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Biomedical subjects

S Khwaja

Publications and source records attributed to S Khwaja.

At least 19 recordsLinked to original sources

Paraneoplastic motor neuron disease with type 1 Purkinje cell antibodies.

Autoimmune serological testing is a useful aid for identifying a paraneoplastic basis for sporadic motor neuron disease. A 67-year-old woman with ovarian carcinoma presented with progressive weakness. Neurological examination was suggestive of motor neuron disease with signs of upper motor neuron disorder. Electromyography revealed severe motor neuronopathy of the upper extremities. Characteristic type 1 Purkinje cell antibodies (anti-Yo antibody) was detected in the serum diluted at 1:61,400.

Adenocarcinoma↗

Cholesterol supplementation prevents necrosis and inflammation but enhances fibrosis in alcoholic liver disease in the rat.

Based on studies that show a role for the low-density lipoprotein (LDL)-receptor in arachidonic acid delivery and eicosanoid synthesis in macrophages, the present study investigated the effect of cholesterol supplementation on pathological changes and thromboxane (TX) synthesis in alcoholic liver injury. Male Wistar rats were intragastrically fed ethanol with either corn oil or fish oil for 1 month. Control rats received isocaloric amounts of dextrose instead of ethanol. An additional group of rats fed either ethanol or dextrose with fish oil or corn oil were supplemented with 1% cholesterol. At the time of killing, all rats had the following evaluated: liver histopathology, lipid peroxidation, liver and plasma thromboxane levels, plasma endotoxin and messenger RNA (mRNA) levels of LDL-receptor, tumor necrosis factor alpha (TNF-alpha), cyclooxygenase (Cox)-1 and -2, and transforming growth factor beta (TGF-beta). Rats fed ethanol with either fish oil or corn oil developed fatty liver, necrosis, inflammation, and central vein collagen deposition. Cholesterol supplementation enhanced the degree of fibrosis but prevented necrosis and inflammation. These alterations in pathological changes by cholesterol were accompanied by absent TNF-alpha and Cox-2 mRNAs, decreased thromboxane levels, decreased lipid peroxidation, and increased TGF-beta mRNA. Cholesterol enrichment of the diet thus decreases proinflammatory components, but enhances fibrosis in ethanol-fed rats.

Animals↗

Dietary saturated fatty acids down-regulate cyclooxygenase-2 and tumor necrosis factor alfa and reverse fibrosis in alcohol-induced liver disease in the rat.

We investigated the potential of dietary saturated fatty acids to decrease endotoxemia and suppress expression of cyclooxygenase 2 (Cox-2) and tumor necrosis factor alpha (TNF-alpha) in established alcohol-induced liver injury. Six groups (five rats/group) of male Wistar rats were studied. Rats in group 1 were fed a fish oil-ethanol diet for 6 weeks. Rats in groups 2, 3, and 4 were fed fish oil and ethanol for 6 weeks. Ethanol administration was stopped at this time, and the rats were switched to isocaloric diets containing dextrose with fish oil (group 2), palm oil (group 3), or medium-chain triglycerides (group 4) as the source of fat for an additional 2 weeks. Rats in groups 5 and 6 were fed fish oil-ethanol and fish oil-dextrose, respectively, for 8 weeks. Liver samples were analyzed for histopathology, lipid peroxidation, and levels of messenger RNA (mRNA) for Cox-2 and TNF-alpha. Concentrations of endotoxin were determined in plasma. The most severe inflammation and fibrosis were detected in groups 1 and 5, as were the highest levels of endotoxin, lipid peroxidation, and mRNA for Cox-2 and TNF-alpha. After ethanol was discontinued, there was minimal histological improvement in group 2 but near normalization of the histology, including regression of fibrosis, in groups 3 and 4. Histological improvement was associated with decreased levels of endotoxin, lipid peroxidation, and reduced expression of Cox-2 and TNF-alpha. The data indicate that a diet enriched in saturated fatty acids (groups 3 and 4) effectively reverses alcohol-induced liver injury, including fibrosis. The therapeutic effects of saturated fatty acids may be explained, at least in part, by reduced endotoxemia and lipid peroxidation, which in turn result in decreased levels of TNF-alpha and Cox-2.

Animals↗

Thromboxane inhibitors attenuate pathological changes in alcoholic liver disease in the rat.

BACKGROUND & AIMS: Thromboxane levels correlate with severity of liver injury in rats given alcohol. The aim of this study was to evaluate the effect of thromboxane inhibitors on pathological changes in experimental alcoholic liver disease. METHODS: Male Wistar rats were given a liquid diet and ethanol intragastrically for 1 month. The thromboxane inhibitors tested were a thromboxane receptor antagonist (TXRA) and a thromboxane synthase inhibitor (TXSI). Pathological changes, liver and plasma thromboxane levels, 6-ketoprostaglandin F1 alpha levels, lipid peroxidation, and messenger RNA levels for tumor necrosis factor (TNF)-alpha and transforming growth factor (TGF) beta were evaluated. RESULTS: Treatment with thromboxane inhibitors prevented necrosis and inflammation. In the TXSI-treated group, fatty liver was also decreased. Ethanol administration led to a 3-4-fold increase in liver thromboxane levels; a reduction in thromboxane levels and lipid peroxidation was seen in the TXSI group. In all treatment groups, TNF-alpha and TGF-beta messenger RNA levels were decreased. CONCLUSIONS: The prevention of necroinflammatory changes in thromboxane-treated groups is related to a decrease in TNF-alpha levels. Inhibition of TGF-beta expression may also prevent fibrosis in ethanol-treated rats.

Animals↗

Enhanced cyclooxygenase-2 gene expression in alcoholic liver disease in the rat.

BACKGROUND & AIMS: Inflammatory stimuli and lipid peroxidation up-regulate cyclooxygenase (COX)-2. This study evaluated the relationship between inflammatory mediators, COX expression, and pathological changes in experimental alcoholic liver disease. METHODS: Rats (5 per group) were fed ethanol and a diet containing saturated fat, corn oil, or fish oil by intragastric infusion. Dextrose isocalorically replaced ethanol in controls. In the first set of experiments, whole livers were analyzed. In the second set of experiments, Kupffer cells, endothelial cells, and hepatocytes were isolated from rats in each group. Pathological analyses and measurements of lipid peroxidation, tumor necrosis factor (TNF)-alpha, COX-1 and COX-2 messenger RNA (mRNA), endotoxin, and liver and plasma thromboxane were performed. RESULTS: Increased expression of COX-2 mRNA was detected in the livers of rats showing necroinflammatory changes. The Kupffer cell was the cell primarily responsible for the increase in COX-2 mRNA level. Increased expression of COX-2 was associated with increased levels of endotoxin, TNF-alpha mRNA, lipid peroxidation, and synthesis of thromboxane. COX-1 mRNA was decreased in Kupffer cells in rats with the most severe liver injury. CONCLUSIONS: Up-regulation of COX-2 in alcoholic liver injury occurred in the presence of proinflammatory stimuli and resulted in increased synthesis of inflammatory and vasoactive eicosanoids. Down-regulation of COX-1 may result in decreased synthesis of cytoprotective eicosanoids and additionally exacerbate liver injury.

Animals↗

Effect of angiotensin converting enzyme inhibition by perindopril on proteinuria of primary renal diseases.

Many primary renal diseases are associated with marked proteinuria resistant to immunosuppressive therapy. Short-term treatment with angiotensin converting enzyme (ACE) inhibitors may decrease proteinuria in these patients, but the long-term effect of these agents on urinary protein excretion is not known. We conducted a double-blind, parallel-design, placebo-controlled study of 1 year duration to evaluate the efficacy of the new ACE inhibitor, perindopril, in reducing proteinuria in patients with nephrotic syndrome due to histologically proven membranous and membranoproliferative glomerulonephritis and focal segmental glomerulosclerosis. Half of the patients treated with perindopril displayed a decrease in urinary protein excretion from 6.1 +/- 1.0 to 1.2 +/- 0.5 g/24 h, and a rise in serum albumin levels. In the placebo group, protein excretion increased modestly and serum albumin level did not change. There was no difference between the responders and nonresponders to perindopril in age, blood pressure, level of creatinine clearance or urinary sodium excretion. However, the degree of proteinuria before treatment with perindopril was significantly (p < 0.01) higher in the nonresponders. In 3 patients in whom the treatment with perindopril was extended for 18-24 months, urinary protein excretion remained below 1 g/24 h. The data show that perindopril: (1) is an effective agent in the treatment of proteinuria of primary renal diseases; (2) the effect is sustained for up to 2 years if the administration of the drugs is maintained, and (3) this action of perindopril does not depend on the level of sodium intake.

Adult↗

Alterations in thromboxane synthase and thromboxane A2 receptors in experimental alcoholic liver disease.

We have previously shown that hepatic thromboxane production is increased in experimental alcoholic liver disease. The present study was designed to investigate the cell type in liver responsible for increased thromboxane synthesis and the role of the thromboxane receptor system in the pathogenesis of liver injury. Male Wistar rats were divided into four groups and fed a liquid diet with dextrose or ethanol for 2, 4 and 8 weeks. Medium chain triglycerides or corn oil provided the dietary fatty acids. Kupffer cells, endothelial cells and hepatocytes were isolated from rats fed the different diets for 4 weeks. Liver histopathology, thromboxane synthase mRNA and protein, thromboxane levels and thromboxane receptor mRNA were evaluated in each group. In rats fed corn oil and ethanol, an increase in thromboxane synthase and liver levels of thromboxane metabolites were significantly higher than in the corn oil-dextrose-fed group and were correlated with the presence of pathological changes in the liver. Kupffer cells showed increased expression of thromboxane synthase. In rats fed medium chain triglycerides and ethanol, the levels of thromboxane synthase mRNA and protein were significantly lower than in the corn oil-ethanol-fed groups (P < .01) and liver injury was absent. However, the levels of thromboxane synthase mRNA, protein and thromboxane were significantly higher in the medium chain triglyceride-ethanol-fed rats than in the respective dextrose-fed controls. Among the different cell types, thromboxane A2-receptor mRNA levels were highest in the Kupffer cells in corn oil-ethanol-fed rats. The increase in thromboxane synthase in Kupffer cells together with an increase in thromboxane receptor levels suggests than thromboxanes may contribute to liver injury in ethanol-fed rats.

Animals↗

Elevated plasma levels of hyaluronic acid indicate endothelial cell dysfunction in the initial stages of alcoholic liver disease in the rat.

BACKGROUND/AIMS: We used the intragastric feeding rat model for alcoholic liver disease to evaluate the relationship between morphologic and functional indicators of endothelial cell dysfunction. METHODS: Twelve groups of rats (4-5 rats/group) were fed the following diets: saturated fat and dextrose (SD), saturated fat and ethanol (SE), corn oil and dextrose (CD), corn oil and ethanol (CE). Four of the 12 groups were sacrificed at 2 weeks, four groups at 4 weeks and remaining four groups at 8 weeks. The following were evaluated at sacrifice: pathologic changes in the liver, endothelial cell proliferation using a monoclonal antibody to proliferating cell nuclear antigen, factor VIII-related antigen staining of endothelial cells in liver, plasma endotoxin, hyaluronan and prostaglandin F2 alpha. RESULTS: Only CE rats at 4 and 8 weeks showed pathologic changes. The plasma levels of HA were significantly higher in the CE groups compared to the other groups at all time intervals studied. In the CE rats, a significant correlation was obtained between plasma endotoxin and hyaluronan (r = 0.84, p < 0.01). Endotoxin levels also correlated significantly with the number of G1/S arrested hepatic sinusoidal endothelial cell (r = 0.61, p < 0.05). A role for prostaglandin F2 alpha, in causing endothelial dysfunction, was suggested by a significant correlation between plasma hyaluronan and prostaglandin F2 alpha levels (r = 0.95, p < 0.01). Positive factor VIII related antigen staining of hepatic endothelial cells was seen in rats with high plasma hyaluronan levels. CONCLUSION: We propose that endotoxin, mediating part of its effect through prostaglandin F2 alpha, plays a role in hepatic sinusoidal endothelial cell G1/S arrest. This morphologic change, associated with increased plasma hyaluronan levels, precedes capillarization in this model of alcoholic liver injury.

Animals↗

Role of transforming growth factor-[beta]1 in inhibiting endothelial cell proliferation in experimental alcoholic liver disease.

We used the intragastric feeding rat model for alcoholic liver disease to investigate the relationship between transforming growth factor (TGF)-beta 1 and inhibition of endothelial cell proliferation. Twelve groups of male Wistar rats (four to five rats per group) were fed ethanol or dextrose with either corn oil or saturated fat for 1-, 2-, and 4-week periods. All control animals were pair fed the same diets as ethanol-fed rats except that ethanol was isocalorically replaced by dextrose. In the ethanol-fed groups, nonparenchymal cells were isolated and TGF-beta 1 was measured in the nonparenchymal cell supernatant. Liver pathology and endothelial cell proliferation with an antibody to proliferating cell nuclear antigen were studied in all groups. Plasma TGF-beta 1 was measured in all rats. Pathological changes (fatty liver, necrosis, and inflammation) were observed only in the corn oil/ethanol-fed rats at 4 weeks. Significantly higher levels of TGF-beta 1 were seen in both plasma and nonparenchymal cell supernatant in rats fed corn oil and ethanol; plasma levels of TGF-beta 1 were not significantly different between the dextrose-fed controls and saturated fat/ethanol-fed rats. A significant inverse correlation (r = -0.89, P < 0.01) was seen between plasma TGF-beta 1 and the number of endothelial cells arrested at G1/S. Immunohistochemistry revealed the presence of TGF-beta 1 staining in interstitial macrophages only in rats fed corn oil and ethanol. The present study provides evidence for a role for TGF-beta 1 in inhibiting endothelial cell proliferation in experimental alcoholic liver disease. Arrest of endothelial cells may lead to their differentiation and/or to produce mediators that could stimulate other cells such as Ito cells. Sustained TGF-beta 1 may also lead to Ito cell production of extracellular matrix.

Animals↗

Eicosanoid production in experimental alcoholic liver disease is related to vitamin E levels and lipid peroxidation.

We investigated the association between vitamin E, lipid peroxidation and eicosanoid production in experimental alcoholic liver injury. We used the intragastric feeding rat model in which animals were fed corn oil and ethanol (CO+E) and corn oil and dextrose (CO+D) for 2 and 4 week periods. At sacrifice, we measured plasma levels of alpha-tocopherol, 8-isoprostane, thromboxane B2 (TXB2) and 6-ketoprostaglandin F1 alpha (6-KetoPGF1 alpha). Animals fed CO+E had significantly lower concentrations of alpha-tocopherol and higher concentrations of 8 isoprostane at both 2 and 4 weeks. a significant inverse correlation was seen between alpha-tocopherol concentrations and the TXB2: PGF1 alpha ratio (r = 0.72, p < 0.01). A positive correlation was seen between the TXB2: PGF1 alpha ratio and 8 isoprostane levels (r = 0.84, p < 0.001). These results suggest that vitamin E depletion and enhanced lipid peroxidation may affect eicosanoid metabolism in experimental alcoholic liver disease in such a way so as to increase the thromboxane to prostacyclin ration.

Animals↗

Decreased prostacyclin production by liver non-parenchymal cells precedes liver injury in experimental alcoholic liver disease.

We used the intragastric feeding rat model for alcoholic liver disease to investigate the relationship between prostacyclin and liver injury. Rats were fed the following diets for periods ranging from 1 to 8 weeks: corn oil plus ethanol (CO+E), corn oil plus dextrose (CO+D), saturated fat plus ethanol (SF+E) and saturated fat plus dextrose (SF+D). Prostacyclin production (assessed by 6-ketoprostaglandin F1 alpha) by liver non-parenchymal cells decreased steadily over the 8 week period in animals fed CO+E (liver injury present) whereas in animals fed SF+E (no liver injury) there was no change in prostacyclin production. Plasma levels of 6-ketoprostaglandin F1 alpha were also significantly lower in the CO+E group compared to the other groups studied. We propose that decreased prostacyclin production by liver non-parenchymal cells may contribute to the hepatotoxic effect of ethanol.

6-Ketoprostaglandin F1 alpha↗

Plasma endothelin levels in chronic ethanol fed rats: relationship to pathologic liver injury.

We used the intragastric feeding rat model for alcohol liver disease to investigate the relationship between endothelin and pathologic liver injury. Rats were fed the following diets for periods of 1, 2 and 4 weeks: corn oil plus ethanol (CE), corn oil plus dextrose (CD) and saturated fat plus ethanol (SE). Plasma endothelin levels were significantly higher in the CE group compared to the other groups at all time periods studied. The CE animals, also, developed pathologic liver injury which is in contrast to the SE and CD animals which showed no pathologic changes. We propose that endothelin, because of its powerful vasoconstrictive effects, leads to a reduction in hepatic blood flow which is important in the pathogenesis of alcoholic liver disease.

Animals↗

Plasma levels of a novel noncyclooxygenase-derived prostanoid (8-isoprostane) correlate with severity of liver injury in experimental alcoholic liver disease.

We used the intragastric feeding rat model for alcoholic liver disease to investigate the relationship between pathological severity and lipid peroxidation. Lipid peroxidation was assessed by measurement, in plasma, of a novel noncyclooxygenase-derived prostanoid (8-isoprostane). Six groups of animals fed ethanol and different dietary fats (saturated fat, corn oil and fish oil) were sacrificed at 1 month. Histological liver examination, plasma measurements of 8-isoprostane and measurements of microsomal conjugated dienes were carried out. Animals fed fish oil and ethanol developed the most severe liver injury and had the highest 8-isoprostane levels in plasma (919 +/- 112 pg/ml). These levels were significantly higher than the levels seen in the corn oil-ethanol (498 +/- 105 pg/ml) (P < 0.02) and saturated fat-ethanol (28.6 +/- 11.8 pg/ml) (P < .001) groups. Rats fed saturated fat and dextrose and corn oil and dextrose had levels of < 20 pg/ml. However rats fed fish oil and dextrose had, on average, 8-isoprostane levels about 100-fold higher than those seen in the saturated fat-dextrose and corn oil-dextrose groups. A significant correlation between pathological severity and plasma 8-isoprostane levels was seen in the fish oil (r = 0.92, P < .001) and non-fish oil-treated groups (r = 0.94, P < .001). A significant correlation also was seen between 8-isoprostane levels and liver microsomal conjugated dienes (r = 0.93, P < .001). Our results provide strong support for the hypothesis that lipid peroxidation in ethanol-fed rats contributes to pathological liver injury.

Animals↗

Cimetidine prevents alcoholic hepatic injury in the intragastric feeding rat model.

Cytochrome P450 induction is believed to be important in the pathogenesis of alcoholic hepatic disease. Because cimetidine is a general inhibitor of cytochrome P450 enzymes, it was hypothesized that it could be useful in preventing alcoholic hepatic injury. An intragastric feeding model was used these studies. Experimental animals were divided into groups of four to five rats/group and fed the following diets: corn oil+dextrose, corn oil+ethanol (CE) and corn oil+ethanol+cimetidine (250 mg kg-1 day-1) (CEC). The rats in each group were sacrificed at the following time intervals: 2 weeks, 1 month and 2 months. For each animal, the severity of the pathologic findings and relative protein levels of cytochromes P450 2E1, 2B and 4A were measured. In addition, plasma levels of thromboxane B2, 6-ketoprostaglandin F1 alpha and 8-isoprostane were also measured. The most significant finding was that cimetidine completely prevented alcoholic hepatic injury in this model system. The pathologic scores (an indication of the severity of injury) were significantly lower in the CEC groups compared with the CE group. There was however, no significant difference in cytochrome P450 2E1, 2B or 4A protein levels between CE and CEC groups. Thromboxane B2 and 8-isoprostane levels were significantly lower and 6-ketoprostaglandin F1 alpha, significantly higher in the CEC group than in the CE group. These results indicate that possible mechanisms involved in the protective action of cimetidine include inhibition of thromboxane production and lipid peroxidation.

6-Ketoprostaglandin F1 alpha↗

Nitecapone protects the Langendorff perfused heart against ischemia-reperfusion injury.

We assessed the protection afforded against myocardial ischemia/reperfusion by nitecapone in the Langendorff heart model using male Sprague-Dawley rats. We found that when present in the perfusate 10 microM nitecapone improved the mechanical function of the heart and lowered the enzyme leakage of lactate dehydrogenase after 40 minutes of global ischemia. In nitecapone treated hearts the content of oxidized proteins and lipids (carbonyl groups and endogenous lipid fluorescent products) decreased. Nitecapone partially prevented the loss of total sulfhydryl groups and vitamin E after ischemia and reperfusion. We suggest that the mechanism of nitecapone protection most likely involves direct antioxidant action and enhancing the activity of other antioxidants.

Animals↗

Modification of plasma proteins by cigarette smoke as measured by protein carbonyl formation.

Exposure of human plasma to gas-phase (but not to whole) cigarette smoke (CS) produces oxidative damage to lipids [Frei, Forte, Ames & Cross (1991) Biochem. J. 277, 133-138], which is prevented by ascorbic acid. The ability of CS to induce protein damage was measured by the carbonyl assay and by loss of enzyme activity and protein -SH groups. Both whole and gas-phase CS caused formation of carbonyls in human plasma, which was partially inhibited by GSH but not by ascorbic acid or metal-ion-chelating agents. Isolated albumin exposed to CS showed much faster carbonyl formation (per unit protein) than did whole plasma; damage to isolated albumin was partially prevented by chelating agents. Isolated creatine kinase (CK) lost activity upon exposure to CS much faster than did CK in plasma. Direct addition to plasma of mixtures of some or all of the aldehydes reported to be present in CS caused protein carbonyl formation and inactivation of CK, but neither occurred to the extent produced by CS exposure.

Adult↗

Antiradical effects in L-propionyl carnitine protection of the heart against ischemia-reperfusion injury: the possible role of iron chelation.

L-Propionyl carnitine has been shown to improve the heart's mechanical recovery and other metabolic parameters after ischemia-reperfusion. However, the mechanism of protection is unknown. The two dominating hypotheses are: (i) L-propionyl carnitine can serve as an energy source for heart muscle cells by being enzymatically converted to propionyl-CoA and subsequently utilized in the Krebs cycle (a metabolic hypothesis), and (ii) it can act as an antiradical agent, protecting myocardial cells from oxidative damage (a free radical hypothesis). To test the two possible pathways, we compared the protection afforded to the ischemia-reperfused hearts by L-propionyl carnitine and its optical isomer, D-propionyl carnitine. The latter cannot be enzymatically utilized as an energy source. The Langendorff perfusion technique was used and the hearts were subjected to 40 min of ischemia and 20 min of reperfusion. In analysis of ischemia-reperfused hearts, a strong correlation was found between the recovery of mechanical function and the presence of protein oxidation products (protein carbonyls). Both propionyl carnitines efficiently prevented protein oxidation but L-propionyl carnitine-perfused hearts had two times greater left ventricular developed pressure. The results indicate that both metabolic and antiradical pathway are involved in the protective mechanism of L-propionyl carnitine. To obtain a better insight of the antiradical mechanism of L-propionyl carnitine, we compared the ability of L- and D-propionyl carnitines, L-carnitine, and deferoxamine to interact with: (i) peroxyl radicals, (ii) oxygen radicals, and (iii) iron. We found that none of the carnitine derivatives were able to scavenge peroxyl radicals or superoxide radicals. L- and D-propionyl carnitine and deferoxamine (not L-carnitine) suppressed hydroxyl radical production in the Fenton system, probably by chelating the iron required for the generation of hydroxyl radicals. We suggest that L-propionyl carnitine protects the heart by a dual mechanism: it is an efficient fuel source and an antiradical agent.

Animals↗