Search PubMed⌕ Search

Biomedical subjects

B J King

Publications and source records attributed to B J King.

At least 19 recordsLinked to original sources

Critical processes affecting Cryptosporidium oocyst survival in the environment.

Cryptosporidium are parasitic protozoans that cause gastrointestinal disease and represent a significant risk to public health. Cryptosporidium oocysts are prevalent in surface waters as a result of human, livestock and native animal faecal contamination. The resistance of oocysts to the concentrations of chlorine and monochloramine used to disinfect potable water increases the risk of waterborne transmission via drinking water. In addition to being resistant to commonly used disinfectants, it is thought that oocysts can persist in the environment and be readily mobilized by precipitation events. This paper will review the critical processes involved in the inactivation or removal of oocysts in the terrestrial and aquatic environments and consider how these processes will respond in the context of climate change.

Animals↗

Extraction of R = sigma(L)/sigma(T) from CCFR nu(mu)-Fe and nu(mu)-Fe differential cross sections.

We report on the extraction of R = sigma(L)/sigma(T) from CCFR nu(mu)-Fe and nu(mu)-Fe differential cross sections. The CCFR differential cross sections do not show the deviations from the QCD expectations that are seen in the CDHSW data at very low and very high x. R as measured in nu(mu) scattering is in agreement with R as measured in muon and electron scattering. All data on R for Q(2)>1 GeV(2) are in agreement with a NNLO QCD calculation which uses NNLO parton distribution functions and includes target mass effects. We report on the first measurements of R in the low x and Q(2)<1 GeV(2) region (where an anomalous large rise in R for nuclear targets has been observed by the HERMES Collaboration).

Journal Article↗

First measurement of the low- x, low- Q(2) structure function F(2) in neutrino scattering.

A new structure function analysis of CCFR deep inelastic nu-N and nu-N scattering data is presented for previously unexplored kinematic regions down to Bjorken x = 0.0045 and Q(2) = 0.3 GeV(2). Comparisons to charged lepton scattering data from NMC and E665 experiments are made and the behavior of the structure function F(2)(nu)2 is studied in the limit Q(2)-->0.

Journal Article↗

Measurements of F2 and xF(nu)(3) - xF(nu;)(3) from CCFR nu(mu)-Fe and nu;(mu)-Fe Data in a Physics Model-Independent Way.

We report on the extraction of the structure functions F2 and DeltaxF(3) = xF(nu)(3)-xF(nu;)(3) from CCFR nu(mu)-Fe and nu;(mu)-Fe differential cross sections. The extraction is performed in a physics model-independent (PMI) way. This first measurement of DeltaxF(3), which is useful in testing models of heavy charm production, is higher than current theoretical predictions. The ratio of the F2 (PMI) values measured in nu(mu) and mu scattering is in agreement (within 5%) with the predictions of next-to-leading-order parton distribution functions using massive charm production schemes, thus resolving the long-standing discrepancy between the two sets of data.

Journal Article↗

Is a capacity for negative priming correlated with hypnotizability?: a preliminary study.

Hypnotic responsiveness may depend upon the ability to inhibit the irrelevant stimuli that evoke responses that are incompatible with current goals (or the mapping between an irrelevant/disruptive stimulus and its response) in order to actively maintain task-relevant information. In a simple correlation design, the authors investigated the relationship between cognitive inhibition (negative priming) and hypnotic responsiveness. A statistically significant correlation was obtained between the extent of negative priming (measured in time latency) and hypnotic responsiveness (r = .491). Limitations of this preliminary study and implications for future work are discussed.

Adult↗

One-year results from the phase III investigation of the KeraVision Intacs.

BACKGROUND: Limitations of the surgical correction for myopia include inaccuracy, instability, treatment of the central optical zone, and lack of reversibility. KeraVision Intacs offer an alternative that addresses these shortcomings. METHODS: We present 1 year of follow-up information on 95 subjects enrolled in the United States Food and Drug Administration Phase III clinical trials. RESULTS: At 1 year, 99% of patients (89 of 90) had 20/40 uncorrected vision or better. Ninety-two percent of eyes (83 of 90) were within 1.00 D of intended correction and 76% of eyes (68 of 90) were within 0.50 D of intended correction. Stability was achieved at 3 months, with 96% of subjects (86 of 90) having less than 1.00 D of change from their previous examination. In a substudy, 89% eyes (58 of 65) varied within +/- 0.50 D over the course of a day. Corneal curvature changed as predicted, resulting in a prolate aspheric shape within the central optical zone. Most complications or adverse events experienced were managed with additional medication or surgical intervention, resulting in a favorable outcome for subjects. CONCLUSIONS: KeraVision Intacs are effective, predictable, stable, and safe. This additive technique may also offer reversibility.

Adult↗

Intentionality during hypnosis: an ironic process analysis.

Two studies were completed to test whether responding to hypnotic suggestions requires intentional effort. Hypnotic suggestions for amnesia were used as an analog of thought suppression, and Wegner's model of ironic processing was applied to hypnotic responding. In the first study, participants were required to maintain suggested amnesia while performing a cancellation task with and without a cognitive load. The second study required suppression of thoughts of a favorite car, once with "blank-mind" instructions and then with a suggestion for amnesia. The results of these studies indicate that dissociated control theory provides the best explanation for hypnotic responding in one subset of highly hypnotizable participants, whereas more intentional responding provides the best explanation for others.

Adult↗

Electrophoretic conditions for high resolution citrus isozymes in polyacrylamide gel electrophoresis.

Electrophoretic conditions including electrode and gel buffers, acrylamide concentration, use of stacking gels, voltage, current, and run time were investigated in order to produce isozyme bands of high resolution which would facilitate densitometric quantification of enzyme activity following polyacrylamide gel electrophoresis (PAGE). Electrode buffers which provided optimal conditions for gels stained for the isozymes of malate dehydrogenase (MDH), 6-phosphogluconate dehydrogenase (6-PGD), phosphoglucose isomerase (PGI), and shikimate dehydrogenase (SkDH) were 0.02 M Tris-glycine, pH 8.5, 0.1 M sodium borate, pH 6.0, 0.1 M sodium borate, pH 8.7, and 0.07 M sodium borate, pH 7.0, respectively. A 0.5 M Tris-HCl, pH 7.5, gel buffer was optimal for gels stained for the isozymes of 6-PGD, PGI and SkDH. A 0.5 M Tris-HCl, pH 8.5, gel buffer was best for gels stained for MDH. Stacking gels were found to be detrimental to enzyme activity and showed no improvement in resolution for any of the enzymes. Acrylamide concentration for gels stained for MDH were 8.7%, gels stained for 6-PGD and PGI were 7.5%, while gels stained for SkDH had an acrylamide concentration of 5.0%. Higher concentrations above these levels caused a reduction and in some cases loss of band activity, while below this concentration there was a decrease in band resolution.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcohol Oxidoreductases↗

Preparation of extracts for electrophoresis from citrus leaves.

Extracting proteins from vegetative tissues while maintaining good enzyme activity and electrophoretic resolution presents numerous problems due to the presence of phenols, quinones, proteases and other components released during cell disruption. To overcome this problem in Citrus leaves, an extraction buffer was developed which contained EDTA, potassium chloride, magnesium chloride hexahydrate, PVP-40, 2-mercaptoethanol and bovine serum albumin in a Tris-HCl buffer, pH 7.5. This extraction buffer was used in association with liquid nitrogen for sample preparation. Buffers used in previous studies for Citrus isozyme extraction for PAGE were found to provide unsatisfactory resolution and activity for the three enzyme systems investigated (malate dehydrogenase, 6-phosphogluconate dehydrogenase and shikimate dehydrogenase). This extraction buffer maintains high enzyme activity and provides good resolution in PAGE gels suitable for densitometric analysis.

Buffers↗

Effects of nitrite, chlorate, and chlorite on nitrate uptake and nitrate reductase activity.

Effects of NO(2) (-), ClO(3) (-), and ClO(2) (-) on the induction of nitrate transport and nitrate reductase activity (NRA) as well as their effects on NO(3) (-) influx into roots of intact barley (Hordeum vulgare cv Klondike) seedlings were investigated. A 24-h pretreatment with 0.1 mol m(-3) NO(2) (-) fully induced NO(3) (-) transport but failed to induce NRA. Similar pretreatments with ClO(3) (-) and ClO(2) (-) induced neither NO(3) (-) transport nor NRA. Net ClO(3) (-) uptake was induced by NO(3) (-) but not by ClO(3) (-) itself, indicating that NO(3) (-) and ClO(3) (-) transport occur via the NO(3) (-) carrier. At the uptake step, NO(2) (-) and ClO(2) (-) strongly inhibited NO(3) (-) influx; the former exhibited classical competitive kinetics, whereas the latter exhibited complex mixed-type kinetics. ClO(3) (-) proved to be a weak inhibitor of NO(3) (-) influx (K(i) = 16 mol m(-3)) in a noncompetitive manner. The implications of these findings are discussed in the context of the suitability of these NO(3) (-) analogs as screening agents for the isolation of mutants defective in NO(3) (-) transport.

Journal Article↗

Studies of the uptake of nitrate in barley : v. Estimation of root cytoplasmic nitrate concentration using nitrate reductase activity-implications for nitrate influx.

The cytoplasmic NO(3) (-) concentration ([NO(3) (-)](c)) was estimated for roots of barley (Hordeum vulgare L. cv Klondike) using a technique based on measurement of in vivo nitrate reductase activity. At zero external NO(3) (-) concentration ([NO(3) (-)](o)), [NO(3) (-)](c) was estimated to be 0.66 mm for plants previously grown in 100 mum NO(3) (-). It increased linearly with [NO(3) (-)](o) between 2 and 20 mm, up to 3.9 mm at 20 mm [NO(3) (-)](o). The values obtained are much lower than previous estimates from compartmental analysis of barley roots. These observations support the suggestion (MY Siddiqi, ADM Glass, TJ Ruth [1991] J Exp Bot 42: 1455-1463) that the nitrate reductase-based technique and compartmental analysis determine [NO(3) (-)](c) for two separate pools; an active, nitrate reductase-containing pool (possibly located in the epidermal cells) and a larger, slowly metabolized storage pool (possibly in the cortical cells), respectively. Given the values obtained for [NO(3) (-)](c) and cell membrane potentials of -200 to -300 mV (ADM Glass, JE Schaff, LV Kochian [1992] Plant Physiol 99: 456-463), it is very unlikely that passive influx of NO(3) (-) is possible via the high-concentration, low-affinity transport system for NO(3) (-). This conclusion is consistent with the suggestion by Glass et al. that this system is thermodynamically active and capable of transporting NO(3) (-) against its electrochemical potential gradient.

Journal Article↗

Effect of Increases in Oxygen Concentration during the Argon-Induced Decline in Nitrogenase Activity in Root Nodules of Soybean.

When intact nodulated roots of soybean (Glycine max L. Merr. nodulated with Bradyrhizobium japonicum strain USDA 16) were exposed to an atmosphere lacking N(2) gas (Ar:O(2) 80:20), total nitrogenase activity (measured as H(2) evolution) and respiration (CO(2) evolution) declined with time of exposure. In Ar-inhibited nodules, when the O(2) concentration in the rhizosphere was increased in a linear ;ramp' of 2.7% per minute, 93% of the original H(2) evolution and 99% of the CO(2) evolution could be recovered. The internal nodule O(2) concentration (estimated from leghemoglobin oxygenation) declined to 56% of its initial value after 60 minutes of Ar:O(2) exposure and could be partially recovered by the linear increases in O(2) concentration. Nodule gas permeability, as estimated from the lag in ethylene production following exposure of nodules to acetylene, decreased to 26% of its initial value during the Ar-induced decline. Collectively, the results provide direct evidence that the Ar-induced decline results from decreased nodule gas permeability and indicate that the decline in permeability, rather than being immediate, occurs gradually over the period of Ar:O(2) exposure.

Journal Article↗

Effects of gradual increases in o(2) concentration on nodule activity in soybean.

The objectives of this study were to determine whether attached nodules of soybean (Glycine max L. Merr.) could adjust to gradual increases in rhizosphere pO(2) without nitrogenase inhibition and to determine whether the nitrogenase activity of the nodules is limited by pO(2) under ambient conditions. A computer-controlled gas blending apparatus was used to produce linear increases (ramps) in pO(2) around attached nodulated roots of soybean plants in an open gas exchange system. Nitrogenase activity (H(2) production in N(2):O(2) and Ar:O(2)) and respiration (CO(2) evolution) were monitored continuously as pO(2) was ramped from 20 to 30 kilopascals over periods of 0, 5, 10, 15, and 30 minutes. The 0, 5, and 10 minute ramps caused inhibitions of nitrogenase and respiration rates followed by recoveries of these rates to their initial values within 30 minutes. Distinct oscillations in nitrogenase activity and respiration were observed during the recovery period, and the possible basis for these oscillations is discussed. The 15 and 30 minute ramps did not inhibit nitrogenase activity, suggesting that such inhibition is not a factor in the regulation of nodule diffusion resistance. During the 30 minute ramp, a stimulation of nitrogenase activity was observed, indicating that an O(2)-based limitation to nitrogenase activity occurs in soybean nodules under ambient conditions.

Journal Article↗

Regulation of o(2) concentration in soybean nodules observed by in situ spectroscopic measurement of leghemoglobin oxygenation.

A fiber optic spectrophotometric system was used to monitor the in vivo oxygenation of leghemoglobin in intact, attached soybean root nodules (Glycine max L. Merr. x USDA 16 Bradyrhizobium japonicum) which were flattened during development by growth in narrow, glass-walled cuvettes. When equilibrated at an external pO(2) of 20 kilopascals, leghemoglobin was 36.6 +/- 5.4% oxygenated, a value estimated to represent an infected cell O(2) concentration of 21.5 nanomolar. Increasing the external pO(2) from 20 to 25 kilopascals caused a rapid increase in leghemoglobin oxygenation, followed by a recovery to the initial level, all within 7.5 minutes. At 25 kilopascals O(2), the rates of H(2) and CO(2) evolution were similar to those at 20 kilopascals. Since respiration had not increased, the results support the proposal that nodules adapt to increased external pO(2) by regulating their resistance to O(2) diffusion.

Journal Article↗

Steady and nonsteady state gas exchange characteristics of soybean nodules in relation to the oxygen diffusion barrier.

An open gas exchange system was used to monitor the nonsteady state and steady state changes in nitrogenase activity (H(2) evolution in N(2):O(2) and Ar:O(2)) and respiration (CO(2) evolution) in attached, excised, and sliced nodules of soybean (Glycine max L. Merr.) exposed to external pO(2) of 5 to 100%. In attached nodules, increases in external pO(2) in steps of 10 or 20% resulted in sharp declines in the rates of H(2) and CO(2) evolution. Recovery of these rates to values equal to or greater than their initial rates occurred within 10 to 60 minutes of exposure to the higher pO(2). Recovery was more rapid at higher initial pO(2) and in Ar:O(2) compared to N(2):O(2). Sequential 10% increments in pO(2) to 100% O(2) resulted in rates of H(2) evolution which were 1.4 to 1.7 times the steady state rate at 20% O(2) in Ar. This was attributed to a relief at high pO(2) from the 40% decline in nitrogenase activity that was induced by Ar at a pO(2) of 20%. Changes in nodule respiration rate could not account for the nodules' ability to adjust to high external pO(2), supporting the hypothesis that soybean nodules have a variable barrier to O(2) diffusion which responds slowly (within minutes) to changes in pO(2). Nodule excision and slicing resulted in 45 and 78% declines, respectively, in total specific nitrogenase activity at 20% O(2). In contrast with the result obtained with intact nodules, subsequent 10% increases in pO(2) in Ar:O(2) did not result in transient declines in H(2) evolution rates, but in the rapid attainment of new steady state rates. Also, distinct optima in nitrogenase activity were observed at about 60% O(2). These results were consistent with an increase in the diffusive resistance of the nodule cortex following nodule excision or nodule slicing. This work also shows the importance of using intact plants and continuous measurements of gas exchange in studies of O(2) diffusion and nitrogenase activity in legume nodules.

Journal Article↗

The role of dark carbon dioxide fixation in root nodules of soybean.

The magnitude and role of dark CO(2) fixation were examined in nodules of intact soybean plants (Harosoy 63 x Rhizobium japonicum strain USDA 16). The estimated rate of nodule dark CO(2) fixation, based on a 2 minute pulse-feed with (14)CO(2) under saturating conditions, was 102 micromoles per gram dry weight per hour. This was equivalent to 14% of net nodule respiration. Only 18% of this CO(2) fixation was estimated to be required for organic and amino acid synthesis for growth and export processes. The major portion (75-92%) of fixed label was released as CO(2) within 60 minutes. The labeling pattern during pulse-chase experiments was consistent with CO(2) fixation by phosphoenolpyruvate carboxylase. During the chase, the greatest loss of label occurred in organic acids. Exposure of nodulated roots to Ar:O(2) (80:20) did not affect dark CO(2) fixation, while exposure to O(2):CO(2) (95:5) resulted in 54% inhibition. From these results, it was concluded that at least 66% of dark CO(2) fixation in soybean may be involved with the production of organic acids, which when oxidized would be capable of providing at least 48% of the requirement for ATP equivalents to support nitrogenase activity.

Journal Article↗