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Biomedical subjects

P Price

Publications and source records attributed to P Price.

At least 127 records · Page 7Linked to original sources

Mechanisms of renal repair and survival following acute injury.

The reaction of the renal epithelium to injury is heterogenous. Some cells die, others survive apparently intact, while others commit to repair. The determinants of these responses appear to depend on signal transduction pathways and molecular responses that is segment specific and interactive. The kidney, as do cells in culture exposed to various noxious stimuli, react in a typical manner referred to as the stress response. The response is comprised of kinases and their molecular targets as well as cell cycle-specific factors that determine whether a cell survives the injury or not. We propose that this response can be modified by survival factors which upregulate those aspects of the response that are cytoprotective and which downregulate those that are cytoreductive. Preliminary data will be presented to demonstrate the feasibility of this approach.

Acute Kidney Injury↗

Drug quantitation on a benchtop liquid chromatography-tandem mass spectrometry system.

The specificity and selectivity of LC-MS-MS is illustrated to explain why LC-MS-MS has become the method of choice for quantitation within the pharmaceutical industry. Two assays are described that demonstrate the facility with which new ion trap technology can utilize the selectivity and sensitivity of LC-MS-MS to quantitate trace level components within complex matrices, in particular human plasma. One assay undergoes a validation procedure and demonstrates the utility of this new technology for drug quantitation within a regulated environment.

Calibration↗

Does fluorine-18 fluorodeoxyglucose metabolic imaging of tumours benefit oncology?

Fluoro-deoxyglucose (FDG) is a metabolic marker, which follows the same route into cells as that of glucose, and it can be radiolabelled with fluorine-18, 18F-FDG making it suitable for imaging with positron emission tomography (PET). The fact that rapidly proliferating cells such as tumour cells accumulate 18F-FDG more avidly than those with a normal turnover rate has given rise to its potential in oncology. The rationale and previous published uses of 18F-FDG in oncology are reviewed, together with the various analysis techniques and associated methodological difficulties.

Deoxyglucose↗

Autoimmunity and the highway to diabetes.

Insulin-dependent diabetes mellitus (IDDM) is an immunopathological condition involving loss of beta cell function, but views of how this arises are confusing and contradictory. For example, studies with non-obese diabetic mice implicate abnormal cytokine production in disease pathogenesis, but give little insight into how this arises. Many genetic and environmental risk factors have been described, but no single factor predicts the development of disease. Moreover, the prevalence of auto-antibodies suggests an autoimmune aetiology, but no antigen is recognized by all individuals. As an aid to understanding how IDDM develops, this review considers the risk factors as distinct starting points on a journey, and reviews current literature in search of the point where the roads from each origin merge into a highway to diabetes.

Animals↗

The roles of tumour necrosis factor-alpha, interleukin-1 and interleukin-12 in murine cytomegalovirus infection.

The roles of the inflammatory cytokines tumour necrosis factor-alpha (TNF-alpha), interleukin-1 (IL-1) and IL-12, in murine cytomegalovirus (MCMV) disease were investigated in susceptible BALB/c and resistant C57BL/6 mice. MCMV infection induced IL-1 and TNF-alpha production by peritoneal cells from BALB/c mice, as demonstrated previously in C57BL/6 mice. Overt ill-health and viral replication in the spleens of BALB/c mice were increased by in vivo treatment with soluble TNF-alpha receptors to inhibit the activity of this cytokine, whilst antibodies to IL-12 had a similar but more restricted effect C57BL/6 mice were not affected by either treatment, suggesting TNF-alpha and IL-12 are not critical for natural killer cell-mediated restriction of viral replication in the spleen. Soluble TNF-alpha receptors and antibodies to IL-12 also enhanced MCMV titres and numbers of viral antigen-positive cells in the livers of BALB/c mice and TNF-alpha receptors have similar effects in C57BL/6 livers. In contrast, IL-1 receptors improved the health of MCMV-infected BALB/c mice and reduced viral replication and hepatitis at some time-points. Mechanisms which may underlie these changes are discussed.

Animals↗

Correlation between natural killer cell activation in the bone marrow and haemopoietic dysfunction following cytomegalovirus infection of mice.

We describe here the activation of natural killer (NK) cells in the bone marrows and spleens of mice infected with murine cytomegalovirus (MCMV). NK activity at these sites peaked at day 2 to 3 post-infection (p.i.) and declined between days 6 and 10 p.i. in BALB/c and C57BL/6 mice. In BALB/c mice, the increases in NK activity coincided with depletion of colony-forming units of the granulocyte-monocyte lineage (CFU-GM) from the marrow. CFU-GM depletion in MCMV-infected C57BL/6 mice was less severe, despite the presence of activated NK cells in the marrow. Treatment of BALB/c mice with anti-asialo GM1 prior to MCMV infection resulted in less severe CFU-GM depletion at day 2 p.i. than infection with MCMV alone. When homozygous C57BL/6 or CBA/CaH bg/bg mice were infected with MCMV, depletion of marrow CFU-GM was more severe than in their heterozygous littermates. Finally, we observed some inhibition of colony formation when marrow cells from MCMV-infected and uninfected BALB/c donors were mixed and incubated prior to the CFU-GM assay. These results suggest that activated NK cells may contribute to depletion of haemopoietic cells soon after MCMV infection of BALB/c mice, but may limit the loss of these cells in C57BL/6 and CBA/CaH mice.

Animals↗

The direct calculation of parametric images from dynamic PET data using maximum-likelihood iterative reconstruction.

The aim of this work is to calculate, directly from projection data, concise images characterizing the spatial and temporal distribution of labelled compounds from dynamic PET data. Conventionally, image reconstruction and the calculation of parametric images are performed sequentially. By combining the two processes, low-noise parametric images are obtained, using a computationally feasible parametric iterative reconstruction (PIR) algorithm. PIR is performed by restricting the pixel time-activity curves to a positive linear sum of predefined time characteristics. The weights in this sum are then calculated directly from the PET projection data, using an iterative algorithm based on a maximum-likelihood iterative algorithm commonly used for tomographic reconstruction. The ability of the algorithm to extract known kinetic components from the raw data is assessed, using data from both a phantom experiment and clinical studies. The calculated parametric images indicate differential kinetic behaviour and have been used to aid in the identification of tissues which exhibit differences in the handling of labelled compounds. These parametric images should be helpful in defining regions of interest with similar functional behaviour, and with FDG Patlak analysis.

Algorithms↗

N-acetyl cysteine ameliorates ischemic renal failure.

Recovery from ischemic renal injury is accompanied by enhanced DNA synthesis and a typical immediate early (IE) gene response. These two processes occur in distinct cell populations, suggesting that the IE gene response does not serve a proliferative function directly. As cellular stress induces an IE response through activation of the stress-activated protein kinases (SAPK) that is not proliferative and can be inhibited by N-acetyl-L-cysteine (NAC), we determined whether the Jun NH2-terminal kinases (JNK), members of the SAPKs, are activated during ischemia and whether NAC administration reduces the IE response and/or the induction of JNK activity. NAC (6 mM/kg body wt) infused 1 h prior to and 1 h following renal ischemia reduced c-fos and c-jun expression by 50 and 70%, respectively. Ischemia increased JNK activity, and this increase was inhibited by NAC. NAC infused animals had a higher glomerular filtration rate at 1 day (NAC, 0.9 +/- 0.2, vs. control, 0.05 +/- 0.01 ml/min, P < 0.001) and 7 days (NAC, 2.0 +/- 0.1, vs. control, 1.2 +/- 0.1, P < 0.001) after the induction of ischemia. NAC did not reduce the extent of proximal tubule necrosis at 24 h after reperfusion but improved histological appearance of the kidney at 7 days. The mechanism by which NAC ameliorates the loss of renal function is unknown but may involve its general properties as an antioxidant or a possible interaction with NAC and NO. We conclude that the IE gene response of the kidney to ischemia reperfusion is a consequence of the stress-activated kinase pathway and that part of the response is deleterious to kidney function and cellular integrity.

Acetylcysteine↗

Social support for elderly patients with chronic wounds.

Few attempts have been made to measure the social support received by elderly patients with chronic wounds. To focus research on these issues, an established model integrating the various roles played by social support in the adaptation of patients to stressful situations was applied. Two questionnaires were used to measure perceived social support and coping in a sample of patients with leg ulcers (N = 15, mean age 70.4 years) or diabetic foot ulcers (N = 15, mean age 63.6 years) at two time-points over a four-month period. The results indicate that there were no statistical differences between the groups. The overall levels of social support were low, with emotional support recorded most frequently. The standardised scores for types of coping indicate no unusual patterns, although the scores for logical analysis were low. However, there was considerable variation in the types of coping strategies used by individuals.

Adaptation, Psychological↗

Effect of a retroviral immunodeficiency syndrome on murine cytomegalovirus-induced hepatitis.

We have studied the effects of LP-BM5 MuLV-induced murine acquired immunodeficiency syndrome (MAIDS) on concomitant murine cytomegalovirus (MCMV) infection in the livers of C57BL mice. A delayed inflammatory response in livers of mice with MAIDS (M+) on day 4 was associated with impaired clearance of MCMV-infected cells 6 days after infection. This correlated with increased levels of inflammation and serum alanine transaminase. The latter reflects enhanced hepatic necrosis, which was evident histologically. Delayed-type hypersensitivity responses to MCMV antigen were unimpaired in M+ mice and were mediated by CD8+ cells. Depletion of NK1.1+ cells from M+ mice increased MCMV replication and associated liver damage on day 6, whereas CD8+ depletion had little effect. In contrast, in the presence of CD8+ cells M- C57BL mice did not require NK1.1+ cells for control of hepatic MCMV infection, but dual NK1.1+ and CD8+ depletion dramatically potentiated hepatic MCMV replication. Our results suggest that M+ mice may acquire non-NK1.1+ and non-CD8+ cells that are able to partially control hepatic MCMV infection. These findings are discussed with reference to mortality in M+ mice after high-dose MCMV infection, as this is initially delayed but ultimately higher than in M- controls.

Animals↗

Current perspectives in oxygenation and ventilation--Part II.

This is the second part of the discussion on current perspectives in oxygenation and ventilation. The focus is on modes of ventilation. Intended goals of ventilation therapy are discussed, particularly in relation to work of breathing and oxygen delivery. Current modes of ventilation are reviewed, with advantages and disadvantages of the types of therapy presented in summary tables. Consideration is given to the broader perspective of ventilation therapy, that is, improving the balance between oxygen delivery and tissue oxygen needs. Optimizing the oxygen balance includes nursing interventions directed toward decreasing oxygen demands.

Blood Gas Analysis↗

Direct cytotoxicity of HIV-1 envelope protein gp120 on human NT neurons.

A new in vitro system comprising a pure population of neurons, human NT cells, was used to characterize the direct neurotoxic effect of HIV-1 envelope protein gp120. Cytotoxicity was monitored by a quantitative assay after exposure to recombinant gp120 in the presence or absence of other reagents. Treatment of mature NT neurons with various doses of gp120 for 24 h caused a decrease of up to 27% in the number of viable cells. This neurotoxicity was abolished by co-treatment with either D-2-amino-5-phosphonopentanoic acid (APV), MK801 or nimodipine, or by culturing cells in a Ca(2+)-free environment. Taken together, these data indicate that gp120 exerts a direct neurotoxic effect by acting through NMDA receptors and Ca2+ channels.

2-Amino-5-phosphonovalerate↗

The inflammatory macrophage response to MCMV in mice with a retroviral immunodeficiency syndrome (MAIDS).

We have shown that normal C57BL/6J mice are moderately resistant to infection with murine cytomegalovirus (MCMV) and that this resistance is impaired by prior infection with LP-BM5 MuLV, which causes a disease (MAIDS) similar to early HIV-induced disease. This study investigates macrophage function in MAIDS+ mice challenged with MCMV. MAIDS reduces the influx of cells into the peritoneal cavity seen in normal C57BL/6J mice 6 days after MCMV infection. The infiltrates contained cells that resembled activated macrophages, as they took up colloidal gold, expressed the macrophage marker Mac-1, had high levels of acid phosphatase activity, and were lymphocytostatic when co-cultured with activated T cells. MAIDS+ mice had a higher percentage of cells able to take up colloidal gold and higher acid phosphatase activity per cell. The cells were also more lymphocytostatic and produced higher levels of interleukin-1 and tumor necrosis factor-alpha on days 4 and 6 after MCMV infection. Hence, MAIDS enhances baseline and induced macrophage activity, but depresses infiltration into the site of inflammation.

Acid Phosphatase↗

Measurement of liver blood flow using oxygen-15 labelled water and dynamic positron emission tomography: limitations of model description.

To date no satisfactory method has been available for the quantitative in vivo measurement of the complex hepatic blood flow. In this study two modelling approaches are proposed for the analysis of liver blood flow using positron emission tomography (PET). Five experiments were performed on three foxhounds. The anaesthetised dogs were each given an intravenous bolus injection of oxygen-15 labelled water, and their livers were then scanned using PET. Radioactivity in the blood from the aorta and portal vein was measured directly and simultaneously using closed external circuits. Time-activity curves were constructed from sequential PET data. Data analysis was performed by assuming that water behaves as a freely diffusible tracer and adapting the standard one-compartment blood flow model to describe the dual blood supply of the liver. Two particular modelling approaches were investigated: the dual-input model used both directly measured input functions (i.e. using the hepatic artery and the portal vein input, determined from the radioactivity detected in the aorta and portal vein respectively) whereas the single-input model used only the measured arterial curve and predicted the corresponding portal input function. Hepatic arterial flow, portal flow and blood volume were fitted from the PET data in several regions of the liver. The resulting estimates were then compared with reference blood flow measurements, obtained using a standard microsphere technique. The microspheres were injected in a separate experiment on the same dogs immediately prior to PET scanning. Whilst neither the single- nor the dual-input models accurately reproduced the arterial reference flow values, the flow values from the single-input model were closer to the microsphere flow values. The proposed single-input model would be a good approximation for liver blood flow measurements in man. The observed discrepancies between the PET and microsphere flow values may be due to the inherent temporal and spatial heterogeneity of liver blood flow. The results presented suggest that adaptation of the standard one-compartment blood flow model to describe the dual blood supply of the liver is limited and other flow tracers have to be considered for quantitative PET measurements in the liver.

Animals↗