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Biomedical subjects

R O'Neill

Publications and source records attributed to R O'Neill.

At least 19 recordsLinked to original sources

A pharmacokinetic comparison of cyclosporin oral solution and cyclosporin capsules in heart and lung transplant recipients.

Pharmacokinetic profiles were obtained for 16 heart or lung recipients following the administration of identical doses of cyclosporin as oral solution and capsules on consecutive days. A comparison of pharmacokinetic parameters (AUC, Cmax, Cmin and tmax) showed that there were no significant differences between the two formulations except for the tmax, which was significantly longer for the capsules. The mean variation in day-to-day trough levels produced by the two different forms was 25.6%. A retrospective study was carried out of consecutive cyclosporin levels in patients at steady state on oral solution. The mean variation in day-to-day trough levels was 32.3%. This was not significantly different from the variation in consecutive trough levels seen in the oral solution/capsule comparison. This study shows that cyclosporin capsules can be substituted for oral solution without causing acute changes in cyclosporin blood levels, and that the pharmacokinetics of the two formulations are similar.

Administration, Oral

Chronic iron overload causes activation of rat lipocytes in vivo.

Chronic iron overload can result in hepatic fibrosis and cirrhosis. Activated lipocytes, through increased production of collagen and extracellular matrix, play an important role in hepatic fibrogenesis in several types of experimental liver injury, but their contribution to hepatic injury after iron overload is unknown. This study examines the effect of iron overload on lipocyte activation, in vivo. Male Sprague-Dawley rats were fed a chow diet supplemented with 1% carbonyl iron for up to 20 mo. Controls were fed the chow diet alone. Lipocytes were prepared by sequential pronase and collagenase perfusion of the livers, followed by density-gradient centrifugation. Lipocyte activation was assessed by immunohistochemistry of liver sections and by Western blot analysis of alpha-smooth muscle actin expression in freshly isolated lipocytes. In addition, to measure the biosynthetic capability of these lipocytes, collagen and noncollagen protein production was determined after 3 days in culture, using [3H]proline incorporation. The hepatic iron concentration was increased by eightfold in the iron-loaded rats, and lipocytes from these animals expressed alpha-smooth muscle actin. Collagen production was increased by 2.5-fold, and noncollagen protein production was elevated by twofold in lipocytes isolated from iron-loaded rats. In the iron-loaded livers, autofluorescent material with the characteristics of lipofusion was present in periportal zones. Chronic iron overload expression results in the activation of lipocytes, as determined by increased expression of alpha-smooth muscle actin and by increased production of both collagen and noncollagen protein. This activation may contribute to iron-induced hepatic fibrogenesis.

Actins

Vitamin A-poor lipocytes: a novel desmin-negative lipocyte subpopulation, which can be activated to myofibroblasts.

Lipocytes have been classified as vitamin A-storing, desmin-positive cells. In hepatic fibrogenesis, lipocytes transform into myofibroblasts, which express alpha-smooth muscle actin (alpha-SMA) and produce increased amounts of collagen. We isolated a population of vitamin A-poor lipocytes (VAPL) from normal rat liver and examined the morphological and biochemical differences between VAPL and vitamin A-replete lipocytes (VARL). Desmin and alpha-SMA expression were determined by Western blot in quiescent cells and in cells activated by culture on uncoated plastic. Both cell types were alpha-SMA-negative; however, in contrast to VARL, freshly isolated VAPL did not contain desmin. Desmin expression was induced in VAPL on activation. With time in culture, both VAPL and VARL expressed alpha-SMA and produced collagen, indicative of transformation to myofibroblasts. Ferritin receptor expression was demonstrated in cultured VARL after 1 day and in VAPL after 5 days, indicating that this is an early marker of lipocyte activation. After 7 days, VARL and VAPL were indistinguishable in terms of desmin, ferritin receptor expression, and collagen production. This study demonstrates the first isolation and characterization of two distinct quiescent subpopulations of lipocytes from normal rat liver: desmin-negative VAPL and desmin-positive VARL. Both populations of cells can be activated to myofibroblasts, the phenotype associated with hepatic fibrogenesis.

Adipocytes

Hepatic mitochondrial oxidative metabolism and lipid peroxidation in iron-loaded rats fed ethanol.

The aims of this study were to determine whether chronic ethanol consumption potentiates mitochondrial lipid peroxidation or impairment of mitochondrial oxidative metabolism in rats with chronic iron overload. Experimental iron overload was induced by feeding rats a chow diet supplemented with 2.5% carbonyl iron. After 8 to 12 weeks, half of the iron-loaded and control animals were changed to a liquid diet containing ethanol for 4 to 5 weeks. The remaining animals were fed an isocaloric amount of diet containing dextrin-maltose instead of ethanol for 4 to 5 weeks. Iron-supplemented animals had a 20-fold increase in hepatic iron concentration as compared with controls. Iron and ethanol independently increased plasma alanine aminotransferase (ALT) levels (p < 0.05) while the combination resulted in an additive increase in ALT levels (p < 0.01). Although iron overload increased the levels of mitochondrial conjugated dienes and significantly reduced the mitochondrial respiratory control ratio, ethanol administration did not affect these parameters in animals with or without iron overload. Livers from iron-loaded rats that received ethanol showed mild to moderate steatosis with scattered necroinflammatory foci. There was no significant increase in necroinflammatory foci in the livers of the iron plus ethanol group as compared with the iron group. In conclusion, we have demonstrated an additive increase in hepatocellular injury when ethanol is fed to iron-loaded rats, as evidenced by an increase in plasma ALT level. However, there were no additive or synergistic effects of iron and ethanol on either mitochondrial lipid peroxidation or mitochondrial oxidative metabolism.

Alanine Transaminase

Pathophysiology of iron toxicity.

There are several inherited and acquired disorders that can result in chronic iron overload in humans, and the major clinical consequences are hepatic fibrosis, cirrhosis, hepatocellular cancer, cardiac disease, and diabetes. It is clear that lipid peroxidation occurs in experimental iron overload if sufficiently high levels of iron within hepatocytes are achieved. Lipid peroxidation is associated with hepatic mitochondrial and microsomal dysfunction in experimental iron overload, and lipid peroxidation may underlie the increased lysosomal fragility that has been detected in liver samples from both iron-loaded human subjects and experimental animals. Reduced cellular ATP levels, impaired cellular calcium homeostasis, and damage to DNA may all contribute to hepatocellular injury in iron overload. Long-term dietary iron overload in rats can lead to increased collagen gene expression and hepatic fibrosis, perhaps due to activation of hepatic lipocytes. The mechanisms whereby lipocytes are activated in iron overload remain to be elucidated; possible mediators include aldehydic products of iron-induced lipid peroxidation produced in hepatocytes, tissue ferritin, and/or cytokines released by activated Kupffer cells.

Animals

Determination of hepatic iron concentration in fresh and paraffin-embedded tissue: diagnostic implications.

BACKGROUND/AIMS: Determination of hepatic iron concentration (HIC) is essential for the evaluation of hereditary hemochromatosis. Occasionally, only paraffin-embedded liver biopsy specimens are available, or fresh biopsy specimens have been placed in saline for transport. This study aimed to describe a method for extraction of liver tissue from paraffin blocks, determine the accuracy of measurement of HIC in recovered tissue compared with fresh tissue, and determine the effect of immersion in saline on HIC. METHODS: HIC was measured in both fresh and deparaffinized liver specimens (n = 41). Accurate measurements were defined as either a normal result in both specimens or a result in the deparaffinized specimen that was within 30% of the fresh measurement. RESULTS: Measurements of HIC in fresh and deparaffinized tissue showed an excellent linear relationship (r = 0.95). In deparaffinized samples > or = 0.4 mg, accurate measurements were seen in 24 out of 29 specimens, compared with 6 out of 12 specimens weighing < 0.4 mg (P < 0.01). The hepatic iron index calculated from results in deparaffinized samples > or = 0.4 mg correctly classified all patients. Immersion of fresh biopsy specimens in saline for 1 hour resulted in up to 50% iron loss (P < 0.05). CONCLUSIONS: Accurate measurement of HIC in deparaffinized liver biopsy specimens is possible. Calculation of the hepatic iron index from deparaffinized liver tissue can facilitate diagnosis of hemochromatosis when fresh tissue is not available. Samples should not be transported in saline.

Animals

Differential production of TNF by Kupffer cells after phagocytosis of E. coli and C. albicans.

Tumor necrosis factor (TNF) of hepatic origin is thought to play a pivotal role early in the genesis of the septic shock syndrome, regardless of microbial etiology. To determine if production of TNF by Kupffer cells varies with microbial taxonomic class, we measured TNF secretory responses in primary cultures of rat Kupffer cells to numerically equivalent gram-negative bacterial or fungal phagocytic challenges. After a 30-min exposure to media, latex beads, soluble Escherichia coli lipopolysaccharide (LPS; serotype 055:B5), live or Formalin-fixed E. coli (serotype 055:B5), live or Formalin-fixed yeast-phase Candida albicans, or live hyphal-phase Candida, samples of culture supernatant were assessed at 30, 60, 120, and 240 min and at 24 h for TNF bioactivity by L929 cell cytotoxicity. Compared with media and latex bead controls, TNF levels progressively increased for up to 240 min after either LPS and equivalently in live E. coli or Formalin-fixed E. coli groups (P < 0.05). Formalin-fixed yeast-phase and live extracellular hyphal-phase C. albicans failed to stimulate production of TNF at any time point (6.9 +/- 0.7 and 8.7 +/- 0.4 U/ml, respectively, at t = 240 min; P < 0.05 vs. E. coli). In contrast, internalization of live yeast-phase C. albicans with subsequent hyphal formation and growth within Kupffer cells was accompanied by a rise in supernatant TNF levels (14.5 +/- 1.8 U/ml at t = 240 min).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Identification and characterization of a receptor for tissue ferritin on activated rat lipocytes.

Hepatic iron overload causes lipocyte activation with resultant fibrogenesis. This study examines whether rat lipocytes express ferritin receptors, which could be involved in paracellular iron movement and in cellular regulation. Lipocytes from normal rat liver were cultured on plastic and incubated with 125I-labeled rat liver ferritin (RLF) +/- a 100-fold excess of either unlabeled RLF or human heart ferritin, human liver ferritin, human recombinant H-ferritin, a mutant human recombinant L-ferritin, or a variety of nonspecific proteins. Specific binding sites for ferritin were demonstrated by displacement of 125I-RLF by RLF (64.5 +/- 4.3%) and by other ferritins (55-60%), but not by recombinant L-ferritin. Scatchard analysis demonstrated a single class of binding sites with a Kd of 5.1 +/- 2.9 x 10(-10) M, maximum binding capacity of 4.7 +/- 1.3 x 10(-12) M, and 5,000-10,000 receptor sites/cell. Ferritin receptor expression was observed only in activated lipocytes. Internalization of RLF was observed within 15 min using FITC-RLF and confocal microscopy. This study demonstrates that (a) activated lipocytes express a specific high affinity ferritin receptor; (b) the binding appears to be dependent on the H-ferritin subunit; and (c) lipocytes internalize ferritin. Expression of ferritin receptors in activated lipocytes suggests that the receptor may either be involved in the activation cascade or may be a marker of activation.

Actins

Efficient enzymatic synthesis of the sialyl-Lewisx tetrasaccharide. A ligand for selectin-type adhesion molecules.

Sialyl-Lewisx (NeuAc alpha 2-->3Gal beta 1-->4[Fuc alpha 1-->3]GlcNAc] has been identified as a ligand for E-selectin, P-selectin and recently also for L-selectin. We have synthesized the sialyl-Lewisx tetrasaccharide by total enzymatic synthesis from N-acetyllactosamine using a placental alpha 2-->3-sialyltransferase specific for type-2 chain acceptors, followed by a cloned human alpha 1-->3-fucosyltransferase (FucTV, the 'plasma-type' enzyme). This procedure resulted in the tetrasaccharide in a 61% overall yield.

Amino Sugars

Chronic dietary iron overload in rats results in impaired calcium sequestration by hepatic mitochondria and microsomes [corrected].

The purpose of these experiments was to determine whether chronic dietary iron overload causes impairment of hepatic mitochondrial and/or microsomal calcium sequestration. Experimental iron overload was produced by feeding three groups of rats a chow diet supplemented with 3.0% (wt/wt) carbonyl iron for up to 8 weeks achieving graded increases in hepatic iron concentrations ranging from 1360 to 3170 micrograms/g. At low levels of iron overload, there were no changes in mitochondrial oxidative metabolism or calcium sequestration, whereas at moderate and high degrees of iron loading, both of these parameters were significantly reduced. In contrast, there were significant decreases in microsomal cytochrome P450 levels and microsomal calcium sequestration at all three levels of iron loading. These abnormalities occurred at hepatic iron concentrations at which the authors have previously found evidence of hepatic organelle lipid peroxidation. These alterations in organelle calcium sequestration may impair intracellular calcium homeostasis in the liver and contribute to subsequent cellular injury.

Animals

Hepatic mitochondrial malondialdehyde metabolism in rats with chronic iron overload.

Peroxidative decomposition of mitochondrial membrane phospholipids with subsequent mitochondrial dysfunction is a postulated mechanism of liver cell injury in parenchymal iron overload. Malondialdehyde is formed when polyunsaturated fatty acids of membrane phospholipids undergo peroxidative decomposition, and it is metabolized by aldehyde dehydrogenase. We studied mitochondrial metabolism of malondialdehyde in rats with chronic dietary iron overload. Hepatic malondialdehyde concentrations were significantly increased in iron-loaded livers, and mitochondrial respiratory control ratios using glutamate as a substrate were decreased by 47% largely owing to reductions in state 3 respiration. When exogenous malondialdehyde was added to mitochondrial fractions, there was significantly less metabolism of malondialdehyde in mitochondria of iron-loaded livers as compared with controls. In addition, there was a 28% decrease in mitochondrial aldehyde dehydrogenase in iron-loaded livers but no change in cytosolic aldehyde dehydrogenase. Increased hepatic malondialdehyde in chronic iron overload may result from a combination of increased production and decreased metabolism of malondialdehyde, both of which may be due to iron-induced mitochondrial lipid peroxidation.

Aldehyde Dehydrogenase

Prevention of hepatocyte injury and lipid peroxidation by iron chelators and alpha-tocopherol in isolated iron-loaded rat hepatocytes.

These experiments were performed to characterize the relationship between lipid peroxidation and hepatocyte viability in iron overload. Hepatocytes were isolated from rats with chronic dietary iron overload and the effects of in vitro iron chelation on lipid peroxidation, cell viability and ultrastructure were studied over a 4-hr incubation period. Cell viability was significantly reduced at 3 and 4 hr in iron-loaded hepatocytes compared with controls and was preceded by an increase in iron-dependent lipid peroxidation. Similarly, extensive degenerative ultrastructural changes were observed in iron-loaded hepatocytes compared with controls after 4 hr of incubation. In vitro iron chelation with either deferoxamine or apotransferrin protected against lipid peroxidation, loss of viability and ultrastructural damage in iron-loaded hepatocytes. The addition of an antioxidant, alpha-tocopherol, also protected against lipid peroxidation and preserved cell viability over a 4-hr incubation. The protective effects of iron chelators and alpha-tocopherol support a strong association between iron-dependent lipid peroxidation and hepatocellular injury in iron overload.

Animals

Effects of vitamin E deficiency on hepatic mitochondrial lipid peroxidation and oxidative metabolism in rats with chronic dietary iron overload.

Peroxidative decomposition of organelle membrane phospholipids with subsequent organelle dysfunction is a postulated mechanism of liver cell injury in parenchymal iron overload. We studied the effects of different alpha-tocopherol concentrations on hepatic mitochondrial lipid peroxidation and oxidative metabolism in rats with chronic dietary iron overload. There was no evidence of mitochondrial lipid peroxidation (conjugated dienes) or alteration in mitochondrial oxidative metabolism in alpha-tocopherol-deficient rats with normal hepatic iron levels. Significant reductions in mitochondrial respiratory control ratios and oxidative phosphorylation ratios were seen in association with increased conjugated dienes in all three groups of iron-loaded rats regardless of the alpha-tocopherol status (deficient, normal or excess); thus, the alpha-tocopherol deficiency associated with dietary iron overload in this experimental model is not responsible for the mitochondrial abnormalities observed. In addition, chronic parenteral administration of alpha-tocopherol to iron-loaded animals, which increased hepatic levels of this substance 3-fold, did not ameliorate the hepatic mitochondrial lipid peroxidation or the defects in mitochondrial oxidative metabolism resulting from iron overload.

Animals

Analysis of Aprt deficient mutants of Friend erythroleukaemia cells.

Cytogenetic analysis of mutants of the Friend Erythroleukaemia cell line deficient in adenine phosphoribosyl transferase (Aprt) was undertaken to ascertain whether non-disjunctional events were involved in the production of this mutation. All mutant clones examined were found to carry two copies of chromosome 8, the chromosome to which Aprt maps. Since the two homologues are distinguishable by silver staining, it was also clear that no mutants contained two copies of one homologue having lost the other. Treatment of mutants with 5-azacytidine failed to reactivate the Aprt locus.

Adenine Phosphoribosyltransferase

Sounds of silence--coping with hearing loss and loneliness.

The vast majority of people will suffer presbycusis during the aging process. This hearing loss has potential social consequences, which place these individuals at risk for loneliness. Nurses need to encourage thorough audiological examination and follow through on recommendations to improve hearing. The use of hearing aids needs to be encouraged. A suggested model of interaction among variables influencing loneliness identifies areas amenable to nursing intervention. Frequency of significant interaction and motivation to engage in interactions represent two important variables that influence loneliness.

Adaptation, Psychological