 6.8 supplemented either with 5-15N- or 2-15N-labeled glutamine, followed by the assessment of (15N)ammonia and (15N)amino acid formation. Exposure of cells to either PGF2 alpha or TPA completely inhibited the low pH-induced increases in (15N)ammonia formation from incubations with 5-15N, reflecting reduced flux through the mitochondrial phosphate-dependent glutaminase, and from (2-15N)glutamine, reflecting reduced flux through the mitochondrial glutamate dehydrogenase pathway. They also qualitatively reversed the acute acidosis-induced changes in (15N)alanine formation and (15N)glutamate accumulation in the media. By contrast only TPA, but not PGF2 alpha, modified glutamine metabolism at pH 7.4. Na+/H+ antiporter activity was assessed under both acidified and basal (pH 7.4) conditions by measuring changes in intracellular pH in cells loaded with BCECF. TPA and PGF2 alpha both stimulated Na+/H+ antiporter activity comparably under acidified conditions. When cells were studied at pH 7.4, TPA but not PGF2 alpha stimulated the Na+/H+ antiporter and increased steady-state intracellular pH.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Renal handling of Ca2+ in diabetes.

Ca2+ transport in kidney has gained considerable attention in the recent past. Our laboratory has been involved in understanding the regulatory mechanisms underlying Ca2+ transport in the kidney across the renal basolateral membrane. We have shown that ANP, a cardiac hormone, mediates its biological functions by acting on its receptors in the kidney basolateral membrane. Furthermore, it has been established that ANP receptors are coupled with Ca2+ ATPase, the enzyme that participates in the vectorial translocation of Ca2+ from the tubular lumen to the plasma. It is possible that a defect in the ANP-receptor-effector system in diabetes (under certain conditions such as hypertension) may be associated with abnormal Ca2+ homeostasis and the development of nephropathy. Accordingly, future studies are needed to establish this hypothesis.

Animals↗

Chronic hypoxia impairs the differentiation of 3T3-L1 fibroblast in culture: role of sustained protein kinase C activation.

The effect of hypoxia on 3T3-L1 cell differentiation was examined in confluent cultures incubated with differentiation medium (DM) followed by incubation in growth medium (GM). Control cultures remained in GM throughout the incubation period. Eight days after the incubation, cells were assessed either for changes in morphology by staining with Oil Red O/hematoxylin or harvested to measure protein kinase C activity. Morphological examination of stained cells showed almost complete differentiation of normoxic cells to adipocytes when exposed to DM. By contrast hypoxia caused a dramatic inhibition of differentiation under similar media conditions with only 34 +/- 4% of cells accumulating fat deposits. Cultures sustained in GM under normoxic or hypoxic conditions were devoid of any fat deposits, reflecting an undifferentiated phenotype. Normoxic cells exposed to DM exhibited a significantly lower membrane to cytosolic ratio of protein kinase C in comparison with cells maintained in GM, which is consistent with differentiated and undifferentiated phenotypes, respectively. In comparison with normoxic cells incubated in DM, cells exposed to hypoxia under similar media conditions exhibited a significantly higher membrane to cytosolic ratio of protein kinase C, indicating sustained activation of the enzyme. In addition, cells in differentiation medium exposed to hypoxia in the presence of the protein kinase C inhibitors staurosporine or H7 exhibited a significant increase in the number of fat accumulating cells when compared with hypoxic controls. These studies indicate that chronic hypoxia impairs the differentiation of 3T3-L1 cells to adipocytes in association with the sustained activation of protein kinase C, which appears to play a role in mediating this process.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

The intensity of acidosis differentially alters the pathways of ammoniagenesis in LLC-PK1 cells.

Utilizing [5-15N] and [2-15N]-labeled glutamine and gas chromatography mass spectrometry methodology, we examined the pathways of ammoniagenesis under basal and acute acidotic conditions of pH 7.0 and pH 6.8, respectively. LLC-PK1 cultures were incubated for one hour with gentle rocking in a bicarbonate buffer of pH 7.4, pH 7.0, or pH 6.8 supplemented either with [5-15N] or [2-15N] glutamine at 37 degrees C in a 5% CO2/95% air incubator atmosphere. Incubation of cultures with [5-15N] glutamine at pH 7.4 resulted in a substantial amount of 15N ammonia formation which was not significantly altered by incubations at pH 7.0. By contrast, exposure to pH 6.8 significantly increased 15N ammonia formation in comparison with its production at pH 7.0 or 7.4. However, 15N ammonia production from [2-15N] glutamine was significantly stimulated at pH 7.0 and was further increased at pH 6.8. Incubation of the cells with [2-15N] glutamine resulted in a substantially lower amounts of 15N ammonia formation than produced with [5-15N] glutamine. Alanine formation from [2-15N] glutamine increased significantly at pH 7.0; but in contrast to 15N ammonia formation, pH 6.8 had no additional stimulatory effect on 15N alanine formation. Cells incubated with [2-15N] glutamine resulted in a significant decrement in 15N glutamate production at both pH 7.0 and 6.8 when compared with pH 7.4. 15N aspartate formation was unaltered by the changes in media pH.(ABSTRACT TRUNCATED AT 250 WORDS)

Acidosis↗

PGF2 alpha activation of Na/H antiporter and ammoniagenesis in parent/variant LLC-PK1 cells.

A novel variant of the LLC-PK1 cell line was used to examine directly the mechanism whereby PGF2 alpha and TPA inhibit renal ammoniagenesis. The variant cells, which exhibit a growth pattern and morphology similar to the parent cell line, were isolated by a self selection process utilizing long-term cultures of parent cells maintained under conditions of continuous gentle rocking of the media fluid. Incubation of both parent and variant LLC-PK1 cells for one hour in a glutamine supplemented Krebs-Hensleit media of low pH (pH 6.8) increased ammonia and alanine production in comparison to the basal rates at pH 7.4. The phorbol ester TPA and also PGF2 alpha inhibited the low pH-induced increases in ammonia and alanine formation in parent cells; however, neither TPA nor PGF2 alpha inhibited ammonia or alanine metabolism in variant cells. TPA and PGF2 alpha activated PKC similarly in the parent and variant cells as demonstrated by a significant increase in membrane bound enzyme activity. BCECF labeling of cells indicated that the parent and variant cells possess an amiloride sensitive Na+/H+ antiporter of comparable activity. Exposure of parent cells to PGF2 alpha or TPA resulted in the activation of Na+/H+ antiporter activity. By contrast, neither compound stimulated antiporter activity in variant cells. These studies strongly suggest that PKC mediated activation of the Na+/H+ antiporter accounts for the inhibition of ammonia production produced by both PGF2 alpha and TPA. In addition, this novel variant of LLC-PK1 cells should provide a valuable tool to investigate various normal and pathophysiological functions involving mediation by PKC and/or Na+/H+ antiporter activity.

Alanine↗