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Biomedical subjects

M Ashraf

Publications and source records attributed to M Ashraf.

At least 73 records · Page 4Linked to original sources

Calcium preconditioning elicits strong protection against ischemic injury via protein kinase C signaling pathway.

We tested the hypothesis that elevation of [Ca2+]i during Ca2+ preconditioning (CPC) is a strong activator of protein kinase C (PKC) and confers unique protection against ischemic injury. CPC consisted of three cycles of Ca2+ depletion (1 minute each) and Ca2+ repletion (5 minutes each). Langendorff-perfused rat hearts were subjected to 40 minutes of global ischemia followed by 30 minutes of reperfusion. Significant functional recovery and decreased lactate dehydrogenase release were observed in CPC hearts compared with ischemic control hearts. In addition, ATP contents were significantly higher and cell structure was better preserved in CPC hearts than in ischemic control hearts. Administration of chelerythrine, a specific PKC inhibitor, completely abolished the CPC-induced cardioprotection. In other groups, in which Ca2+ influx during CPC was inhibited with verapamil, amiloride, and low Na+ perfusion, cardioprotection was significantly reduced. The prominent increase in the membrane PKC activity after CPC was in agreement with immunolocalization of PKC-alpha and PKC-delta in the cell membrane of CPC hearts. These results demonstrate that (1) a transient increase in [Ca2+]i is a prominent feature of CPC and is a strong stimulus for the activation of PKC, (2) the elevation of [Ca2+]i likely occurs via an L-type Ca2+ channel and Na(+)-Ca2+ exchanger, and (3) PKC plays a crucial role in the subcellular mechanisms of protection by CPC.

Animals↗

Menadione-induced oxidative stress in bovine heart microvascular endothelial cells.

OBJECTIVE: Oxidative stress from increased production of reactive oxygen species or decreased efficiency of inhibitory and scavenger systems may contribute to vascular injury. In this study, we developed an in vitro model of vascular injury by menadione-induced oxidative stress in bovine heart microvascular endothelial cells. METHODS: Oxidative stress was induced by exposure to menadione. Superoxide, hydrogen peroxide and hydroxyl radical formation was measured by superoxide dismutase-inhibitable cytochrome c reduction, the dichlorofluorescin technique and the salicylate method, respectively. Electron paramagnetic-spin resonance spectroscopy employing 5-5'-dimethyl-l-pyrroline-N-oxide for superoxide trapping was used. Endothelial cell cytotoxicity was assessed by lactate dehydrogenase release. RESULTS: Superoxide and hydroxyl radical were produced in a time- and concentration-dependent fashion. Fluorescence in the presence of dichlorofluorescin confirmed hydrogen peroxide formation. Endothelial cell cytotoxicity became evident after 5 h of menadione treatment at concentrations of 100 microM. 3-Aminobenzamide, a poly(ADP-ribose)polymerase inhibitor, and dimethylthiourea, a hydrogen peroxide and hydroxyl radical scavenger, decreased menadione cytotoxicity, whereas deferoxamine, an inhibitor of hydroxyl radical formation, did not. CONCLUSIONS: The results suggest that menadione toxicity is mediated by poly(ADP-ribose)polymerase activation via hydrogen peroxide formation and that menadione-treated bovine heart microvessel endothelial cells provide a suitable in vitro model to study oxidative stress in endothelial cells.

Animals↗

Interaction of singlet oxygen with 5'-nucleotidase in rat hearts.

This study was aimed to determine whether singlet oxygen (1O2) attenuates 5'-nucleotidase activity in the ischemic myocardium. Isolated rat hearts were exposed to either exogenous 1O2 produced by irradiating rose bengal or 40-min ischemia and reperfusion. Ecto-5'-nucleotidase activity was inhibited by exogenous 1O2 (3.74 +/- 0.38 mumol/min/g dry weight), when compared with normal control (7.52 +/- 0.41 mumol/min/g dry weight; P < 0.05). The enzymatic activity was significantly preserved by histidine (25 mM)--a 1O2 scavenger (7.04 +/- 0.61 mumol/min/g dry weight; P < 0.05 v rose bengal group). After ischemia, the activity of ecto-5'-nucleotidase was greatly reduced (2.51 +/- 0.25 mumol/min/g dry weight), when compared with normal control. Histidine significantly enhanced ecto-5'-nucleotidase activity (6.55 +/- 0.52 mumol/min/g dry weight, P < 0.05 v ischemic control). Adenosine release was consistent with ecto-5'-nucleotidase activity. The time course studies of effects of 1O2 on coronary flow, cardiac function, and LDH release revealed that the damage by 1O2 to ecto-5'-nucleotidase activity and adenosine release primarily accounted for impaired coronary flow, cardiac dysfunction, and impaired cardiac metabolism. Lipid peroxidation induced by exogenous 1O2 or ischemia was in parallel with ecto-5'-nucleotidase deactivation by 1O2. It is concluded that 1O2 causes inactivation of ecto-5'-nucleotidase and attenuation of adenosine release which could possibly be one of the important mechanisms of oxygen radical-mediated myocardial injury.

5'-Nucleotidase↗

Antioxidative properties of histidine and its effect on myocardial injury during ischemia/reperfusion in isolated rat heart.

We wished to determine whether histidine scavenges hydroxyl radical, H2O2, and superoxide anion in vitro and to investigate the protective effect of histidine on isolated perfused rat hearts after global ischemia (40 min) and reperfusion (30 min) (I/R). Left ventricular (LV) function was recorded and coronary effluent was collected for measurement of lactate dehydrogenase (LDH) before ischemia and at 5, 10, 15, and 30 min of reperfusion. At the end of the experiment, a portion of the LV wall was fixed with 2% glutaraldehyde for morphological analysis; the remaining heart was immediately frozen in liquid nitrogen for determination of adenine nucleotides. Histidine effectively quenched hydroxyl radicals and H2O2, but not superoxide anions, in in vitro and in vivo conditions. Hearts treated with histidine exhibited significantly greater functional recovery during reperfusion as compared with nontreated hearts (p < 0.05). Cell morphology was well preserved, and enzyme release was significantly attenuated by histidine treatment (p < 0.05). Histidine raised the ATP level to 73% and the creatine phosphate level to 68% of normal control during reperfusion. Total adenine nucleotide pool and energy charge rate in histidine-treated hearts significantly increased as compared with those in nontreated hearts (p < 0.05), but no effect on ATP and creatine phosphate was noted during ischemia, Histidine prevents postischemic reperfusion injury in isolated heart by inhibiting reactive O2 species and preserving high-energy phosphates (HEP).

Adenosine Triphosphate↗

Adenosine attenuates calcium paradox injury: role of adenosine A1 receptor.

The present study was conducted to test the hypothesis that adenosine attenuates the Ca2+ paradox (PD) injury via stimulation of adenosine A1 receptors linked to Gi proteins in the isolated rat heart. Treatment of adenosine reduced maximum lactate dehydrogenase release and ATP loss compared with regular Ca2+ PD. Recovery of mechanical activity after Ca2+ repletion was observed only in heart treated with adenosine before and during the Ca2+ PD. Significant preservation of myocytes was observed in adenosine-treated hearts compared with the regular Ca2+ PD. Adenosine exerted its effects in a dose-dependent manner, being maximum at 100 microM. The protective effects were mediated by adenosine A1 receptor activation since the adenosine A1 receptor agonist N6-phenylisopropyladenosine provided protection similar to adenosine-treated heart and was blocked by A1 receptor antagonist and pertussis toxin. This study suggests that protection by adenosine against the lethal injury of the Ca2+ PD is mediated by adenosine A1 receptor and a pertussis toxin-sensitive inhibiting G protein.

Adenosine↗

Direct detection and quantification of singlet oxygen during ischemia and reperfusion in rat hearts.

To detect singlet oxygen (1O2) in postischemic reperfused hearts, 5,8-endoperoxide, an oxidation product of beta-carotene, was used as a marker for 1O2 generation and was quantified using high-performance liquid chromatography (HPLC). Isolated rat hearts were subjected to ischemia for 5, 10, 20, 30, and 60 min followed by 10 min of reperfusion with buffer containing 25 microM beta-carotene. The coronary effluent was collected, extracted, and injected into the HPLC unit. The production of 5,8-endoperoxide was maximum during the first 2 min of reperfusion. Maximal accumulated amount of 1O2 was observed in hearts subjected to 60-min ischemia (36.2 +/- 1.7 nmol.10 min-1.g-1) as compared with 10-min ischemia (6.2 +/- 1.0 nmol.10 min-1.g-1). There was a good correlation between the amount of 1O2 production and cardiac function. Treatment with 25 mM histidine significantly decreased 5,8-endoperoxide from 7.02 +/- 0.47 to 0.98 +/- 0.11 nmol.min-1.g-1 (P < 0.01) and improved cardiac function in the group with 60-min ischemia. This study demonstrates that 1) the present method is useful and reliable for the measurement of 1O2 in the heart, 2) 1O2 production during reperfusion is dependent on the duration of initial ischemia, and 3) 1O2 is one of the major factors in postischemic reperfusion injury.

Animals↗

Effect of graded epinephrine infusion on blood lactate response to exercise.

In an attempt to determine whether the lactate threshold (LT) is the result of a sudden increase in plasma epinephrine (Epi), eight healthy college-aged males (22.4 +/- 0.4 yr) were recruited to perform three cycle ergometer exercise tests. Each subject performed a graded exercise test (GXT) to determine LT, Epi threshold, and norepinephrine threshold (64.6 +/- 2.4, 62.5 +/- 2.4, and 60.8 +/- 4.3% peak oxygen uptake, respectively). Each subject also completed, in random order, two 30-min submaximal (20% peak oxygen uptake below LT) exercise tests. During one test, graded Epi infusions were carried out at rates of 0.02-0.12 micrograms.kg-1.min-1; the other served as a control test. Infusion resulted in plasma Epi concentrations similar to those observed during GXT. The increase in blood lactate with Epi infusion was significantly greater than that during the control test (3.0 +/- 0.3 vs. 1.4 +/- 0.1 mmol/l at minute 30) but did not approach levels exhibited during GXT. We suggest an interaction of the increasing plasma Epi with other factors may be responsible for the sudden increase in blood lactate during graded exercise.

Adult↗

Antifasciolic efficacy of indigenous plant drugs: kalonji, shahterah and karanjwa in buffaloes.

A study was carried out to evaluate antifasciolic effect of powdered plant drugs including Kalonji (Nigella sativa seeds), Shahterah (Fumaria parviflora aerial parts) and Karanjwa (Caesulpinia crista seeds) in buffaloes. During the search for the infected animals, prevalence of fascioliasis in the random samples was 33.1 +/- 0.7% but in symptomatically suspected cases it came to be 64 +/- 3.2%. The drug trial results showed that all the three drugs possess significant efficacies against fascioliasis. Their highest doses tested produced highly significant (P<0.001) decrease in EPG counts on 15th days. Maximum antifasciolic efficacy, judged on the basis of % EPG count reduction was shown by Shahterah (93.2 +/- 0.5%) which was followed by Karanjwa (89.7 +/- 1.7%) and Kalonji (88.2 +/- 0.4%). No visible side effects were produced by any of these plant drugs. Single oral treatment with 25 mg/kg of Kalonji or 60 mg/kg of Shahterah and 40 mg/kg of Karanjwa exerts highly significant antifasciolic efficacies on the day 15 after treatment. From these data, it is conceivable that at these dosages the drugs are sufficiently potent and safe to treat fasciola infection in buffaloes. However, further chemical and pharmacological studies would decide the exact mechanism(s) of action, the active principles contained and the real worth of these indigenous drugs for the treatment of fascioliasis in the ruminants.

Journal Article↗

Antimicrobial studies of the leaf of cannabis sativa L.

In vitro antimicrobial studies were conducted with aqueous, ethanolic and Petroleum ether extracts of the leaves of Cannabis sativa L. The acidic fraction was obtained from the ethanolic extract and 2% Sodium Hydroxide extract. Ethanolic extract, petroleum ether extract and the acidic fraction exhibited activity both against Gram-positive and Gram-negative bacteria and also against the fungi used in the study. The aqueous extract however, did not show any antimicrobial activity.

Journal Article↗

Massive overdose of sustained-release verapamil: a case report and review of literature.

Verapamil 99 is a commonly prescribed medicine for treatment of hypertension, angina, and migraine headache. Toxicity with sustained-release verapamil may be prolonged, and manifest with hypotension, bradycardia, metabolic acidosis, and hyperglycemia. Currently, because of the lack of a specific antidote management of verapamil, toxicity is mainly supportive. Treatment with inotropic support, glucagon, calcium, and cardiac pacing may be effective in some cases. A review of 20 cases and a case report of sustained-release verapamil overdose are described. The authors describe a patient who ingested 24 g of slow-release verapamil. This is the largest overdose of sustained-release verapamil reported in English literature. The patient was managed aggressively with gastric lavage, inotropic support, and continuous infusion of calcium and glucagon. The patient's survival may have been due to the continuous intravenous calcium gluconate and glucagon infusion. Both of these treatment modalities should be considered in patients with moderate to severe calcium channel blocker overdose.

Calcium Gluconate↗

Characteristics of chronic left ventricular dysfunction induced by coronary embolization in a canine model.

We have characterized the coronary vascular reserve, left ventricular function and inotropic response in dogs with chronic heart failure consequent to intracoronary embolization (EMB) with 50 microns spheres. We conducted studies 12-39 months after embolization and contrasted the findings with normal (CON) dogs. Acute embolization produced sustained LV volume enlargement and increased wall thickness, reduction of LV ejection fraction and elevated end-diastolic pressures; resting catecholamine levels were also increased. Responses to phenylephrine, nitroprusside, and dobutamine were identical in CON and EMB and coronary vasodilator reserve was reduced despite larger coronary vascular volume. Analysis by light microscopy showed a diffuse focal and interstitial fibrosis distributed uniformly from endocardium to epicardium associated with 14% loss of myocytes. This created a functional separation of myocardial muscle bundles and a disruption of the syncytial nature of the heart. Electron microscopy of the areas of fibrosis revealed myocytes in states ranging from normal appearing, to ghosts with evidence of cytolysis and loss of the sarcolemma. This model of chronic congestive heart failure with LV systolic dysfunction and elevated LV diastolic pressures shares a number of features with the syndrome in humans.

Animals↗

Characterization of exogenous hydroxyl radical effects on myocardial function, metabolism and ultrastructure.

EDTA-chelated ferrous chloride (Fe(2+)-EDTA) mixed with ascorbic acid (VC) was shown in vitro to produce 2,3-dihydroxybenzoic acid (2,3-DHBA), one of the hydroxyl radical (.OH) derivatives formed from reaction with 1 mM salicylic acid. The .OH generating system of Fe(2+)-EDTA (5, 25 and 50 microM) mixed with VC (50, 250 and 500 microM) was perfused for 15 min to the isolated rat hearts to characterize the effect of exogenous .OH on cardiac function, metabolism, and structure. A dose-effect relationship was observed between .OH dosage and ventricular dysfunction, increase in coronary flow, structural damage, decrease in ATP and increase in lipid peroxidation. Catalase (CAT, 500 U/ml) and deferoxamine (DFX, 10 mM) significantly (P < 0.05) reduced .OH formation in vitro, but superoxide dismutase (SOD, 100 U/ml) did not. When these agents were given to the heart perfused with 50 microM Fe(2+)-EDTA plus 500 microM VC, SOD failed to modify any myocardial alterations whereas CAT and DFX completely reversed them. Addition of 500 microM hydrogen peroxide (H2O2) to the 50 microM Fe(2+)-EDTA plus 500 microM VC further caused a 14-fold increase in .OH generation. Addition of H2O2 (500 microM) to the .OH generating mixture induced more conspicuous myocardial changes compared with the mixture without H2O2 addition, but the extent of those changes other than increase in coronary flow was less than that caused by perfusion with 500 microM H2O2 alone. These results further suggest that the cardiac changes induced by the .OH generating system are due to the combined effects of .OH and H2O2 which is formed as an intermediate product.

Adenosine Triphosphate↗

Formulation of a single-component kit for the preparation of technetium-99m labelled ethyl cysteinate dimer: biological and clinical evaluation.

Ethyl cysteinate dimer (ECD) labelled with reduced technetium-99m has recently been proposed as a promising radiopharmaceutical for brain perfusion imaging. In the present study a single-component kit formulation has been developed, thus simplifying the radiolabelling procedure. A method of analysis by electrophoresis has also been developed, permitting identification of radiochemical impurities in the preparation. 99mTc-ECD prepared by the single-component kit was further evaluated in primates and humans. The results demonstrated that the complex is stable in vivo, rapidly extracted and retained in the brain tissue for a sufficient time for single-photon emission tomography studies. Therefore the present single-component kit formulation can be proposed as a reliable instant freeze-dried kit for routine preparation of 99mTc-ECD required for scintigraphic assessment of regional cerebral blood flow.

Adult↗

A novel nuclear magnetic resonance (NMR) imaging method for measuring the water front penetration rate in hydrophilic polymer matrix capsule plugs and its role in drug release.

An NMR imaging method was developed to estimate the rate of water movement in slow-release capsule matrices of pseudoephdrine HCl and hydroxypropyl cellulose (HPC). Test capsules were first placed in a USP method 2 (paddles, 50 rpm) dissolution apparatus. Each plug was removed from the dissolution medium at predetermined times, blotted dry, and placed within the magnetic field of a General Electric 400-MHz wide-bore NMR spectrometer equipped with a microimaging accessory. Images were recorded along the transverse plane of each plug. The water penetration rate was determined by comparison of the cut and weighed contour plots of the images acquired. After 1 hr, the plugs tamped to 200 N exhibited water penetration to the center, while only 45% of the drug was released. The percentage dry matrix was fitted to the Jost equation to obtain a diffusion coefficient of 4.15 x 10(-6) cm2/sec. NMR imaging is set forth as an important and practicable technique to investigate drug formulations. In the HPC matrix system of this study, the NMR imaging results convincingly revealed the rate of hydration front penetration not to be a rate-limiting step in the drug release process.

Capsules↗

Ca2+ preconditioning elicits a unique protection against the Ca2+ paradox injury in rat heart. Role of adenosine. Fixed.

Repeated Ca2+ depletion and repletion of short duration, termed Ca2+ preconditioning (CPC), is hypothesized to protect the heart from lethal injury after exposing it to the Ca2+ paradox (Ca2+ PD). Hearts were preconditioned with five cycles of Ca2+ depletion (1 minute) and Ca2+ repletion (5 minutes). These hearts were then subjected to Ca2+ PD, ie, one cycle of Ca2+ depletion (10 minutes) and Ca2+ repletion (10 minutes). Hearts subject to the Ca2+ PD underwent rapid necrosis, and myocytes were severely injured. CPC hearts showed a remarkable preservation of cell structure; ie, 65% of the cells were normal in CPC hearts compared with 0% in the Ca2+ PD hearts. LDH release was significantly reduced in CPC hearts compared with Ca2+ PD hearts (2.45 +/- 0.18 and 8.02 +/- 0.7 U.min-1 x g-1, respectively). ATP contents of CPC hearts were less depleted compared with the Ca2+ PD hearts (5.9 +/- 0.8 and 3.0 +/- 0.16 mumol/g dry weight, respectively). Addition of the adenosine A1 receptor agonist R-phenylisopropyl adenosine before and during Ca2+ PD provided protection similar to that in CPC hearts, whereas the nonselective adenosine A1 receptor antagonist, 8-(p-sulfophenyl)-theophylline, blocked the beneficial effects of CPC. CPC-mediated protection was aborted when hearts subjected to CPC were treated with pertussis toxin (the guanine nucleotide or G-protein inhibitor). The present study suggests that Ca2+ preconditioning confers significant protection against the lethal injury of Ca2+ PD in rat hearts. Cardioprotection appears to result from adenosine release during preconditioning and by Gi-protein-modulated mechanisms.

Adenosine↗

Changes in immunoglobulin levels in zinc-deficient mice infected with Trypanosoma musculi.

A metabolic imbalance technique was used to study the effects of zinc deficiency on immunoglobulin levels in mice infected with Trypanosoma musculi or immunized with parasite products. Zinc-deficient mice developed higher numbers of parasitemia earlier and exhibited prolonged infection. Irrespective of the diet, higher IgG1, IgG2b, and IgM levels, lower IgG2a and IgA levels, and uniform IgG3 levels were exhibited primarily by mice infected with T musculi and to a lesser extent by mice immunized with parasite products. Zinc-deficient mice showed smaller increases in IgG1 and IgM, but larger gains in IgG2b compared with mice on full-complement and pair-fed diets. However, IgG2a decreased significantly in zinc-deficient mice.

Animals↗

Alteration of gene expression by restriction enzymes electroporated into plant cells.

The alteration in the expression of a beta-glucuronidase (GUS) reporter gene was used to monitor the effect of restriction endonucleases electroporated into the tobacco (Nicotiana tabacum L.) protoplasts. Restriction enzyme (RE) Hind III which does not have a recognition site within the gene cassette, had little effect on enzyme activity. In contrast restriction endonucleases Hae III and Sau3A1 which possess 8 and 16 recognition sites in the GUS cassette, were found to reduce the enzyme activity by 89% and 94% respectively when compared to control electroporations. Restriction-site mutation analysis (RSM) and Southern blot analysis indicated the enzymatic degradation of GUS coding sequence by the REs Hae III and Sau3A1. Results of this study suggest that on electroporation, REs can enter into plant cells and alter the expression of the GUS gene. The alteration of gene expression is thus correlated with the digestion of GUS template DNA. Future applications of this technique could include addressing fundamental questions with regard to DNA repair, site-specific recombination, identifying mutations, insertional mutagenesis, enhancement of stable transformation and gene tagging in plants.

Base Sequence↗