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Biomedical subjects

G M Murphy

Publications and source records attributed to G M Murphy.

At least 19 recordsLinked to original sources

Expression of interleukin-11 and its encoding mRNA by glioblastoma cells.

Interleukin-11 (IL-11) is a pleiotropic cytokine with important effects on hematopoietic and other cells. IL-11 was originally described as a product of stromal cell lines and fibroblasts. Using RT-PCR, Northern blotting, and ELISA we demonstrated that the human U373 and U87 glioblastoma cell lines expressed IL-11 and its encoding mRNA when stimulated with IL-1 beta, phorbol ester, and calcium ionophore. The neuroblastoma cell line SH-SY5Y did not express IL-11 mRNA in response to these agents. Cerebral expression of IL-11 by glial cells is important because IL-11 has been shown to have effects on neuronal electrophysiology, has overlapping functions with the neuroactive cytokine interleukin-6, and is part of the gp130-associated neuropoietic family of cytokines.

Astrocytes

In vitro determination by 1H-NMR studies that bile with shorter nucleation times contain cholesterol-enriched vesicles.

Although biliary vesicles are considered to be the primary source of cholesterol found in cholesterol gallstones, difficulties in quantitatively separating the different cholesterol transport modes in bile still remain. Proton nuclear magnetic resonance spectroscopy (1H-NMR) offers an alternative approach. Investigations were carried out on both model biles and human gallbladder bile samples: (i) to follow the effect of increasing sodium glycocholate concentrations on the 1H-NMR spectra of arachidonic acid rich-phospholipid, and cholesterol-lecithin vesicles, (ii) to compare the concentrations of total phospholipids in bile determined enzymatically with those obtained by integration of the phospholipid choline head group resonance peak, and (iii) to examine the relationship between biliary cholesterol nucleation time (NT) and the areas of the biliary lipid 1H-NMR peaks. It was found that the molecular motions of vesicle phospholipid, as determined by 1H-NMR, were restricted by saturation with cholesterol. In bile from patients with cholesterol gallstones, the reduced NMR fluidity of the phospholipid choline-head group indicated that the proportion of cholesterol-phospholipid vesicles containing more than 50% cholesterol, on a molar basis, was increased. The ratios of the N+(CH3)3 and = CH proton resonance peaks showed no overlap between samples with cholesterol gallstones and shorter NT and those with either no gallstones or pigment stones and longer NT. 1H-NMR spectroscopy indicates in a non-invasive manner those biles which are prone to cholesterol crystal formation.

Arachidonic Acid

Macrophage inflammatory protein 1-alpha mRNA expression in an immortalized microglial cell line and cortical astrocyte cultures.

Macrophage inflammatory protein 1 (MIP-1) is a recently characterized inflammatory and chemokinetic cytokine. Proinflammatory stimuli have been shown to induce expression of MIP-1 by macrophages. We hypothesized that microglia and astrocytes express MIP-1 alpha because of their many immunologic similarities to macrophages. MIP-1 alpha mRNA was examined with quantitative reverse transcription and polymerase chain reaction in an immortalized mouse microglial cell line (BV-2) and in mouse cortical astrocyte cultures. We found that in both the BV-2 microglial cell line and in astrocyte cultures, MIP-1 alpha mRNA was strongly induced by lipopolysaccharide and the phorbol ester PMA. MIP-1 alpha mRNA was reduced by dBcAMP, interferon-gamma, and PGE1. Dexamethasone decreased MIP-1 alpha mRNA levels in astrocyte cultures, but not in BV-2 microglial cells. Interleukin-1 beta, tumor necrosis factor alpha, and MIP-1 alpha had no effect on MIP-1 alpha mRNA expression. These findings demonstrate that MIP-1 alpha mRNA is expressed by cultured glial cells and is regulated by proinflammatory and anti-inflammatory stimuli. MIP-1 alpha may be expressed by microglia and astrocytes in vivo, and may help modulate cerebral inflammation.

Animals

Leukemia inhibitory factor mRNA is expressed in cortical astrocyte cultures but not in an immortalized microglial cell line.

Leukemia inhibitory factor (LIF) is a multifunctional cytokine synthesized by a variety of cell types. In the nervous system LIF affects neuronal differentiation, and may be important during cerebral infection and inflammation. To clarify the cellular source of LIF in the brain, we examined the expression of LIF mRNA by primary cortical astrocyte cultures and an immortalized microglial cell line. The microglial cell line did not express LIF mRNA in response to pro-inflammatory agents such as lipopolysaccharide (LPS) that induced expression of other cytokine mRNAs. In contrast, primary astrocyte cultures grown in serum-containing medium expressed LIF mRNA constitutively, and this expression was regulated by pro-inflammatory and anti-inflammatory stimuli. Agents which activate the cAMP and protein kinase C second messenger systems also increased LIF mRNA in astrocyte cultures. These results suggest that astrocytes, but not microglia, may be an important source of LIF during cerebral inflammation and infection.

Animals

Tumor necrosis factor-alpha and basic fibroblast growth factor decrease glial fibrillary acidic protein and its encoding mRNA in astrocyte cultures and glioblastoma cells.

Tumor necrosis factor-alpha is a pluripotent cytokine that is reportedly mitogenic to astrocytes. We examined expression of the astrocyte intermediate filament component glial fibrillary acidic protein in astrocyte cultures and the U373 glioblastoma cell line after treatment with tumor necrosis factor-alpha. Treatment with tumor necrosis factor-alpha for 72 h resulted in a decrease in content of glial fibrillary acidic protein and its encoding mRNA. At the same time, tumor necrosis factor-alpha treatment increased the expression of the cytokine interleukin-6 by astrocytes. The decrease in glial fibrillary acidic protein expression was greater when cells were subconfluent than when they were confluent. Thymidine uptake studies demonstrated that U373 cells proliferated in response to tumor necrosis factor-alpha, but primary neonatal astrocytes did not. However, in both U373 cells and primary astrocytes tumor necrosis factor-alpha induced an increase in total cellular protein content. Treatment of astrocytes and U373 cells for 72 h with the mitogenic cytokine basic fibroblast growth factor also induced a decrease in glial fibrillary acidic protein content and an increase in total protein level, demonstrating that this effect is not specific for tumor necrosis factor-alpha. The decrease in content of glial fibrillary acidic protein detected after tumor necrosis factor-alpha treatment is most likely due to dilution by other proteins that are synthesized rapidly in response to cytokine stimulation.

Animals

Effect of acute bile acid pool depletion on total and ionized calcium concentrations in human bile.

Although calcium salts are important components of gallstones, there are few data on the total and ionized calcium content of human bile. Therefore, in 14 fasting T-tube patients studied 7-11 days after cholecystectomy, we measured bile flow, bile acid [BA], total [CaTOT] and free ionized [Ca++] calcium concentrations, in 20-30 min bile collections during acute BA pool depletion induced by 6-8 h of continuous bile drainage. During washout of the BA pool there were parallel falls in bile flow, BA output and total calcium output (correlation coefficients ranging from 0.59 to 0.99; P < 0.02-0.001). In 12 of the 14 patients, [CaTOT] also fell (from 1.84 +/- 0.29 to 1.32 +/- 0.34 mmol L-1) in parallel with [BA] (from 34.0 +/- 14.0 to 8.2 +/- 8.0 mmol L-1; r = 0.75-0.98; P < 0.005). In contrast, biliary [Ca++] remained virtually unchanged. These data suggest that the BAs are linked to the bound, rather than to the free, ionized, fraction of biliary calcium, which is consistent with in vivo calcium binding by BAs. A model is proposed in which BA-induced biliary calcium secretion results from (i) bile acid-induced water flow via solvent drag; and (ii) calcium binding in the bile canaliculus by bile acids, which induces paracellular diffusion of Ca++, thereby maintaining [Ca++] independent of [BA].

Adult

Composition of gall bladder stones associated with octreotide: response to oral ursodeoxycholic acid.

Octreotide, an effective treatment for acromegaly, induces gall bladder stones in 13-60% of patients. Because knowledge of stone composition is essential for studies of their pathogenesis, treatment, and prevention, this was investigated by direct and indirect methods in 14 octreotide treated acromegalic patients with gall stones. Chemical analysis of gall stones retrieved at cholecystectomy from two patients, showed that they contained 71% and 87% cholesterol by weight. In the remaining 12 patients, localised computed tomography of the gall bladder showed that eight had stones with maximum attenuation scores of < 100 Hounsfield units (values of < 100 HU predict cholesterol rich, dissolvable stones). Gall bladder bile was obtained by ultrasound guided, fine needle puncture from six patients. All six patients had supersaturated bile (mean (SEM) cholesterol saturation index of 1.19 (0.08) (range 1.01-1.53)) and all had abnormally rapid cholesterol microcrystal nucleation times (< 4 days (range 1-4)), whilst in four, the bile contained cholesterol microcrystals immediately after sampling. Of the 12 patients considered for oral ursodeoxycholic acid (UDCA) treatment, two had a blocked cystic duct and were not started on UDCA while one was lost to follow up. After one year of treatment, five of the remaining nine patients showed either partial (n = 3) or complete (n = 2) gall stone dissolution, suggesting that their stones were cholesterol rich. This corresponds, by actuarial (life table) analysis, to a combined gall stone dissolution rate of 58.3 (15.9%). In conclusion, octreotide induced gall stones are generally small, multiple, and cholesterol rich although, in common with spontaneous gall stone disease, at presentation some patients will have a blocked cystic duct and some gall stones containing calcium.

Acromegaly

Deoxycholic acid influences cholesterol solubilization and microcrystal nucleation time in gallbladder bile.

Little is known about the effects of biliary deoxycholic acid on the partitioning of biliary cholesterol between vesicles and micelles and on the rate of nucleation of cholesterol microcrystals, key steps in gallstone formation. Therefore, 43 samples of fresh gallbladder bile were obtained from a heterogeneous group of patients with and without stones. Univariate and multivariate analyses were then applied to determine the inter-relationships between biliary cholesterol saturation, total lipid concentration, and bile acid species and (1) the distribution of biliary cholesterol between vesicles and micelles and (2) the cholesterol microcrystal nucleation time. The percentage of deoxycholic acid in bile was shown to be linearly related to the cholesterol saturation index (r = .54; P < .001), the vesicular cholesterol:phospholipid molar ratio (r = .53; P < .001), and the molar concentration of cholesterol in the vesicles (r = .59; P < .001). The mean proportion of biliary deoxycholic acid conjugates was also greater in patients with rapid nucleation times (23.4 +/- SEM 1.1%) than in those with slow nucleation times (17.3 +/- 1.9%; P < .05). As total bile lipid concentration increased, the proportion of total biliary cholesterol in vesicles decreased (r = .53; P < .001), whereas the molar concentration of vesicular cholesterol increased (r = .42, P < .01). The cholesterol saturation indices, total bile lipid concentration, and proportion of biliary deoxycholate were independent determinants of the molar concentration of cholesterol in vesicles. We conclude that relative increases in the percentage of deoxycholic acid and in bile lipid concentration, favor the partitioning of cholesterol into vesicles. In turn, this leads to an increase in the vesicular cholesterol:phospholipid molar ratio and thus to a decrease in the cholesterol microcrystal nucleation time.

Adult

Volumetric MRI assessment of temporal lobe structures in schizophrenia.

This magnetic resonance imaging (MRI) study was designed to investigate whether patients with schizophrenia have focal or lateralized deficits in the volumes of temporal lobe structures. Estimated volumes of the temporal lobes, hippocampi, superior temporal gyri, lateral ventricles, third ventricle, temporal horns of the lateral ventricles, and a frontal-parietal reference area (FPRA) were quantified for each hemisphere. The schizophrenic group had less gray matter (GM) in the temporal lobes and the FPRA relative to controls. Ventricular volumes were significantly larger in the schizophrenic group, as was cerebrospinal fluid (CSF) volume for temporal lobe sulci. No significant differences in hippocampal volumes emerged between groups. The magnitude of GM deficit was not greater in the temporal lobes relative to the FPRA. These results confirm the presence of bilateral GM volume deficits of the temporal lobes in schizophrenia but do not support the hypothesis that structural changes preferentially affect the temporal lobes or the left cerebral hemisphere.

Adult

The role of bile composition and physical chemistry in the pathogenesis of octreotide-associated gallbladder stones.

BACKGROUND/AIMS: Treatment of acromegaly with octreotide inhibits cholecystokinin release and gallbladder contraction and induces gallbladder stones. However, little is known about the effects of octreotide on bile composition. METHODS: Fresh gallbladder bile was obtained from three groups: (1) 11 nonacromegalic patients with cholesterol gallstones, (2) 6 acromegalic patients with octreotide-associated stones (treatment, 300-600 micrograms/day for 3-66 months), and (3) 8 acromogalic patients with no stones before octreotide treatment, 5 of whom were reexamined after 3-24 months of therapy. RESULTS: Compared with stone-free acromegalic patients untreated with octreotide, bile from patients with cholesterol stones and from acromegalic patients with octreotide-associated stones had greater saturation indices (mean +/- SEM) (1.52 +/- 0.17 and 1.32 +/- 0.14 vs. 0.90 +/- 0.05, respectively; P < 0.01); more cholesterol in vesicles (61.2% +/- 4.5% and 67.7% +/- 7.2% vs. 37.7% +/- 3.5%; P < 0.009); more unstable vesicles (cholesterol/phospholipid ratios, 0.97 +/- 0.12 and 0.81 +/- 0.16 vs. 0.52 +/- 0.05; P < 0.02); more rapid nucleation (< 5 and < 5 days vs. > 18 days; P < 0.003); and more deoxycholic acid (22.8% +/- 2.4% and 23.6% +/- 4.8% vs. 13.9% +/- 1.4%; P < 0.05). In the paired studies, the saturation indices increased from 0.89 +/- 0.07 before octreotide treatment to 1.12 +/- 0.03 during octreotide treatment (P < 0.02), as did the percentage of deoxycholic acid from 13.3% +/- 2.1% to 24.9% +/- 2.7% (P < 0.03). CONCLUSIONS: Acromegalic patients with octreotide-associated gallstones and stone-free acromegalic patients treated with octreotide have similar changes in bile composition to those in patients with "conventional" cholesterol gallstone disease.

Acromegaly

Changes in serum calcium levels influence biliary calcium levels in humans.

BACKGROUND/AIMS: There are few data on the influence of serum calcium on biliary total and ionized calcium levels in humans. The aims of the study were to increase serum calcium levels short-term by intravenous calcium infusion and study the resultant changes in total and ionized calcium concentrations ([CaTOT] and [Ca2+]) in T-tube bile. METHODS: Serum and biliary total and ionized calcium concentrations were measured over an 8-hour period in 7 postcholecystectomy patients with T tubes before, during, and after a 4-hour intravenous infusion of 10% calcium gluconate. RESULTS: During the infusion, serum [CaTOT] increased from 2.08 +/- 0.14 mmol/L (mean +/- SD) to 3.18 +/- 0.33 mmol/L, and serum [Ca2+] increased from 1.13 +/- 0.13 mmol/L to 1.68 +/- 0.13 mmol/L. After a 20-40-minute time lag, there were corresponding increases in biliary [CaTOT] from 1.90 +/- 0.45 mmol/L to 2.80 +/- 0.52 mmol/L and in biliary [Ca2+] from 0.70 +/- 0.11 mmol/L to 1.19 +/- 0.16 mmol/L. When the data were pooled, serum [Ca2+] showed significant correlations with both biliary [CaTOT] (n = 128; r = 0.56; P < 0.001) and biliary [Ca2+] (n = 128; r = 0.64; P < 0.001). CONCLUSIONS: These results support the hypothesis that the biliary tree is freely permeable to calcium ions and that serum calcium level is one determinant of biliary calcium concentration. Our data may also explain the observation that patients with hypercalcemia are reported to have a greater than normal prevalence of calcified gallstones.

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