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Biomedical subjects

A Carpenter

Publications and source records attributed to A Carpenter.

At least 19 recordsLinked to original sources

MAdCAM-1 expression and regulation in murine colonic endothelial cells in vitro.

BACKGROUND: Although the mucosal addressin cell adhesion molecule-1 (MAdCAM-1) is associated with the etiology of inflammatory bowel diseases, few studies have directly examined MAdCAM-1 using microvascular endothelium derived from the colon. This study measured the expression of MAdCAM-1 in a novel colon endothelial line MJC-1, as well as MAdCAM-1 regulation and function in vitro. METHODS: We cloned microvascular endothelial cells from primary colon cultures using ImmortoMice mice (whose cells express a temperature-sensitive SV40 large T antigen, H-2Kb-tsA58 mice). Expression of MAdCAM-1 after stimulation with cytokines [tumor necrosis factor (TNF)-alpha, interleukin (IL)-1beta, or interferon (IFN)-gamma] was determined by Western blotting. Signal paths regulating MAdCAM-1 expression were examined using pharmacological blockers before cytokines. We also examined lymphocyte adhesion using lymphocytes that constitutively express alpha4beta7 integrin. RESULTS: TNF-alpha induced MAdCAM-1 in a dose-dependent manner by 24 hours. MAdCAM-1 induction was protein kinase C, tyrosine kinase, p38 mitogen activated protein kinase, and nuclear-factor kappa-B/poly adenosine diphosphate ribose polymerase dependent. Lymphocyte adhesion was increased 2.6-fold after TNF-alpha stimulation and was inhibited by anti-MAdCAM-1 antibody before treatment (P < 0.05 control versus TNF-alpha). CONCLUSIONS: In vitro, MAdCAM-1 can be induced on colon endothelial cells by TNF-alpha stimulation and may represent a useful model to study microvascular injury in the large intestine.

Animals↗

Charging for port reception facilities in North Sea ports: putting theory into practice.

The aim of this paper is to evaluate the charging systems for the use of port reception facilities for waste oil, and to examine the potential impact of the charging elements of the new (late 2000) EU Directive on port reception facilities for ship-generated waste and cargo residues. Experience to date with alternative models for charging is considered. Conclusions are drawn about the effectiveness of the EU Directive as a means of controlling pollution in the North Sea and producing a 'level playing field' between ports.

Costs and Cost Analysis↗

Cytokine-treated human neutrophils contain inducible nitric oxide synthase that produces nitration of ingested bacteria.

Although the production of NO within rodent phagocytes is well-characterized, its production and function within human phagocytes are less clear. We show here that neutrophils within human buffy coat preparations stimulated with a mixture of interleukin 1, tumor necrosis factor alpha, and interferon gamma contain inducible NO synthase mRNA and protein, one of the enzymes responsible for NO production. The protein colocalizes with myeloperoxidase within neutrophil primary granules. Using an inhibitor of NO synthase, L-N-monomethyl arginine, we show that activity of this enzyme is required for the formation of nitrotyrosine around phagocytosed bacteria, most likely through the intermediate production of peroxynitrite, a reaction product of NO and superoxide anions.

Arginine↗

Quinolone arthropathy in immature rabbits treated with the fluoroquinolone, PD 117596.

To study the potential of the fluorquinolone, PD 117596 to cause arthropathy in experimental animals, immature rabbits were orally administered the drug for five days at 0, 100, 350, 500 and 750 mg/kg. Characterization of changes induced in major synovial joints was based on: macroscopic and histopathologic observations, transmission electron microscopic examinations and magnetic resonance imaging. Preferentially targeting the knee, PD 117596 produced vesicles and erosions in articular cartilage which resembled, morphologically, those described in other laboratory species. Lesion incidence was not clearly dose-related. In the perivesicular region, degenerate chondrocytes were intermixed with hypertrophic cartilage cells and chondrocyte clusters. Ultrastructurally, hypertrophic chondrocytes were the consequence of karyomegaly and RER proliferation. Matrix density was reduced due to collagen and proteoglycan loss. Joint structures were readily visualized by magnetic resonance imaging which identified thickened articular cartilage, surface irregularities consistent with ruptured vesicles and separation of opposing articular surfaces secondary to synovival effusions. The immature rabbit, although less sensitive than the juvenile dog to the arthropathic effects of quinolones, was nonetheless a good model to study this experimental osteoarticular disease.

Animals↗

Evolution of photochemically induced focal cerebral ischemia in the rat. Magnetic resonance imaging and histology.

BACKGROUND AND PURPOSE: Magnetic resonance imaging (MRI) is increasingly used to study the pathophysiological evolution of cerebral ischemia in humans and animals. We have investigated photochemically induced (rose bengal) focal cerebral ischemia, a relatively noninvasive, reproducible model for stroke, and compared the evolution of the ischemic response in vivo and postmortem with MRI and histology, respectively. METHODS: MR images weighted for T2, diffusion, and T2* and parallel histological sections stained with cresyl fast violet (CFV) and for glial fibrillary acid protein were obtained from 34 adult male Hooded Lister rats at seven time points (3.75 to 196 hours) after bilateral ischemia induction. From CFV histology, lesion volumes and cell counts were calculated; from diffusion-weighted and T2-weighted images, apparent diffusion coefficients and lesion volumes were determined. RESULTS: Both MRI and histology revealed a well-defined lesion at 3.75 hours after irradiation and a consistent pattern of temporal evolution; lesion apparent diffusion coefficients decreased significantly by 3.75 hours, increased significantly by day 2, and correlated strikingly with the decline in lesion CFV-positive cell numbers. After day 2, astrocytes and connective tissue cells invaded the infarct. Throughout the time course, lesion volumes determined in vivo and postmortem (after shrinkage correction) agreed well. CONCLUSIONS: MRI changes quantitatively reflect histopathology, revealing reproducible primary and secondary damage characteristics noninvasively. These changes essentially replicate those reported for other animal stroke models and clinically, emphasizing the value both of MRI and the photochemically induced focal cerebral ischemia model in stroke research.

Animals↗

Differences in the shedding of soluble TNF receptors between endotoxin-sensitive and endotoxin-resistant mice in response to lipopolysaccharide or live bacterial challenge.

TNF-alpha plays a pivotal role in the pathogenesis of septic shock. It exerts its effects by binding two cell surface receptors, designated TNF-R I and II, also referred to as the p55 and p75 receptors, respectively. TNF-Rs are transmembrane proteins, which on cleavage of their extracellular domains, result in the release of soluble fragments (sTNF-R). sTNF-R levels increase markedly during infection, and may serve to modulate TNF-alpha bioactivity. The mechanisms regulating this process are uncertain. To investigate this, we measured sTNF-R release in endotoxin-sensitive C3H/HeN and endotoxin-resistant C3H/HeJ mice given LPS or live Gram-negative bacteria. In C3H/HeN mice, there was a rapid early response during the first 4 h, and a second peak at 8 h, particularly noticeable in the case of the p75 receptor. Prior administration of neutralizing Abs to TNF-alpha or IFN-gamma had no effect on receptor shedding. Surprisingly, C3H/HeJ mice also responded to both bacterial challenge and to LPS by shedding sTNF-R; the magnitude and duration of the early response was not substantially different from C3H/HeN mice, although the second peak was absent. Peritoneal macrophages from C3H/HeN mice responded promptly (5 h) when stimulated with LPS in vitro, and by 22 h levels had increased five- to 10-fold. In contrast, cells from C3H/HeJ mice demonstrated only a very modest response at 22 h following maximal stimulation. The data suggest that there may be at least two separately regulated pathways that control sTNF-R shedding in these mice.

Animals↗

Prenatal diagnosis of congenital cytomegalovirus infection with abnormal triple-screen results and hyperechoic fetal bowel.

A 14-year-old primigravid adolescent with abnormal triple-marker screen results at 18 weeks' gestation was found to have hyperechoic fetal bowel. Amniotic fluid culture was positive for cytomegalovirus. Serial ultrasonography demonstrated progressive lateral ventriculomegaly, intrauterine growth retardation, and hydrops fetalis; fetal death occurred at 32 weeks' gestation.

Abdomen↗

Protective effects of a recombinant amino-terminal fragment of human bactericidal/permeability-increasing protein in an animal model of gram-negative sepsis.

Bactericidal/permeability-increasing protein (BPI) has bactericidal properties and also binds lipopolysaccharide (LPS). The ability of a recombinant amino-terminal fragment of BPI to protect mice from death after challenge with a number of different strains of Escherichia coli was tested. BPI prevented death in animals challenged with the J5 rough strain but not with smooth strains O111:B4 and O7K1. Protection was associated with a reduction in serum LPS and tumor necrosis factor-alpha levels but not with reduction in blood bacterial counts. BPI was effective at protecting against death in mice injected with purified O111:B4 LPS. Lack of protection after injection with live O111:B4 and O7K1 may be due to production by these models of approximately 1000-fold higher blood bacterial count compared with J5. Thus, BPI is a promising therapy in the treatment of gram-negative septic shock, although the range of organisms against which it is effective remains to be determined.

Animals↗

Fortuitous imaging of a primary adrenocortical carcinoma with Tc-99m HDP.

The importance of evaluating nonfunctional adrenal masses in the right clinical setting is discussed. A 60-year-old man was initially diagnosed of having a localized lung carcinoma. Metastatic work-up showed an adrenal mass that was not deemed to be related to the lung primary. Although biochemical testing revealed that the adrenal mass was nonfunctional, adrenal scintigraphy was not performed. On resection, the lung neoplasm was shown to be a poorly differentiated adenocarcinoma. Radiologic follow-up of the adrenal finding was recommended. A year later, the patient presented with an abdominal mass that was visualized by bone scintigraphy and, on resection, proved to be adrenocortical carcinoma. In retrospect, the lung mass was a metastasis of an adrenocortical carcinoma.

Adenocarcinoma↗

Protective effect of 55- but not 75-kD soluble tumor necrosis factor receptor-immunoglobulin G fusion proteins in an animal model of gram-negative sepsis.

The aim of this study was to compare the ability of both a 55- and 75-kD soluble tumor necrosis factor receptor immunoglobulin G fusion protein (sTNFR-IgG) in protecting against death in a murine model of gram-negative sepsis. Pretreatment with 250 micrograms of the p75 construct delayed but did not avert death in this model, reducing peak bioactive TNF-alpha levels after infection from 76.4 ng ml-1 in control mice to 4.7 ng ml-1 in the treated group (p < 0.05, two-sample t test). However, these low levels of bioactive TNF-alpha persisted in the p75 fusion protein-treated animals compared with the controls and were sufficient to mediate delayed death. In contrast, pretreatment with 200 micrograms of the p55 sTNFR-IgG gave excellent protection against death with complete neutralization of circulating TNF. Studies of the binding of TNF-alpha with the soluble TNFR fusion proteins showed that the p75 fusion construct exchanges bound TNF-alpha about 50-100-fold faster than the p55 fusion protein. Thus, although both fusion proteins in equilibrium bind TNF-alpha with high affinity, the TNF-alpha p55 fusion protein complex is kinetically more stable than the p75 fusion construct, which thus acts as a TNF carrier. The persistent release of TNF-alpha from the p75 fusion construct limits its therapeutic effect in this model of sepsis.

Animals↗

Inducible nitric-oxide-synthase mRNA is transiently expressed and destroyed by a cycloheximide-sensitive process.

Nitric oxide is a mediator of a wide range of physiological processes. It is produced by an enzyme family, the nitric-oxide synthases, one form of which is induced in many cells following stimulation with cytokines and lipopolysaccharide. The aim of the experiments reported in this study was to investigate the regulation of mRNA expression for this inducible nitric-oxide synthase in smooth muscle cells and macrophages. Stimulation of these cells with cytokines and lipopolysaccharide results in a marked elevation of nitric-oxide-synthase mRNA levels, which however do not remain elevated, but reach a maximum at 3-6 h after stimulation before returning to baseline levels over the next 20 h. Enzyme activity, however, remained virtually constant for 48 h following stimulation. Inspection of the 3' untranslated segment of both murine and human inducible nitric-oxide-synthase mRNAs showed the presence of a conserved AU-rich octanucleotide sequence, previously identified in cytokine and oncogene mRNAs and shown to mediate mRNA instability. A particular feature of the breakdown of mRNAs bearing this sequence is that degradation is prevented by protein-synthesis inhibition. We show in this study that the half-life of inducible nitric-oxide-synthase mRNA is 6 h and that in the presence of an inhibitor of protein synthesis this breakdown is prevented. Thus, the mRNA for inducible nitric-oxide synthase shares some features in common with cytokines such as the transient expression and decay of its mRNA which can be prevented by protein-synthesis inhibition.

Amino Acid Oxidoreductases↗

Inhibition of nitric oxide synthase in experimental gram-negative sepsis.

Nitric oxide (NO) has been proposed as a mediator of hypotension in septic shock. The aim of this study was to determine whether an inhibitor of NO production, NG-monomethyl-L-arginine (L-NMMA), was able to protect against death in two murine models of experimental gram-negative sepsis. L-NMMA (3-300 mg kg-1) did not improve survival in intravenous or intraperitoneal models of sepsis. Seven h after intravenous infection, L-NMMA (100 mg/kg-1) reduced serum nitrite plus nitrate levels (NO breakdown products) from 774 microM in control-treated animals to 282 microM in L-NMMA-treated animals (P < .001). This compared to a level of 103 microM in uninfected mice. L-NMMA produced little change in bacterial load following infection and did not increase hepatic damage, as measured by serum levels of ornithine carbamoyltransferase. Thus, while L-NMMA may reverse the hyporesponsiveness of peripheral circulation in sepsis, it was unable to prevent death in these models of gram-negative septic shock.

Amino Acid Oxidoreductases↗

Immunochemical localization of inducible nitric oxide synthase in endotoxin-treated rats.

BACKGROUND: Administration of endotoxin to rodents produces widespread tissue induction of nitric oxide synthase (NOS). To understand the mechanisms of the resulting endotoxin shock, it is important to know the cellular distribution of the inducible NOS (iNOS). EXPERIMENTAL DESIGN: We have investigated the localization and time course of expression of iNOS in rats at time 0 (control) and 3, 6, 9, and 24 hours after administration of endotoxin and also in endotoxin- and cytokine-stimulated RAW 264 murine macrophage and A7r5 aortic smooth muscle cells. We have used a rabbit antiserum to a synthetic peptide selected from the deduced sequence of the cloned macrophage enzyme (residues 47-71) and immunochemical techniques. RESULTS: The antiserum reacted with an approximately 130-kilodalton protein (the molecular weight of iNOS) in Western blots of total cytoplasmic proteins from livers of endotoxin-treated rats, RAW 264 murine macrophages stimulated with endotoxin and combinations of cytokines, and purified liver iNOS, but not in control, untreated tissues. Strong cytoplasmic immunostaining was seen in RAW 264 murine macrophages and A7r5 rat aortic smooth muscle cells after stimulation, but not in nonstimulated cells. Three hours after endotoxin treatment in rats, iNOS immunoreactivity was detectable in many tissues and was at its strongest at 6 and 9 hours after stimulation. Staining was detected predominantly in macrophages distributed abundantly in heart, lung, liver, and kidney. It was also present in Kupffer cells and hepatocytes, biliary epithelium, mesangial cells, airway epithelium, and nerves supplying mesenteric blood vessels but was not detected in any vasculature. By 24 hours there was a reduction in the number of cells stained compared with that seen at 6 and 9 hours. In addition, at 24 hours after endotoxin treatment, granulomatous lesions showing iNOS staining were evident, particularly in the liver. CONCLUSIONS: Antiserum raised to macrophage NOS recognizes an inducible enzyme in a wide variety of cells. Macrophages are the major site of iNOS expression in endotoxin-treated rats and show greatest staining between 6 and 9 hours after treatment. Although staining was not seen in vascular cells in vivo, levels of the enzyme that are below the immunocytochemistry detection limit cannot be excluded.

Amino Acid Oxidoreductases↗

Differences in cytokine response and induction of nitric oxide synthase in endotoxin-resistant and endotoxin-sensitive mice after intravenous gram-negative infection.

Previous reports have suggested that the endotoxin-resistant C3H/HeJ strain of mouse is more susceptible to infection than is the endotoxin-sensitive parent strain, C3H/HeN, although they have never been compared in an i.v. model of sepsis. We therefore have used these mouse strains in an i.v. model of Gram-negative sepsis to compare their sensitivities to infection, their cytokine responses, and the levels of induction of the enzyme nitric oxide synthase assayed in their livers. By using i.v. infection with Escherichia coli we have found that both strains are approximately equally sensitive to this organism, despite the C3H/HeJ mice having a markedly attenuated TNF-alpha response. IFN-gamma levels after infection were identical in the two strains; the levels of nitric oxide synthase induced in their livers were about fourfold greater in the C3H/HeJ mice. This difference could not be explained by differences in bacterial load. These experiments suggest that factors other than TNF-alpha are important in determining outcome from Gram-negative sepsis and that TNF-alpha is not a major factor in the induction of hepatic nitric oxide synthase after infection in vivo.

Amino Acid Oxidoreductases↗

Evidence of increased nitric oxide production in patients with the sepsis syndrome.

To investigate whether the hypotension of septic shock is due to an excess production of nitric oxide (NO), we have determined the serum levels of nitrate and nitrite (NO3/NO2), the stable end-products of NO, in 12 patients with the sepsis syndrome and marked hypotension. Compared to a mean NO3/NO2 level of 36.4 microM in controls (n = 7), the group of septic patients had a significantly elevated mean NO3/NO2 level of 124 microM (P < 0.01, Wilcoxon two-sample test). A lesser elevation was also seen in a group of postoperative patients (mean level 87.3 microM, n = 7), which was significantly elevated compared to controls (P < 0.01, Wilcoxon two-sample test), but was not significantly lower than the septic group (0.1 > P > 0.05, Wilcoxon two-sample test). These data suggest that NO may be responsible, at least in part, for the hypotension of septic shock.

Adult↗

Purification of a distinctive form of endotoxin-induced nitric oxide synthase from rat liver.

An endotoxin-induced form of nitric oxide synthase (EC 1.14.23) was purified to homogeneity from rat liver by sequential anion-exchange chromatography and affinity chromatography using 2',5'-ADP-Sepharose. The enzyme has a subunit molecular mass of 135 kDa as determined by SDS/PAGE, a maximum specific activity of 462 nmol of citrulline formed from arginine per min per mg, and a Km for arginine of 11 microM. The enzyme was strongly stimulated by the addition of calmodulin with an EC50 of 2 nM, but removal of free calcium from the assay medium only reduced activity by 15%. Calmodulin inhibitors significantly reduced the enzyme activity. Tetrahydrobiopterin, FAD, and FMN were all required for full enzyme activity. This form of endotoxin-induced nitric oxide synthase from liver differs from the inducible enzyme found in macrophages and is unusual in that it is stimulated by calmodulin with little dependence on the calcium ion concentration.

Amino Acid Oxidoreductases↗

Preparation of heparin-glyceryl controlled-pore glass affinity media for the separation of alpha- and beta-lipoproteins.

The preparation of a stable affinity medium with heparin as the affinity ligand has been investigated. Glyceryl controlled-pore glass (CPG) was activated with 1-cyano-4-dimethylaminopyridinium tetrafluoroborate and coupled with heparin. This affinity medium was used to separate some simple proteins, trypsinogen and lysozyme, in a high-performance liquid chromatographic configuration. The heparin-glyceryl-CPG was also used to separate alpha- and beta-lipoproteins in human serum. The effectiveness of the separation is confirmed by radial immunodiffusion and the determination of the cholesterol content of each of the separated fractions.

Chromatography, Affinity↗

A rapid separation of alpha- and beta-lipoproteins by affinity chromatography.

A rapid and inexpensive separation of alpha- and beta-lipoproteins has been achieved using sulfated dextran beads as an affinity chromatography medium. The separation is completed in less than 15 min and the cholesterol content of the lipoprotein fractions can then be determined in a separate procedure.

Chromatography, Affinity↗