PubMed Health⌕ Search

Biomedical subjects

R Sethi

Publications and source records attributed to R Sethi.

At least 37 records · Page 2Linked to original sources

Basic fibroblast growth factor is cardioprotective in ischemia-reperfusion injury.

To examine whether basic fibroblast growth factor (bFGF) administered to the heart by perfusion can improve cardiac resistance to injury we employed an isolated rat heart model of ischemia-reperfusion injury and determined the extent of functional recovery in bFGF-treated and control hearts. Global ischemia was simulated by interruption of flow for 60 min. Recovery of developed force of contraction (DF), recorded after reestablishment of flow for 30 min, reached 63.8 +/- 1.5% and 96.5 +/- 3.5% of preischemic levels in control and bFGF-treated hearts (10 micrograms/heart), respectively, indicating that bFGF induced significantly improved recovery of mechanical function. Recoveries of the rates of contraction or relaxation were also significantly improved in bFGF-treated hearts. Extent of myocardial injury, assessed by determination of phosphocreatine kinase in the effluent, was reduced as a result of bFGF treatment. As a first step towards understanding the mechanism and direct cellular target(s) of bFGF-induced cardioprotection, we investigated its fate after perfusion. Perfusion of 10 micrograms bFGF/heart resulted in a 4-fold increase in bFGF associated with the heart compared to control levels, as estimated by biochemical fractionation and immunoblotting. Immunofluorescent staining of the bFGF-perfused hearts revealed intense anti-bFGF staining in association with blood vessels as well as the periphery of cardiomyocytes, suggesting that the latter may be a target for direct bFGF action. In conclusion, our findings of bFGF-induced increases in cardiac resistance to, and improved functional recovery from, ischemia-reperfusion injury indicate that bFGF may have clinical applications in the treatment of ischemic heart disease.

Animals↗

Inotropic responses to isoproterenol in congestive heart failure subsequent to myocardial infarction in rats.

It is well known that the positive inotropic effect of catecholamines is mediated through the activation of adrenergic receptors and the formation of cyclic adenosine monophosphate (AMP) in the cardiac cell. Although attenuated responses of failing hearts to catecholamines are commonly seen in patients and experimental animals with coronary artery disease, their mechanisms are poorly understood. To examine the status of beta-adrenergic receptors and postadrenergic receptor mechanisms in congestive heart failure due to myocardial infarction, the left coronary artery in rats was ligated for 4 and 8 weeks before studying the hemodynamic and biochemical changes due to isoproterenol, a beta-adrenoceptor agonist, or forskolin, a postreceptor agonist. Isolated perfused rat heart preparations were also used for studying changes in contractile function and cyclic AMP content. The hemodynamic actions and changes in the left ventricular cyclic AMP content in the experimental animals were depressed, not only in response to isoproterenol but also to forskolin. The density of beta-adrenoceptors was also decreased in the failing myocardium. In isolated perfused hearts from the 8-week experimental animals, isoproterenol-induced as well as forskolin-induced increases in both contractile force and cyclic AMP content in the left ventricle were depressed. These data suggest that defects in both beta-adrenergic receptor and postreceptor sites may be involved in attenuating the response of infarcted hearts to catecholamines.

Adenosine Monophosphate↗

Alterations in G-proteins in congestive heart failure in cardiomyopathic (UM-X7.1) hamsters.

In order to explain the attenuated sympathetic support during the development of heart failure, the status of beta-adrenergic mechanisms in the failing myocardium was assessed by employing cardiomyopathic hamsters (155-170 days old) at moderate degree of congestive heart failure. The norepinephrine turnover rate was increased but the norepinephrine content was decreased in cardiomyopathic hearts. The number and the affinity of beta receptors in the sarcolemmal preparations were not changed in these hearts at moderate stage of congestive heart failure. While the basal adenylyl cyclase activity was not altered in sarcolemma, the stimulation of enzyme activity by NaF, forskolin, Gpp(NH)p or epinephrine was depressed in hearts from these cardiomyopathic hamsters. Since G-proteins are involved in modifying the adenylyl cyclase activity, the functional and bioactivities as well as contents of both Gs and Gi proteins were determined in the cardiomyopathic heart sarcolemma. The functional stimulation of adenylyl cyclase by cholera toxin, which activates Gs proteins, was markedly depressed whereas that by Pertussis toxin, which inhibits Gi proteins, was markedly augmented in cardiomyopathic hearts. The cholera toxin and pertussis toxin catalyzed ADP-ribosylation was increased by 37 and 126%, respectively; this indicated increased bioactivities of both Gs and Gi proteins in experimental preparations. The immunoblot analysis suggested 74 and 124% increase in Gs and Gi contents in failing hearts, respectively. These results suggest that depressed adenylyl cyclase activation in cardiomyopathic hamsters may not only be due to increased content and bioactivity of Gi proteins but the functional uncoupling of Gs proteins from the adenylyl cyclase enzyme may also be involved at this stage of heart failure.

Adenosine Diphosphate Ribose↗

Alteration of collagenous protein profile in congestive heart failure secondary to myocardial infarction.

The rat model of myocardial infarction is characterized by progressive cardiac hypertrophy and failure. Rats with infarcts greater than 30% of the left ventricle exhibited early and moderate stages of heart failure 4 and 8 weeks after the occlusion of the left coronary artery, respectively. As heart failure is usually associated with remodeling of the extracellular matrix, a histological and biochemical study of cardiac collagenous proteins was carried out using failing hearts. Total collagen content in the right ventricle increased at 2, 4, and 8 weeks following occlusion of the left coronary artery whereas such a change in viable left ventricle was seen after 4 and 8 weeks. Total cardiac hydroxyproline concentration was increased in both right and left ventricular samples from the infarcted animals when compared to those of control; this increase was due to elevation of pepsin-insoluble collagen fraction. The myocardial noncollagenous/collagenous protein ratio was decreased in experimental right and left ventricular samples when compared to control samples. These findings suggest that an increase in cross-linking of cardiac collagen as well as disparate synthesis of collagenous and noncollagenous proteins occurs in this model of congestive heart failure.

Animals↗

Characterization of adenylyl cyclase in heart sarcolemma in the absence or presence of alamethicin.

Alamethicin is commonly used as an agent for unmasking the latent enzyme activities in vesicular membrane preparations; however, relatively little is known about the effect of this agent on the characteristics of adenylyl cyclase in heart sarcolemma. By employing rat heart sarcolemmal preparation, we observed 5 to 6 fold increase in adenylyl cyclase activity upon treatment with alamethicin. Kinetic experiments using various concentrations of MgATP revealed that the increase in adenylyl cyclase activity in alamethicin treated membranes was associated with an increase in Vmax as well as affinity of the substrate for the enzyme. Dose-responses of the control and alamethicin-treated preparations to various activators of adenylyl cyclase revealed that the sensitivity of the enzyme to forskolin, NaF and GppNHp, was markedly increased upon treating sarcolemma with alamethicin. The activation of adenylyl cyclase by forskolin was also enhanced by increasing the concentration of alamethicin in the incubation medium. Furthermore, there was a greater increase in adenylyl cyclase activity with different concentrations of Mn2+ in the presence of alamethicin. These results suggest that alamethicin treatment alters the characteristics of adenylyl cyclase in addition to unmasking the enzyme activity in the purified sarcolemmal vesicular preparation.

Adenosine Triphosphate↗

Characteristics and mechanisms of tachyphylaxis of cardiac contractile response to insulin.

Although insulin is known to cause internalization of its own receptors, the physiological significance of this phenomenon is not clear. In the isolated rat heart we observed that the positive inotropic effect of 25 munits/ml insulin was completely abolished if the heart was preperfused with insulin for 10 min. This tachyphylactic response to insulin began to appear 3-4 min after starting preperfusion with insulin and was partially reversible after 30 min of washing. Preperfusion with insulin did not affect the action of vanadate, which has insulin-like effect on glucose transport, or the actions of the other positive inotropic agents, isoproterenol and ouabain. The presence of propranolol in the perfusion medium, unlike atenolol, phenoxybenzamine, guanethidine, verapamil or quinidine, modified the inotropic as well as tachyphylactic responses to insulin. The positive inotropic and tachyphylactic responses to insulin were not altered in hearts from reserpine-treated animals. Perfusion of heart with glucose-free solution abolished the tachyphylaxis due to insulin. Likewise, no tachyphylactic response to insulin was evident when iodoacetate, but not sodium fluoride, was added in medium containing glucose. These results suggest that ATP formed during glycolysis may play an important role in insulin-induced tachyphylaxis with respect to cardiac contractile activity.

Adenosine Triphosphate↗

Intergeneric protoplast fusion between xylanase producing Bacillus subtilis LYT and Corynebacterium acetoacidophilum ATCC 21476.

Hybrids between a strain of Bacillus subtilis isolated in our laboratory and having the ability to degrade xylan and other complex polysaccharides and Corynebacterium acetoacidophilum, a lysine producer, were prepared by protoplast fusion. Based on distinctive parental biochemical characteristics the fusants were grouped into 9 categories, viz. BC1 through BC9. Three of the hybrids, BC5, BC7a and BC7b, were tested for their ability to produce xylanase and lysine. Both BC7a and BC7b produced xylanase but BC5 did not, however all of them produced lysine albeit to different degrees. These results demonstrate that intergeneric gene transfer takes place through protoplast fusion between these 2 important genera of bacteria and some of the fusants inherit the useful traits of both the parents.

Bacillus subtilis↗

The carpal tunnel syndrome: diagnostic utility of the history and physical examination findings.

STUDY OBJECTIVE: To assess the value of a history and physical examination findings in diagnosing the carpal tunnel syndrome, and to determine whether constellations of clinical findings identify patients at high or low risk for the carpal tunnel syndrome. DESIGN: Comparison of diagnostic tests with neurophysiologic testing. SETTING: Patients with upper extremity complaints of diverse causes referred to a neurophysiology laboratory for diagnostic studies. METHODS: Before nerve conduction testing, a history, demographic and physical examination data, and a hand pain diagram were obtained from each patient. Diagrams were categorized as indicating the classic carpal tunnel syndrome, or as probable, possible, or unlikely to indicate the carpal tunnel syndrome. Associations between clinical data and nerve conduction results were examined in univariate and multivariate analyses. RESULTS: Of 110 patients in the study, 44 (40%) had the carpal tunnel syndrome. Individually, the best predictors were hand pain diagram rating (positive predictive value, 0.59; 95% CI, 0.48 to 0.68) and Tinel sign (positive predictive value, 0.55, CI, 0.45 to 0.65). The combination of a positive Tinel sign and a probable or classic diagram rating had a positive predictive value of 0.71; CI, 0.53 to 0.85. Other findings from physical examination and the history were less useful. Just 9% of patients under 40 years of age with possible or unlikely diagram ratings had the carpal tunnel syndrome. CONCLUSIONS: With the exceptions of age, Tinel sign, and hand pain diagram rating, findings from the physical examination and the history had limited diagnostic utility. Patients under 40 years of age with possible or unlikely diagram ratings were at low risk for the carpal tunnel syndrome. This finding, which should be confirmed in an independent population, suggests that subsets of patients may be managed without nerve conduction studies.

Adult↗

Ethanol influence on calcium uptake and insulin release by rat islets.

Effect of acute ethanol treatment on simultaneous 45Ca++ uptake and insulin response to glucose was measured in isolated rat pancreatic islets. Ethanol, given ip 1 gm/Kg 1 h prior to sacrifice of the animal, decreased significantly 45Ca++ uptake and insulin response to 8.3 and 16.7 mM glucose. Addition of ethanol to the incubation media inhibited 45Ca++ uptake and insulin release in a dose-related matter. Ionophore A23187, which is known to enhance 45Ca++ efflux, decreased 45Ca++ uptake without affecting insulin release. Inhibitory effects of ethanol and ionophore A23187 were not additive when islets were exposed to both test substances simultaneously. Forskolin, an activator of the adenylate cyclase system potentiated the glucose mediated insulin response in rat islets. However, ethanol decreased the insulin response of islets exposed to glucose and forskolin. The data show that ethanol inhibits 45Ca++ uptake response to glucose and that ethanol influence on insulin release may involve a site beyond the formation of cyclic AMP in the process of excitation-secretion coupling.

Animals↗

Drug levels and antiparkinsonian drugs in neuroleptic-treated schizophrenic patients.

The limitations of antiparkinsonian treatment strategy when using anticholinergic drugs are determined by their side effects induced through excessive inhibition of parasympathetic functions. In the present study we have investigated the peripheral effects of antiparkinsonian agents on blood levels of concomitantly administered neuroleptic drugs. We have compared the anticholinergic and a dopamine mimetic antiparkinsonian agent in their effects on serum neuroleptic activity (SNA) and serum anticholinergic activity (SAA). Sixteen schizophrenic patients on chronic neuroleptic therapy with steady state neuroleptic levels were receiving either amantadine, 200 mg/day, or anticholinergic drugs (trihexyphenidyl, 10 mg/day, or benztropine, 6 mg/day) for the first 2 weeks, after which the amantadine group was crossed over to anticholinergic and the anticholinergic group to amantadine for the following 2 weeks. Blood samples were obtained once a week along with clinical testing. The results indicate that SAA was fivefold higher with benztropine than with trihexyphenidyl and that amantadine had no effect on SAA. Moreover, SNA was not altered either by anticholinergics or amantadine coadministration, indicating that the therapeutic blood neuroleptic levels are not compromised by antiparkinsonian administration.

Adult↗

Parathyroid hormone and calcitonin secretion in man: effect of dopamine agonists and antagonists.

This study was undertaken to evaluate the physiological role, if any, of dopamine (DA) in modulating parathyroid hormone (PTH) and calcitonin (CT) secretion in man. Infusion of DA (5 micrograms/kg/min) into 6 normal men, decreased serum immunoreactive prolactin (iPRL) and concomitantly increased serum iPTH to 140 +/- 6.8% of baseline (P less than 0.01) at 30 min, with decline thereafter, despite continuation of the DA infusion. Serum iCT levels did not significantly change. Chlorpromazine (50 mg IM), decreased serum iPTH to 75 +/- 5.4% and 79 +/- 3.7% of baseline (P less than 0.01) at 30 and 60 min, respectively, associated with an increase in iPRL. There was subsequent return of iPTH to baseline even though iPRL remained elevated. iCT levels did not significantly change. These observations would suggest that DA may play a physiological role in iPTH, but not iCT, secretion. However, infusion of more nearly physiological doses of DA (0.02, 0.2, and 2.0 micrograms/kg/min) lowered serum iPRL to levels similar to those after the larger DA dose, but with no concomitant increase in either iPTH or iCT. Also, 1) the DA agonist bromocriptine decreased serum iPRL without modifying iPTH or iCT; 2) the DA precursor, levodopa, and the DA antagonist, metoclopramide, had no effect on serum iPTH or iCT levels. These studies suggest that 1) the transient stimulatory effect of DA on iPTH secretion is pharmacological, and 2) DA does not have a physiological role in secretion of iPTH or iCT in man.

Adult↗

Effect of meal on serum parathyroid hormone and calcitonin: possible role of secretin.

Purified secretin infused in an estimated physiological dose caused an increase in serum immunoreactive PTH (iPTH) and calcitonin (iCT) in man. Ingestion of a gastric acid-stimulating test meal, a procedure known to increase endogenous secretin, caused increases in serum iPTH and plasma iCT in normal subjects. Ingestion of antacid with the test meal blunted the increase in both iPTH and iCT. Ingestion of the test meal by pernicious anemia patients with achlorhydria caused no stimulation of either serum iPTH or plasma iCT. Therefore, based on the observations that 1) exogenous secretin stimulated iPTH and iCT, 2) an acid-stimulating test meal is known to stimulate endogenous secretin release (4), 3) the test meal increased both serum iPTH and iCT in normal man, an effect nullified by simultaneous antacid ingestion, and 4) the test meal caused no increase in either iPTH or iCT in achlorhydric patients, we conclude that endogenous secretin possibly mediates this effect of test meal and, therefore, may play a physiological role in modulating the secretion of PTH and CT.

Adult↗

Effect of secretin on parathyroid hormone and calcitonin secretion.

The effect of secretin on secretion of parathyroid hormone (PTH) and calcitonin (CT) was evaluated by both in vitro and in vivo techniques. In in vitro studies with bovine parathyroid tissue, Secretin-Boots caused significant dose-related increases in PTH secretion. In in vitro studies with rat thyroparathyroid tissue, Secretin-Boots caused significant increases in both PTH and CT secretion. Infusion of Secretin-Boots or of synthetic secretin in biologically equivalent doses into rats caused similar increases in secretion of PTH and of CT. Infusion of multiple doses of synthetic secretin revealed a dose-related stimulation of both PTH and CT secretion. Infusion of Secretin-Boots into normal human subjects caused prompt and progressive significant increases in secretion of both PTH and CT, with return to baseline values within 90 min after termination of the infusion. These data suggest that secretin can stimulate hormonal secretion by parathyroid and thyroid C cells and that secretin may play a modulating role in the secretion of both PTH and CT.

Adult↗