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Biomedical subjects

J Sinclair

Publications and source records attributed to J Sinclair.

At least 19 recordsLinked to original sources

Signal-transduction pathways involved in the hypertrophic effect of hsp56 in neonatal cardiomyocytes.

Heat shock protein (hsp) 56 (hsp56) is an immunophilin that acts as a cofactor with hsp90 and exhibits both peptidyl-prolyl isomerase activity and chaperone activity. Previous studies have shown that the hypertrophic effect of cardiotrophin-1 (CT-1) in cardiac cells is dependent on hsp56 induction. CT-1 activates a number of signal-transduction pathways. Therefore, we sought to determine whether these pathways were also important for hsp56-induced hypertrophy using overexpression with transiently transfected plasmid vectors in rat neonatal cardiomyocytes. Here we show that multiple signalling pathways are involved in hsp56-induced hypertrophy, namely the Janus kinase-signal-transducer and activator of transcription, extracellular signal-regulated protein kinase and PI3-kinase/Akt signalling pathways. Dominant-negative mutants and inhibitors of these pathways were able to block the hypertrophy observed as a result of hsp56 overexpression. However, an inhibitor of the p38 mitogen-activated protein kinase (p38 MAPK) pathway was not able to block the hypertrophic effect of hsp56 overexpression. Furthermore, we show that domains I, II and IV of the hsp56 protein may be involved in its hypertrophic effect. These studies show for the first time that multiple signalling pathways are involved in the hypertrophic effect of hsp56 and that overexpression of hsp56 itself is able to activate the necessary signalling pathways, which induce hypertrophy.

Animals↗

Increased risk of adverse events when changing intravenous immunoglobulin preparations.

Intravenous immunoglobulin (IVIG) therapy has represented a major advance in the treatment of patients with primary immune deficiency disorders. In September 2000 a new IVIG formulation, Intragam P, was introduced into clinical use. Intragam P is prepared by delipidation of pooled plasma followed by an ion exchange chromatography step to eliminate immunoglobulin aggregates. It is then pasteurized for 10 h at 60 degrees C for viral inactivation before storage at pH 4.25 in 10% maltose. We report initial clinical experience with this new preparation. The details of adverse reactions of patients who received the new preparation were gathered shortly after it became apparent there was a change in IVIG formulation. Seven of 49 patients receiving Intragam P spontaneously reported adverse effects, which were temporally related to infusions. Subsequently, all seven patients have been able to tolerate the product with prophylactic use of antihistamines and paracetamol. This case series indicates that long-term tolerance of an older IVIG product does not necessarily equate to tolerance to a newer product, even if technically superior. Caution should be exercised when changing IVIG products, as they are not biologically equivalent.

Adult↗

ASCIA guidelines for prevention of food anaphylactic reactions in schools, preschools and child-care centres.

These guidelines have been developed by the anaphylaxis working party of the Australasian Society of Clinical Immunology and Allergy to provide advice for minimizing the risk of food-induced anaphylaxis in schools, preschools and child-care centres. The guidelines outline four steps for the prevention of food anaphylactic reactions in children at risk and food policy measures specific to school age and preschool age children.

Age Factors↗

Advanced age, but not anergy, is associated with altered serum polyunsaturated fatty acid levels.

Unknown factors present in the serum of older adults impair lymphocyte function and may be responsible for anergy (absence of delayed-type hypersensitivity (DTH)) present in many older adults. Polyunsaturated fatty acids (PUFAs) and their metabolites are immunomodulatory and may play a role in clinical conditions of advanced age, including immune dysfunction. We hypothesized that PUFAs could be the factor(s) present in serum that contribute to impaired immune responses in older adults. Prior studies of serum PUFAs in older adults neither adequately control dietary PUFA intake, nor investigated the relationship of PUFAs and DTH responses. We determined serum PUFA concentrations in young adults with normal immune responses, and older adults with impaired (anergic elderly) or normal immunity (nonanergic elderly) before and after administering a standardized diet. After controlling for dietary intake, advancing age was associated with markedly higher serum concentrations of arachidonic acid (AA), dihomo-gamma-linoleic acid (DGLA), and eicosapentaenoic acid (EPA) and a lower AA:EPA ratio. Other serum PUFAs and the AA:DGLA ratio were unaffected by age. However, there was no difference between older adults with or without anergy. These data suggest advanced age is associated with marked alterations of serum PUFAs that are only apparent after strictly controlling dietary intake. However, there was no association of serum PUFA concentrations with DTH status among older adults.

Adjuvants, Immunologic↗

Temperature quantitation and mapping of frozen tissue.

A method was developed for quantitating the temperature within frozen tissue with the magnetic resonance (MR) parameter R2*. The pulse sequence uses half-pulse excitation and a short spiral readout to achieve echo times as short as 0.2 msec. Fiber-optic temperature sensors were inserted into bovine liver tissue. The tissue was frozen at one end while being held warm at the other end. Once steady state was reached, the parameter R2* was measured. A linear dependence of R2* on temperature was demonstrated. R2* is independent of freeze number and of the orientation of the temperature gradient with respect to the main magnetic field. Feasibility in a canine prostate during cryosurgery is demonstrated. J. Magn. Reson. Imaging 2001;13:99-104.

Animals↗

Activation of beta-adrenoceptors opens calcium-activated potassium channels in astroglial cells.

In the present study, effects of the alpha(2)- and beta-adrenoceptor agonists clonidine and isoproterenol on astrocytes in astroglial/neuronal cocultures from rat cerebral cortex were evaluated. The calcium- and potassium-sensitive dyes fura-2 and potassium-binding benzofuran isophtalate (PBFI) were used to study alterations in intracellular concentrations of calcium ([Ca(2+)](i)) and potassium ([K(+)](i)), respectively, while the perforated patch clamp technique was used to analyze transmembrane currents. Exposure to isoproterenol or clonidine elicited an immediate increase in [Ca(2+)](i) that was totally abolished in calcium-free extracellular media. Isoproterenol also decreased [K(+)](i), but clonidine did not. The reduction in [K(+)](i) was inhibited in Ca(2+)-free media. As evaluated with the perforated patch technique, isoproterenol (10(-6)-10(-4) M) induced a slowly developing and long lasting outward current that also was totally abolished in calcium-free buffer. This current was blocked by external tetraethylammonium (TEA, 10 mM) and charybdotoxin (ChTX, 10 nM), but was not affected by apamin (50 nM). The current-to-voltage (I-V) relationships for the isoproterenol-induced currents showed a markedly negative reversal potential, -96 mV+/-7, (mean+/-S.D., n=5). These results suggest that the stimulation of astroglial beta-adrenoceptors by isoproterenol opens calcium-activated potassium channels (K((Ca))). Preincubation with forskolin significantly increased the isoproterenol-induced currents compared with controls, indicating that the opening of astroglial K((Ca)) channels after beta-adrenergic stimulation not only depends on [Ca(2+)](i) but also synergistically involves the cAMP transduction system to which beta-adrenoceptors are known to be positively coupled.

Adrenergic alpha-2 Receptor Agonists↗

Photosynthetic energy storage efficiency, oxygen evolution and chloroplast movement.

When there is a saturating supply of dissolved carbon available, photosynthetic energy storage efficiency (ES) varies linearly with light fluence rate (I) for both Vallisneria americana and Pisum sativum leaves. The frequently reported hyperbolic relationship between ES and I occurs only when low levels of dissolved carbon are present in the medium. The linear relationship has its origin in intracellular events and implies that two heat-producing processes limit the value of ES. The rate of one process varies as I and the other varies as I(2). The rates of both processes were changed after a 2 hour exposure to 400 mumol photons m(-2) s(-1) of red light, speeding up the process that depends linearly on I and slowing the other. Illumination for 1 hour with 100 mumol photons m(-2) s(-1) of blue (but not red) light moves many chloroplasts from the periclinal to the anticlinal cell walls [Inoue and Shibata (1973) Planta 114: 341-358]. Blue light exposure of V. americana leaf sections (a) reduced the rate of oxygen evolution under light-limiting conditions by about 22%; (b) increased the value of ES by an amount dependent on the light fluence rate; and (c) decreased the slope of (ES v I). The slope change indicated that light absorption had fallen by 26% after blue light exposure. The rate of oxygen evolution (V) was measured under light-limiting conditions with leaf sections in which the chloroplasts had been immobilised after blue or red light exposure. With both red and blue-exposed leaf sections, V fell by about 50% after exposure to 1 hour of 1250 mumol photons m(-2) s(-1) of white light. Thus accumulation of chloroplasts on anticlinal walls did not protect the leaf from photoinactivation by a high light fluence rate.

Journal Article↗

Spatio-temporal profile of DNA fragmentation and its relationship to patterns of epileptiform activity following focally evoked limbic seizures.

The specific electrographic activity responsible for seizure-induced DNA damage remains little explored. We therefore examined the regional and temporal appearance of DNA fragmentation and cell death and its relationship to specific electrographic seizure patterns in a rat model of focally evoked limbic epilepsy. Animals received intra-amygdaloid injection of kainic acid (KA) to induce seizures for 45 min during continuous electroencephalographic (EEG) monitoring, after which diazepam (30 mg/kg) was administered. DNA polymerase I-mediated biotin-dATP nick translation (PANT) and terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) were used to detect single- and double-stranded DNA breaks, respectively. Injection of 0.01 microg KA induced seizures characterized by ictal fast activity but without consequent brain injury. By contrast, 0.1 microg KA induced an additional pattern of seizure activity characterized by bursts of high frequency polyspike paroxysmal discharges. In these animals, there was a significant reduction in numbers of pyramidal neurons within the ipsilateral and contralateral CA3 subfield of the hippocampus, detectable as little as 4 h following seizures. PANT- and TUNEL-positive cells appeared in similar numbers 16 h following seizure cessation within the CA3, declining after 72-96 h. Varying the duration of polyspike paroxysmal discharges determined that as little as 30 s elicited maximal injury. These data suggest single- and double-stranded DNA breaks are generated during the cell death process and are consequent on a specific component of seizure activity electrographically determined.

Animals↗

Human cytomegalovirus mediates cell cycle progression through G(1) into early S phase in terminally differentiated cells.

Terminal differentiation of embryonal carcinoma cells and monocytes has been shown to be important for their permissiveness for human cytomegalovirus (HCMV) infection, even though such terminally differentiated cells have withdrawn from the cell cycle and are, essentially, in G(0) arrest. Recently, data from a number of laboratories have shown that productive infection with HCMV of quiescent fibroblasts held reversibly in G(0) of the cell cycle can result in cell cycle progression, which results eventually in cycle arrest. In contrast to quiescent fibroblasts, the effect of HCMV on cells that have withdrawn irreversibly from the cell cycle due to terminal differentiation has not, so far, been addressed. Here, it is shown that, in cells that have arrested in G(0) as a result of terminal differentiation, HCMV is able to induce cell functions associated with progression of the cell cycle through G(1) into early S phase. This progression is correlated with a direct physical and functional interaction between the HCMV 86 kDa major immediate-early protein (IE86) and the cyclin-dependent kinase inhibitor p21(Cip1).

CDC2-CDC28 Kinases↗

Users' guides to the medical literature: XVI. How to use a treatment recommendation. Evidence-Based Medicine Working Group and the Cochrane Applicability Methods Working Group.

Clinicians can often find treatment recommendations in traditional narrative reviews and the discussion sections of original articles and meta-analyses. Making a treatment recommendation involves framing a question, identifying management options and outcomes, collecting and summarizing evidence, and applying value judgments or preferences to arrive at an optimal course of action. Each step in this process can be conducted systematically (thus protecting against bias) or unsystematically (leaving the process open to bias). Clinicians faced with a plethora of recommendations may wish to attend to those that are less likely to be biased. Therefore, we propose a hierarchy of rigor of recommendations to guide clinicians when judging the usefulness of particular recommendations. Recommendations with the highest rigor consider all relevant options and outcomes, include a comprehensive collection of the methodologically highest quality data with an explicit strategy for summarizing the data (that is, a systematic review), and make an explicit statement of the values or preferences involved in moving from evidence to action. High rigor recommendations come from systematically developed, evidence-based practice guidelines or rigorously conducted decision analyses. Systematic reviews, which typically do not consider all relevant options and outcomes or make the preferences underlying recommendations explicit, offer intermediate rigor recommendations. Traditional approaches in which the collection and assessment of evidence remains unsystematic, all relevant options and outcomes may not be considered, and values remain implicit, provide recommendations of weak rigor. In an era in which clinicians are barraged by recommendations as to how to manage their patients, this hierarchy provides a potentially useful set of guides.

Decision Making↗

In situ detection of neuronal DNA strand breaks using the Klenow fragment of DNA polymerase I reveals different mechanisms of neuron death after global cerebral ischemia.

Ischemic cell injury in the brain may involve a cascade of programmed cell death. DNA damage may be either a catalyst or a consequence of this cascade. Therefore, the induction of DNA strand breaks in the rat brain following transient global ischemia was examined using (a) the Klenow labeling assay, identifying DNA single-strand breaks (SSBs) or double-strand breaks (DSBs) with protruding 5' termini, and (b) terminal deoxynucleotidyl transferase-mediated dUTP nick end-labeling (TUNEL), detecting DNA DSBs with protruding 3' termini or blunt ends. Klenow-positive staining occurred within 2 h of reperfusion and increased with increasing durations of reperfusion. DNA damage detected with the Klenow labeling assay preceded that of TUNEL expression in the caudate putamen, reticular thalamus, thalamus, and cortex. However, in CA1, DNA SSBs were not detected until 72 h of reperfusion and occurred simultaneously with DSBs. Thus, the time course and fragmentation characteristics of DNA damage differ between the hippocampal CA1 and other selectively vulnerable brain regions. This distinct pattern suggests that the delayed neuronal death in CA1 following transient global ischemia may occur via an apoptotic mechanism different from that of other brain regions.

Animals↗

Relationship between seizure-induced transcription of the DNA damage-inducible gene GADD45, DNA fragmentation, and neuronal death in focally evoked limbic epilepsy.

We investigated the temporal and spatial profile of mRNA transcription for the growth arrest and DNA damage-inducible gene GADD45, DNA fragmentation, and neuronal death in rat brain following focally evoked limbic seizures. GADD45 mRNA was detected by in situ hybridization, whereas fragmented DNA was detected using in situ nick end-labeling by the large (Klenow) fragment of DNA polymerase I. Kainic acid (0.1 microg) was injected into the right amygdala of rats to induce seizures for 45 min, after which diazepam (30 mg/kg) was administered. GADD45 mRNA, DNA fragmentation, and cell death were quantified bilaterally within six limbic brain regions 0-96 h following seizure cessation. All animals underwent seizures of equivalent severity and duration as determined electrographically. In situ hybridization detected bilateral up-regulation of GADD45 mRNA throughout the CA1, CA3, and dentate gyrus of the hippocampus, the piriform and retrosplenial cortices, and the thalamus within 1 h of seizure termination. GADD45 mRNA levels remained elevated for up to 6 h, declining to baseline within all structures by 16 h. Klenow-positive cells were only found within the CA3 pyramidal layer of the ipsilateral hippocampus and appeared 16-72 h following seizure cessation. Morphologic cell death was also restricted to the CA3 subfield. These data demonstrate that focally evoked limbic seizures trigger early bihemispheric GADD45 mRNA transcription within connected limbic structures, whereas subsequent DNA fragmentation and cell death are restricted to selectively vulnerable brain regions.

Amygdala↗

Alcohol-mediated increases in acetaminophen hepatotoxicity: role of CYP2E and CYP3A.

This commentary focuses on the roles of CYP3A and CYP2E in alcohol-mediated increases in acetaminophen hepatotoxicity. CYP2E has been considered to be the main form of P450 responsible for such toxicity in animals and humans. However, CYP3A, which is also induced by alcohol, has been shown to have a greater affinity for acetaminophen than CYP2E. Previous experiments implicating CYP2E in alcohol-mediated increases in acetaminophen hepatotoxicity have used inhibitors of this form of P450 that are now proving to be non-specific. Triacetyloleandomycin (TAO) is a potent inhibitor of CYP3A that maintains specificity in vitro over a large concentration range. In rats treated with ethanol or the combination of ethanol and isopentanol, the major higher chain alcohol in alcoholic beverages, TAO protects animals from increases in acetaminophen hepatotoxicity, suggesting a major role of CYP3A. CYP2E may not have a major role due to the rapid loss of induced levels in the absence of continued exposure to ethanol. Knockout mice, which are being used to define the role of particular proteins in biological responses, have been developed for CYP2E1 and CYP1A2 but not CYP3A. Cyp2e1(-/-) and Cyp1a2(-/-) mice are more resistant to acetaminophen hepatotoxicity than wild-type strains, even though the amounts of the other forms of P450s are unaltered in the liver. These findings suggest that the relative amounts of P450s and not just kinetic characteristics determine their role in acetaminophen hepatotoxicity. The clinical implications of the findings that CYP3A can have a major role in acetaminophen-mediated hepatotoxicity are discussed.

Acetaminophen↗

Effect of arsenite on induction of CYP1A and CYP2H in primary cultures of chick hepatocytes.

In earlier studies, treatment with sodium arsenite was shown to decrease total hepatic CYP in rats. A concomitant increase in heme oxygenase, the rate-limiting step in heme degradation to biliverdin, was considered responsible for the decrease in CYP. Here we investigated the effect of sodium arsenite on induction of CYP2H, CYP1A, and heme oxygenase in primary cultures of chicken embryo hepatocytes. When added simultaneously with inducer, arsenite inhibited phenobarbital-mediated increases in CYP2H and 3-methylcholanthrene-mediated increases in CYP1A, as measured enzymatically and immunochemically. Near maximal decreases were observed in these forms of CYP at a concentration of 2.5 microM sodium arsenite. The concentration-dependent decreases in CYP2H and CYP1A by sodium arsenite were concomitant with increases in heme oxygenase. Sodium arsenite was not toxic at concentrations as high as 10 microM, as indicated by protein synthesis and the reduction of MTT by intact cells. Sodium arsenite had no effect on induction of CYP2H1 mRNA, suggesting that the decreases in this form of CYP occurred post-transcriptionally. Treatment of cells with tin mesoporphyrin (SnMeso), an inhibitor of heme oxygenase, resulted in inhibition of arsenite-induced heme oxygenase. However, SnMeso did not alter the effect of arsenite to prevent phenobarbital-mediated increases in CYP2H protein. SnMeso alone inhibited phenobarbital-mediated increases in CYP2H. Inclusion of 2 or 5 microM exogenous heme with arsenite did not prevent the arsenite-mediated decrease in CYP2H. Combined treatment with heme and phenobarbital induced heme oxygenase to the same extent as treatment with heme, arsenite, and phenobarbital. However, CYP2H activity was decreased only when the treatment included arsenite. These results suggest that elevated levels of heme oxygenase alone are not responsible for arsenite-mediated decreases in CYP2H.

Animals↗