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Biomedical subjects

S E Jackson

Publications and source records attributed to S E Jackson.

35 records · Page 2Linked to original sources

Folding of chymotrypsin inhibitor 2. 2. Influence of proline isomerization on the folding kinetics and thermodynamic characterization of the transition state of folding.

The refolding of chymotrypsin inhibitor 2 (CI2) is, at least, a triphasic process. The rate constants are 53 s-1 for the major phase (77% of the total amplitude) and 0.43 and 0.024 s-1 for the slower phases (23% of the total amplitude) at 25 degrees C and pH 6.3. The multiphase nature of the refolding reaction results from heterogeneity in the denatured state because of proline isomerization. The fast phase corresponds to the refolding of the fraction of protein that has all its prolines in a native trans conformation in the denatured state. It is not catalyzed by peptidyl-prolyl isomerase. The rate-limiting step of folding for the slower phases, however, is proline isomerization, and they are both catalyzed by peptidyl-prolyl isomerase. The slowest phase has properties consistent with a process involving proline isomerization in a denatured state. In particular, the activation enthalpy is large, 16 kcal mol-1 K-1, and the rate is independent of guanidinium chloride concentration ([GdnHCl]). In comparison, the intermediate phase shows properties consistent with a process involving proline isomerization in a partially structured state. The activation enthalpy is small, 8 kcal mol-1 K-1, and the rate has a strong dependence on [GdnHCl]. Temperature dependences of the rate constants for unfolding and for the fast refolding phase, both in the absence and in the presence of GdnHCl, were used to characterize the thermodynamic nature of the transition state and its relative exposure to solvent. The Eyring plot for unfolding is linear, indicating that there is relatively little change in heat capacity between native state and transition state.(ABSTRACT TRUNCATED AT 250 WORDS)

Catalysis↗

A major factor contributing to the high degree of unexplained variability of some elements concentrations in biological tissue: 27 elements in 5 organs of the mussel Mytilus as a model.

It has long been known that a high degree of "unexplained" residual variability can occur in the concentrations of some elements in some biological tissues. Until now, no reasons have been found for the presence of such high levels of variability. The present study describes a factor which can adequately explain this phenomenon. It was found that elements which are stored primarily in an insoluble form showed much higher degrees of variability than those stored in a soluble form. Elements found primarily in an insoluble form are often isolated from cellular metabolism including any regulatory processes and may build up to high levels in some individuals. The groups of elements showing the highest levels of residual variability were the heavy metals, lanthanides and actinides. These groups tended to be stored primarily in an insoluble form as determined by subcellular fractionation. The groups of elements showing the lowest levels of residual variability were the alkali metals and non-metals which were found to occur primarily in a soluble form in mussel tissue. The elements of the kidney generally had higher levels of residual variability than those of any other organ probably because of the kidney's ability to store high concentrations of elements in insoluble granules. A study of the behavior of aluminum in the digestive gland suggests that elements associated with insoluble granules of sediment passing through the gut could contribute to the residual variability of these elements. The highest levels of residual variability were observed for zinc, silver and lead in the kidney while the lowest for rubidium in the gills.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Analysis of biological reference materials, prepared by microwave dissolution, using inductively coupled plasma mass spectrometry.

A procedure has been developed for the analysis of biological materials by inductively coupled plasma mass spectrometry (ICP-MS). Fast, efficient and complete sample digestion is achieved by a combined microwave-nitric acid/open beaker-nitric acid-hydrogen peroxide procedure. The ICP-MS analysis is performed with an on-line five-element internal standard to correct for matrix and instrumental drift effects. Results are presented for 24 elements in three biological reference materials (National Institute of Standards and Technology Standard Reference Materials 5277a Liver and 1566 Oyster and International Atomic Energy Agency Certified Reference Material H4 Animal Muscle). For all elements significantly above the detection limit and reagent blank concentrations, good agreement exists between ICP-MS and certified values.

Animals↗

Alterations in performance and muscle composition of young turkeys in response to dietary amino acid balance.

Two experiments were performed to determine the effects of essential (EAA) and nonessential amino acid (NEAA) supplementation of a 22% protein corn-soybean meal diet on the performance of muscle composition of male Large White turkeys from 7 to 21 days of age. The 22% protein diet was supplemented with DL-methionine (MET) or a combination of MET and L-lysine (LYS) in Experiment 1. Additions in Experiment 2 included MET; and EAA mixture of MET, LYS, L-threonine, and L-valine; and a mixture of NEAA equal to 2% crude protein combined with either the MET or EAA supplement. Controls received a 30% protein diet. Each diet was fed ad libitum to five and four pens of eight poults in Experiment 1 and 2, respectively. Maximum performance was obtained with the 30% protein diet in both experiments. Methionine was confirmed as the first-limiting amino acid in the 22% protein diet. Lysine addition to the MET-supplemented low protein diet adversely affected performance in Experiment 1, suggesting that LYS was not the second most limiting amino acid. The EAA supplement elicited growth equal to the 30% protein diet although feed efficiency remained inferior. Increases in growth and feed efficiency were associated with NEAA addition. Changes in the weights of the pectoralis and gastrocnemius muscles due to diet, albeit directly related to body weight, were independent of muscle composition. The composition of gastrocnemius muscle was relatively insensitive to dietary manipulation. Pectoral ribonucleic acid (RNA) and deoxyribonucleic acid (DNA) concentrations increased with a decrease in dietary protein. Amino acid supplementation reduced DNA concentration without altering muscle RNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Water soluble complexes of the antiviral drugs, 9-[(1,3-dihydroxy-2-propoxy)methyl]guanine and acyclovir: the role of hydrophobicity in complex formation.

We investigated water-soluble complexes of various ligands with the antiviral drugs, 9-[(2-hydroxyethoxy)methyl]guanine (acyclovir) and 9-[(1,3-dihydroxy-2-propoxy)methyl]guanine (DHPG). For comparison, we also examined the "parent" compounds, guanine and guanosine, as substrates for complex formation. Using the phase-solubility technique, we measured formation constant (K1) values at 23 degrees C in pH 7 buffer. For a single substrate, formation constants with different ligands varied in the order: caffeine greater than pyridoxine approximately cytidine greater than nicotinamide greater than sucrose. With caffeine as the ligand, formation constants with different substrates varied in the order: guanine greater than guanosine approximately acyclovir greater than DHPG. The largest formation constant observed was 58 M-1 (for guanine-caffeine), and the smallest formation constant was 0.29 M-1 (for DHPG-sucrose). Examining the literature for formation constant data on compounds related to DHPG, and comparing literature data with our own, reveals a significant correlation between formation constants and ligand hydrophobicity. For 41 substrate-ligand pairs, least squares linear regression analysis of log K1 values versus various parameters reflecting donor-acceptor abilities (e.g., substrate and ligand HOMO and LUMO values, or substrate oxidation potentials) failed to significantly correlate. We conclude that ligand hydrophobicity is a general determinant of water soluble complex formation, but not necessarily the exclusive or dominant controlling factor for all complexes. Charge-transfer interactions are not important determinants of complex formation for the substrate-ligand combinations that we have considered.

Acyclovir↗

Stability of ganciclovir sodium (DHPG sodium) in 5% dextrose or 0.9% sodium chloride injections.

The stability of 9-[(1,3-dihydroxy-2-propoxymethyl]) guanine sodium (ganciclovir sodium, also known as DHPG sodium) in two infusion solutions was studied. Lyophilized ganciclovir sodium 500 mg was reconstituted with sterile water 10 mL to give a theoretical concentration of 50 mg/mL. After reconstitution, 6-mL aliquots of the solution were added to 100 mL of 0.9% sodium chloride injection or 5% dextrose injection in polyvinyl chloride i.v. bags. One sample was withdrawn from each of 10 bags of each solution and analyzed by high-performance liquid chromatography (HPLC). Thirty bags of each solution were then stored under each of the following conditions: at room temperature under laboratory light, at room temperature in the dark, and under refrigeration for up to five days. Single potency assays were performed by HPLC on each of three bags of solution at three and five days after initial dilution of the solutions. The solutions were visually inspected, and the pH of the solutions was measured. All solutions of ganciclovir were stable for at least five days under all storage conditions; mean ganciclovir concentrations did not drop below 98% of initial theoretical values throughout the storage period. No important changes in the pH of the solutions occurred during the study period. Under the conditions of this study, ganciclovir sodium is stable for up to five days when prepared in 5% dextrose injection or 0.9% sodium chloride injection.

Acyclovir↗

Electrochemistry of purine derivatives. 1: Direct determination for the antiviral drug 9-[(1,3-dihydroxy-2-propoxy)methyl]guanine by anodic differential pulse voltammetry.

Differential pulse voltammetry at a stationary glassy carbon electrode was used for the sensitive and selective analysis of a potent new antiviral analogue of 2-deoxyguanosine in a pharmaceutical formulation. In the electrochemical method for analysis of 9-[1,(3-dihydroxy-2-propoxy)methyl] guanine (1), an electroactive internal standard (uric acid) was used. Linear peak current-concentration relationships were obtained at 1 concentrations of 0.4-2.0 mM, with a quantitation limit of 0.1 mM. Degraded solutions of 1 were assayed directly by differential pulse voltammetry and also by two chromatographic methods to demonstrate the specificity of the electrochemical method. The voltammetric method reliably provides accurate and reproducible results in considerably less time than conventional chromatographic analysis.

Acyclovir↗

Electrochemistry of purine derivatives. 2: Correlation of anodic differential pulse peak potentials with Hammett substituent constants.

Differential pulse voltammetry was used to measure anodic peak potentials at the glassy carbon electrode (in pH 2 to 11 aqueous buffer versus Ag/AgCl) for 14 purine bases and nucleosides. The tested compounds included the antiviral drugs 9-[(1,3-dihydroxy-2-propoxy)-methyl]guanine (1) and acyclovir (2) plus six analogues of 1. At pH 7, representative peak potential values were as follows: 1, 0.97 V; 2, 1.01 V; 6-amino-6-deoxy-1 1.00 V; guanosine, 1.03 V; 2'-deoxyguanosine, 1.03 V. The observed potentials at pH 7 and related literature values correlated with Hammett pi(para) substituent constants. For 24 purines, stepwise multiple linear regression provided the relationship: P7 = (1.08 +/- 0.055) + (1.13 +/- 0.13) sigma 8 + (0.338 +/- 0.061)sigma(2 + 6) + (0.281 +/- 0.043)D (with n = 24, r2 = 0.930, CV = 11.1, and F = 88) where P7 is the pH 7 oxidation potential, the subscripts refer to purine ring substitution position, and D is an indicator variable for substitution at purine N9 by furanoside or glycoside analogue moieties. The observed relationship permits predictions of anodic peak potentials for other purines the substitution patterns of which are known.

Antiviral Agents↗

Metabolic disposition study of chlorinated hydrocarbons in rats and mice.

Chlorinated hydrocarbons found in a bioassay to be carcinogenic to both B6C3F1 mice and Osborne-Mendel rats (1,2-dichloroethane), carcinogenic only to mice (1,1,2-trichloroethane, 1,1,2,2-tetrachloroethane, hexachloroethane, trichloroethylene, and tetrachloroethylene), and noncarcinogenic to either species (1,1-dichloroethane and 1,1,1-trichloroethane) were used to investigate the biochemical bases for tumorigenesis. Studies were conducted after chronic oral dosing of adult mice and rats with the MTD and 1/4 MTD of each compound. The extent to which the compounds were metabolized in 48 hr, hepatic protein binding, and urinary metabolite patterns were examined. Metabolism of the compounds (mmoles per kg body weight) was 1.7 to 10 times greater in mice than in rats. Hepatic protein binding (nanomole equivalents bound to 1 mg of liver protein) was 1.2 to 8.3 times higher in mice than in rats except for 1,2-dichloroethane and 1,1,1-trichloroethane. The noncarcinogens 1,1-dichloroethane and 1,1,1-trichloroethane exhibited 2 to 18 times more binding in mice than did the carcinogens 1,2-dichloroethane and 1,1,2-trichloroethane. Urinary metabolite patterns of the compounds were similar in both species. The biochemical parameters measured provided no clue to differentiate the carcinogens from the noncarcinogens.

Administration, Oral↗

Sensitivity of 941 beta haemolytic streptococci to antibacterial drugs.

Nine hundred and forty-one strains of beta haemolytic streptococci were Lancefield grouped and their antibiotic sensitivities tested by the agar plate diluting technique to penicillin, erythromycin, lincomycin, tetracycline and sulphafurazole. All the strains tested were sensitive to two units per ml or less of penicillin. This MIC is higher than that reported in other surveys and indicates increasing resistance of these organisms to penicillin. All the strains tested were sensitive to two mug/ml or less of erythromycin. Fifty percent of all strains were resistant to tetracycline and sulphafurazole.

Anti-Bacterial Agents↗

Determination of isotope ratios in human tissues enriched with zinc stable isotope tracers using inductively coupled plasma-mass spectrometry (ICP-MS).

Enriched fecal and urine samples were prepared using ion-exchange column chromatography for analysis by Inductively Coupled and Fast Atom Bombardment Mass spectrometry (ICP-MS, FAB-MS) to compare precision between methods. Unenriched samples of human milk, feces, and whole blood were prepared similarly to monitor instrumental precision and analytical error. A least squares fit of the ICP-MS results vs the FAB-MS for 70Zn/64Zn gave a slope of 0.98, with a relative standard deviation (RSD) of only 0.7%. The results for 68Zn/64Zn gave a slope of 0.82, with a RSD of 14%. For unenriched tissues, all potential interferences were removed by the preparation procedure with no significant differences between preparation for isotope ratios of 70Zn/64Zn, 68Zn/64Zn, 67Zn/64Zn, and 66Zn/64Zn. Poisson counting statistics are a major contribution to the total analytical error indicating the usefulness of this procedure for enrichment studies.

Animals↗

Preventing employee burnout.

Burnout, a condition that is affecting an increasing number of employees in industry today, can transform top-performing employees into indifferent, frequently absent, ineffective workers. What can human resources managers do to help prevent burnout among employees? Authors Susan E. Jackson, assistant professor of organizational psychology in the psychology department at the University of Maryland, and Randall S. Schuler, associate professor of personnel and human resources management in the department of management at New York University, suggest three specific approaches to preventing burnout. One of these, anticipatory socialization programs, is a way of preventing "reality shock" from sending idealistic new employees with unrealistic expectations about a job into burnout. The philosophy underlying anticipatory socialization programs holds that reality shock should be experienced before the individual begins his or her first full-time job- and, further, that it should be experienced in a context that permits and encourages the development of constructive strategies for coping with the unexpected reality.

Burnout, Professional↗