PubMed HealthSearch

Biomedical subjects

A M Freedman

Publications and source records attributed to A M Freedman.

At least 19 recordsLinked to original sources

Portosystemic encephalopathy after transjugular intrahepatic portosystemic shunt: results of a prospective controlled study.

Portosystemic encephalopathy is a common complication of surgical portacaval shunts. Recently, transjugular intrahepatic portosystemic shunts have been proposed to produce portal decompression in a manner analogous to a side-to-side portacaval shunt, but with less morbidity. The incidence and clinical spectrum of portosystemic encephalopathy after transjugular intrahepatic portosystemic shunts, however, had not been previously prospectively defined. We therefore prospectively studied portosystemic encephalopathy in 30 patients undergoing transjugular intrahepatic portosystemic shunts and compared these findings with 25 patients concurrently undergoing sclerotherapy (controls). At entry, both study groups were comparable. Portosystemic encephalopathy was assessed by examining and grading mental status, asterixis, plasma ammonia and trail making tests. The portosystemic encephalopathy index was calculated from these parameters. Nine of 30 patients with transjugular intrahepatic portosystemic shunts experienced 24 episodes of acute portosystemic encephalopathy during follow-up; 6 of 9 had a history of portosystemic encephalopathy before transjugular intrahepatic portosystemic shunts and 5 of these 6 patients had Child C cirrhosis. Mental status and asterixis scores as well as portosystemic encephalopathy index worsened significantly in the first month after transjugular intrahepatic portosystemic shunts but showed some improvement thereafter. Increasing age, a medical history of portosystemic encephalopathy and trail scores for part B greater than 100 sec were predictors of portosystemic encephalopathy after transjugular intrahepatic portosystemic shunts. Portosystemic encephalopathy could be managed medically in all but one patient who underwent liver transplant. In contrast, there were no significant changes in mental status, asterixis, ammonia or trail scores over time in sclerotherapy controls. Only six episodes of encephalopathy occurred in endoscopic sclerotherapy patients over the duration of the study. Thus, overall risk of portosystemic encephalopathy after transjugular intrahepatic portosystemic shunts was higher than during sclerotherapy.

Esophageal and Gastric Varices

Complications of transjugular intrahepatic portosystemic shunt: a comprehensive review.

It is generally accepted that the transjugular intrahepatic portosystemic shunt (TIPS) procedure has lower morbidity and mortality rates than those of surgical shunting. Nevertheless, complications occur. The authors have reviewed their experience and that of other institutions in compiling an extensive list of complications. Complications are categorized according to those related to transhepatic needle puncture, transvenous access to the portal vein, portal venous cannulation, the stent, the puncture site, portosystemic shunting, and contrast material. Excluding hepatic encephalopathy and delayed stenosis or occlusion of the shunt, an overall complication rate of less than 10% can be expected for TIPS. The prevalence of aggravated or new cases of encephalopathy is 5%-35%, and over the long term, up to 75% of shunts may undergo stenosis or occlusion. The direct procedural mortality rate is less than 2%, and the 30-day mortality rate ranges from 4% to 45%, depending on several factors. The role to which TIPS is relegated will be influenced by the long-term success rate in the prevention of recurrent variceal hemorrhage.

Catheterization, Peripheral

Modulation of cytokines and myocardial lesions by vitamin E and chloroquine in a Mg-deficient rat model.

Antioxidant treatment with alpha-tocopherol did not affect the level of the "inflammatory cytokines" in Mg-deficient animals, although it diminished the extent of the myocardial lesions. In another group of Mg-deficient animals chloroquine treatment diminished significantly the levels of circulating cytokines (interleukin-1, interleukin-6, and tumor necrosis factor-alpha) and also resulted in a major decrease in myocardial lesions. These results raise the question of the role of these inflammatory cytokines in the formation of lesions in Mg-deficient myocardium. Because these cytokines are able to stimulate free radical production in various cell types, we postulate that Mg deficiency involves free radical mechanisms that can be amplified by inflammatory cytokines; whether these cytokines initiate lesion formation is unclear. Although our data do not confirm either possibility, we submit that these results implicate a role for the inflammatory cytokines in the cardiac pathology of Mg deficiency.

Animals

Magnesium-deficiency elevates circulating levels of inflammatory cytokines and endothelin.

We have developed two rodent models of diet-induced magnesium-deficiency in which histologically defined cardiac lesions can be induced within two to three weeks. During the development of these lesions, the magnesium-deficient animals exhibit circulating cytokine levels which are indicative of a generalized inflammatory state. Dramatic elevations of the macrophage-derived cytokines, IL-1, IL-6, and TNF-alpha together with significantly elevated levels of the endothelial cell-derived cytokine, endothelin, were detected in the plasma of these animals. We believe that the pathophysiological effects caused by the action of these cytokines may play a role in the promotion of cardiovascular pathology associated with magnesium deficiency.

Animals

Erythrocytes from magnesium-deficient hamsters display an enhanced susceptibility to oxidative stress.

Previous studies in our laboratory have indicated a role for free radical participation in magnesium deficiency cardiomyopathy. We have demonstrated the ability of various antioxidant drugs and nutrients to protect against magnesium deficiency-induced myocardial injury. In this study, we have examined erythrocytes from normal and magnesium-deficient animals and compared their susceptibility to an in vitro oxidative stress. Syrian male hamsters were placed on either magnesium-deficient or magnesium-supplemented diets. Animals from each group also received vitamin E in doses of 10 and 25 mg as subcutaneous implants. Erythrocytes obtained after 14 days on the diet were exposed to an exogenous hydroxyl (.OH) radical generating system (dihydroxyfumarate not equal to Fe3+ ADP) at 37 degrees C for 20 min. Erythrocyte crenation was observed and quantified by scanning electron microscopy. Lipid peroxidation, hemolysis (%), and intracellular glutathione levels were determined. In addition, serum lipid changes and membrane phospholipids were characterized. Our data demonstrate that erythrocytes from magnesium-deficient animals are more susceptible to free radical injury, supporting our hypothesis that magnesium deficiency reduces the threshold antioxidant capacity.

Adenosine Diphosphate

Antioxidants and the cardiomyopathy of Mg-deficiency.

For several decades the animal models of Mg-deficiency have been studied with particular attention to the cardiomyopathy that develops due to dietary deficiency. In recent years we have studied the effects of nutrients and drugs with antioxidant properties on the development of the cardiomyopathy. We have found that treatment of the Mg-deficient animals with alpha-tocopherol, a naturally-occurring antioxidant, significantly diminishes the number and size of lesions. In addition, treatment with lipophilic drugs with antioxidant properties (probucol, propranolol) or water-soluble drugs that scavenge hydroxyl radicals (captopril, epicaptopril), also provided significant protection. In view of these findings, we suggest that chronic hypomagnesemia results in a pro-inflammatory condition leading to excessive production of oxygen-derived free radicals. Subsequently, the tissue antioxidant capacity is overwhelmed and oxidative tissue destruction results.

Angiotensin-Converting Enzyme Inhibitors

Propranolol reduces anoxia/reoxygenation-mediated injury of adult myocytes through an anti-radical mechanism.

The effects of propranolol (PRO) and atenolol (ATE) on adult canine myocytes exposed to 30 min anoxia (A:95% N2/5% CO2) and subsequent reoxygenation (R:95% O2/5% CO2) for up to 20 min was investigated. In some studies, comparison of effects were made with that of superoxide dismutase (SOD). Although anoxia alone produced only minimal injury, reoxygenation in the absence of the beta-blockers or SOD was associated with significant losses of cellular viability, elevated release of cellular lactate dehydrogenase, and increased formation of lipid peroxidation products. Myocytes exposed to A/R in the presence of d,1-PRO (20, 200 microM) were afforded substantial, concentration-dependent protection during 20 min reoxygenation. Significant protection was also observed in the presence of 2 microM d-PRO (non-active beta-blocker), but only after a longer preincubation period (2 h). SOD (10 micrograms/ml) provided equi-potent protection to that of 200 microM d,1-PRO. By contrast, the more water-soluble beta-blocker, ATE (200 microM), offered only minor protection. Electron Spin Resonance spin trapping studies using alpha-phenyl-tert-butylnitrone (PBN) were also performed with A/R myocytes in the presence or absence of drug treatment. Short-term (10 min) exposure to d,1-PRO (200 microM) prior to A/R, or to SOD, resulted in a 71-84% reduction in total PBN lipid radical adduct formation (alkoxyl; alpha H = 2.0-2.5 G, alpha N = 13.5-13.75 G); long-term exposure (2 h) to 2 microM d-PRO resulted in a 51% reduction. These data suggest that the superoxide anion was an initiator of events leading to subsequent lipid radical formation and that the anti-peroxidative properties of PRO appear to be independent of beta-receptor blockade.

Adrenergic beta-Antagonists

Propranolol preserves ultrastructure in adult cardiocytes exposed to anoxia/reoxygenation: a morphometric analysis.

The protective effect of d,l-propranolol was studied using freshly isolated canine ventricular cardiocytes (1.5 x 10(6)/mL) exposed to 30 min anoxia (95% N2/5% CO2) and 0, 3, 20, and 45 min of reoxygenation (95% O2/5% CO2). In addition to preventing lipid peroxide formation, propranolol maintained cellular viability, and minimized ultrastructural alterations. In the absence of propranolol, the outer mitochondria become swollen and rounded up within the first few minutes of reoxygenation. The perinuclear mitochondrial area increased only slightly. We observed that the cellular injury process proceeded differentially from the exterior to the interior, with a mitochondrial area increase and outer membrane rupture. Sarcolemmal damage was also observed with prevalent blebbing and membrane loss. The Z-lines became wider and more diffuse with reoxygenation. Injury to the nuclear double membrane was observed. Incubation with propranolol showed significant protection during postanoxia reoxygenation. In contrast, the more water soluble beta-blocker atenolol only exhibited slight protection. In addition, d-propranolol (the non beta-blocking isomer) and the antioxidant enzymes, SOD and catalase, showed significant protection. These data support previous findings concerning the antioxidant properties of propranolol which appear to be independent of beta-receptor blockade.

Animals

Captopril protects against myocardial injury induced by magnesium deficiency.

We have previously reported that antioxidant drug intervention protects against magnesium deficiency-induced myocardial lesions. In the present study, Golden Syrian male hamsters were fed either a magnesium-deficient diet or a magnesium-supplemented diet. Animals from each group received sulfhydryl-containing angiotensin converting enzyme inhibitors: captopril, epi-captopril (a stereoisomer of captopril), and zofenopril* (arginine blend of zofenopril containing a free SH group); another group of animals received the non-sulfhydryl-containing angiotensin converting enzyme inhibitor enalaprilat. The animals were killed after 14 days, and their hearts were isolated for morphological and morphometric analyses. Hematoxylin and eosin-stained sections were examined by a computer image analysis system for a morphometric determination of the severity of myocardial injury. Captopril reduced both the density of lesions, from 0.32 to 0.08 lesions/(mm2) (p less than 0.01), and the area fraction of lesions, from 7.42 x 10(-4) to 2.03 x 10(-4) lesion area/(mm2) (p less than 0.01), as well as the degree of inflammatory infiltration around the blood vessels. Epi-captopril and zofenopril* were virtually equipotent to captopril, but enalaprilat afforded only slight (nonsignificant) protection. These results indicate that a significant component of the protective effect of captopril in this model was attributable to its sulfhydryl moiety, rather than solely due to the inhibition of the angiotensin converting enzyme. These data further support our previous findings of possible free radical participation in cardiomyopathy due to magnesium deficiency.

Analysis of Variance

Protective effects of sulfhydryl-containing angiotensin converting enzyme inhibitors against free radical injury in endothelial cells.

The effects of SH-containing (captopril, epi-captopril, and the free-SH form of zofenopril) and non-SH-containing (enalaprilat and lisinopril) angiotension converting enzyme (ACE) inhibitors on free radical injury in cultured endothelial cells were studied. When cultured endothelial cells were exposed to a superoxide and hydroxyl radical generating system (dihydroxyfumarate + Fe3(+)-ADP) for 30 min, lipid peroxidation [malondialdehyde (MDA) formation] occurred, and cellular viability (trypan blue exclusion) decreased to 41%; concomitantly, plasma membrane blebbing, assessed by scanning electron microscopy, occurred in 65% of the cells. Preincubation of the cells with each of the SH-agents before free radical addition resulted in an equipotent concentration-dependent (10-200 microM) inhibition (15-60%) of MDA formation; both losses in cellular viability and percent blebbed cells were reduced significantly (P less than 0.05) by concentrations as low as 10 microM of each SH-agent. However, neither of the non-SH agents up to 200 microM produced any major effect. When the effects on hydroxyl radical formation in the system were assessed by ESR spin-trapping with 5,5-dimethyl-1-pyrroline-N-oxide (DMPO), concentrations of 10 and 50 microM of the SH-agents reduced the intensity of the DMPO-OH adducts 20 and 50% respectively. Similar results were observed when the hydroxyl radical was generated from the Fenton-reagents (Fe2+ + H2O2), suggesting direct hydroxyl radical scavenging. Thus, these results demonstrate that the SH-containing ACE agents are capable of protecting the endothelial cells against free radical induced lipid peroxidation and cell injury; the mechanism may be due to direct hydroxyl radical scavenging.

Angiotensin-Converting Enzyme Inhibitors

Magnesium deficiency-induced cardiomyopathy: protection by vitamin E.

Syrian male hamsters weighing 80-100g were placed on either a magnesium deficient diet (MgD) or an identical diet supplemented with 100 mmols/Kg MgCl. Animals from each group received vitamin E 10, 15, and 25mg three-week slow release pellets, as subcutaneous implants. The animals were sacrificed after 14 days and their hearts isolated for morphological analysis. H&E stained sections were examined by a computer image analysis system for a morphometric determination of the severity of myocardial injury. Vitamin E significantly (p less than 0.01) reduced both the numerical density and the area fraction of MgD lesions. These data indicate possible free radical participation in the mechanism of injury.

Animals

Oxygen radical-mediated injury of myocytes-protection by propranolol.

UIe effects of propranolol and atenolol on free radical mediated injury in myocytes were examined. Freshly isolated adult canine myocytes were incubated with a superoxide generating (from dihydroxyfumarate) and Fe-catalyzed free radical system. Exposure of the myocytes to free radicals for 20 min resulted in more than a 5-fold increase in thiobarbituric acid reactant (peroxide) formation and elevated levels of lactate dehydrogenase (LDH) activity released into the media compared to controls. Ultrastructurally, severe sarcolemmal damage, mitochondrial and myofibril derangements were evident. At 40 min, cellular viability (trypan blue exclusion) in the samples exposed to free radicals decreased to about one-third of controls; concomitantly, major losses in total cellular phospholipids occurred. When the cells were pretreated with 200 microM propranolol before the addition of free radicals, both peroxide formation and increased LDH release were inhibited; in agreement, complete ultrastructural preservation was observed. In addition, the subsequent losses in cellular viability and phospholipids were prevented. For comparison, the more water soluble beta-blocker, atenolol at 200 microM was shown ineffective in providing significant protection against the induced injury. The results suggest that propranolol may provide antiperoxidative protection to myocytes when elevated levels of free radicals are present.

Animals

Full-thickness cheek and lip reconstruction with the radial forearm free flap.

The radial forearm free flap has proven versatility in head and neck reconstruction. It is superior to regional alternatives such as the pectoralis flap because it is thin, pliable, and predominantly hairless. A more recent application is the use of the folded forearm flap to replace both the skin and inner lining, simultaneously, in full-thickness cheek and lip defects. Nine such cases are presented in this report. Each patient had a recurrent lesion that had been reconstructed previously with local flaps, and all but one were treated with postoperative radiation therapy. The average size of the external defects after resection was 27 cm2, and of the intraoral defects, 18 cm2. All free flaps survived completely. The folded forearm flap solved the reconstructive problem for each patient in a single-stage procedure, providing good contour and a reasonable color match. The flap is easy to raise, has a long pedicle with large-diameter vessels, and has an acceptable donor site defect not associated with long-term morbidity.

Adult

One-stage repair of the anterior abdominal wall using bilateral rectus femoris myocutaneous flaps.

Total lower abdominal wall resection was required to remove a recurrent exophytic bladder carcinoma in a 36-year-old woman. The resulting 25 x 30-cm fascial defect was repaired with Marlex mesh. Bilateral rectus femoris myocutaneous flaps were rotated to close the 25 x 18-cm area of skin deficiency. These provided the advantages of robust cover of the lower abdominal wall in a single-stage procedure and primary closure of the donor sites.

Abdominal Muscles

Computer-analyzed EEG (CEEG) and dynamic brain mapping in AIDS and HIV related syndrome: a pilot study.

In a group of HIV positive young male patients without any significant neuropsychiatric signs, computer-analyzed EEG (CEEG) and Dynamic Brain Mapping evaluations were conducted. These patients, who only had micro-neuropsychiatric symptoms, demonstrated CEEG profiles that more closely resemble those of patients diagnosed as suffering from mild dementia than age-related normals from our CEEG data base. The CEEGs of patients diagnosed as having Acquired Immune Deficiency Syndrome (AIDS), compared to patients with HIV positive, showed greater similarity in CEEG patterns to severely demented patients than to normal control groups. The findings of this pilot study suggest that CEEG may be useful for early determination of the Central Nervous System's (CNS) involvement with the AIDS virus and monitoring the progress of the illness.

AIDS Dementia Complex