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Biomedical subjects

R J Miles

Publications and source records attributed to R J Miles.

At least 37 records · Page 2Linked to original sources

Amplified enzyme-linked-immunofilter assays enable detection of 50-10(5) bacterial cells within 1 hour.

Two enhanced enzyme-linked-immunofilter assay (ELIFA) methods for the rapid and quantitative detection of whole bacterial cells are described. In the first method, specific antibody bound to bacterial cells was amplified using a secondary antibody and detected by the conjugated enzyme activity (peroxidase) of a third antibody in a chemiluminescent assay. In the second method, a chromogenic substrate was used in conjunction with a biotinylated secondary antibody and avidin. Both assays were conducted within 55 min using a 96-well continuous flow immunofilter apparatus. The assay values were determined either as the reflectance of developed X-ray film placed over chemiluminescent membranes or of precipitated chromogen on the membrane surface. The biotin/avidin method enabled quantitative detection of approximately 60 to 10(5) cells. The detection limit (blank + 2 SD) of the chemiluminescent assay with a 30-s film exposure time was 50 cells. The ELIFA methods described represent a considerable advance in sensitivity over previous immunological methods of detecting whole bacterial cells and suggest that immunological methods may approach PCR in sensitivity.

Antibodies, Bacterial↗

Distribution of bacteria on hands and the effectiveness of brief and thorough decontamination procedures using non-medicated soap.

Our perception of the role of hand washing in the clinical situation is based on experimental studies in which test-bacteria are usually inoculated onto the skin surface and removed using hand washing preparations containing antiseptics. In this study, we have investigated the distribution of bacteria on the hands of volunteers and the effectiveness of long (3 minute) and brief (10 second) washes in removing both naturally-occurring and artificially-inoculated bacteria (Micrococcus sp.), using only soap and water. There was a tenfold reduction in median counts of artificially inoculated bacteria following both long and brief washes. However, less than 50% of naturally-occurring bacteria were removed and, for hands previously disinfected by immersion in 70% ethanol, the washing procedure increased bacterial counts. In both unwashed hands, and hands washed following a strict protocol, the mean variation in counts of naturally-occurring bacteria at different sites (wrists, dorsal surface, palmar surface, fingertips and interdigital spaces) was only two-fold. The efficiency of recovery of naturally-occurring organisms was estimated by repeated swabbing, to be more than 60%. The data question the value of typical hand wash procedures recommended by many authorities for use in clinical situations and of the perfunctory hand washes frequently adopted by nursing staff in busy wards. Experimental evidence is required to justify procedures and to identify the precise circumstances in which they are of value.

Disinfectants↗

A rapid and sensitive enzyme linked immunofilter assay (ELIFA) for whole bacterial cells.

An improved method is described for the detection of Escherichia coli by an enzyme linked immunofilter assay (ELIFA) using nitrocellulose membrane sandwiched between two 96-well plates. The incorporation of a pumping system permits a continuous flow of reagents and/or wash fluids through the membrane and provides an assay procedure capable of detecting 10(3) bacteria per well within 40 min. Quantitative bacterial detection was based on precipitated chromogen determined by scanning densitometry. The procedure represents a significant improvement in assay time and/or sensitivity over previously described ELIFA and ELISA methods for whole bacterial cells.

Escherichia coli↗

The respiratory chain of Helicobacter pylori: identification of cytochromes and the effects of oxygen on cytochrome and menaquinone levels.

The quinone and cytochrome components of the respiratory chain of the microaerophilic bacterium Helicobacter pylori have been investigated. The major isoprenoid quinone was menaquinone-6, with traces of menaquinone-4; no methyl-substituted or unusual menaquinone species were found. Cell yield was highest after growth at 10% (v/v) oxygen and menaquinone levels (per dry cell mass) were maximal at 5-10% (v/v) oxygen. Helicobacter pylori cells and membranes contained b- and c-type cytochromes, but not terminal oxidases of the a- or d-types, as judged by reduced minus oxidised difference spectra. Spectra consistent with the presence of a CO-binding terminal oxidase of the cytochrome b- or o-type were obtained. The soluble fraction from disrupted cells also contained cytochrome c. There were no significant qualitative differences in the cytochrome complements of cells grown at oxygen concentrations in the range 2-15% (v/v) but putative oxidases were highest in cells grown at 5-10% (v/v) oxygen.

Cytochromes↗

Diversity of energy-yielding substrates and metabolism in avian mycoplasmas.

The metabolism of organic substrates and production of H2O2, a potential pathogenicity factor, were studied in the type strains of fourteen avian Mycoplasma species, and in low-passage isolates of M. gallinarum, M. gallisepticum, M. iners and M. pullorum. Substrates were added to cell suspensions in Ringer or saline solution and oxygen uptake and/or change in pH monitored. The fermentative species could be sub-divided according to whether O2 uptake did (M. anatis, M. columborale, M. gallisepticum, M. imitans and M. iowae) or did not (M. gallinaceum, M. gallopavonis and M. pullorum) accompany glucose metabolism and the five non-fermentative, arginine-hydrolysing strains according to whether organic acids (lactate, 2-oxobutyrate, pyruvate) were (M. columbinasale, M. columbinum and M. gallinarum) or were not (M. iners and M. meleagridis) oxidized, Lysed cells of strains which consumed O2 during glucose or organic acid metabolism had relatively high NADH oxidase activity (170-950 nmol min-1 mg cell protein-1) and produced 0.02-0.36 mol H2O2 per mol O2 consumed during NADH oxidation. In contrast, strains which did not oxidize organic acids or consume O2 during glucose or organic acid metabolism possessed low NADH oxidase activity (< or = 20 nmol min-1 mg cell protein-1). All arginine-hydrolysing species showed a high affinity (Km value 1-3 microM) towards arginine. The fermentative species similarly showed a high affinity (Km value 2-5 microM) towards glucose, but used only a small number of additional sugars at detectable rates. All M. pullorum strains metabolized sucrose (Km < or = 3 microM). The type-strains of M. gallisepticum and M. imitans were biochemically similar and had high affinities for fructose and mannose. A number of low-passage avain isolates, but none of the type strains, metabolized glycerol and, in lysed cells, oxidized L-alpha-glycerophosphate (GP) with the production of 1 mol H2O2 per mol GP.

Animals↗

Reduction of benzyl viologen distinguishes genera of the class Mollicutes.

We tested the ability of 62 growing strains belonging to the class Mollicutes to reduce the redox indicator and free-radical generator 1,1'-dibenzyl-4,4'-bipyridinium dichloride (benzyl viologen [BV]) to a blue-violet-purple color. BV was reduced by 12 Acholeplasma species but not by Acholeplasma multiforme PN525T (T = type strain). BV was also reduced by five of nine Mesoplasma species and by four of six Entomoplasma species. BV was not reduced by 19 Mycoplasma species, six Spiroplasma species, five unnamed Spiroplasma strains belonging to different serogroups, three Ureaplasma species, and one unnamed Ureaplasma strain. The BV-reducing ability was localized in the membrane of Acholeplasma laidlawii B-PG9 and was dependent on NADH. Reduction of BV could be expressed in mixed cultures, and this activity may be useful for recognizing the contaminating presence of an Acholeplasma species. The reductive BV response may have phylogenetic value. We believe that the test described in this paper readily distinguishes all Acholeplasma species and some Mesoplasma and Entomoplasma species from all Mycoplasma, Spiroplasma, and Ureaplasma species tested.

Benzyl Viologen↗

An in situ method for determining bacterial survival on food preparation surfaces using a redox dye.

A simple method is described for the direct enumeration of viable bacteria dried on test surfaces. Inoculated surfaces were overlayed with agar and after incubation nitroblue tetrazolium solution (pale yellow) was used to stain colonies (purple) at the agar-test surface interface. Stained colonies could be readily detected and counted even against the opaque background of ceramic tile or stainless steel or when present within opaque films of milk or serum. Recovery of bacterial by this method was approximately fivefold greater than using a conventional swabbing procedure. The method was used to demonstrate the marked effect of the composition of the suspension fluid, in which bacteria were dried, and the length of surface exposure upon bacterial survival.

Bacteria↗

Nisin stimulates oxygen consumption by Staphylococcus aureus and Escherichia coli.

Nisin stimulated oxygen consumption by nongrowing, glucose-metabolizing Staphylococcus aureus and Escherichia coli cells, indicating a protonophore mode of action. A similar stimulation in E. coli cells osmotically stressed to disrupt the outer cell membrane confirmed the cytoplasmic membrane as the site of nisin action and showed that nisin uptake was not prevented by the outer membrane.

Escherichia coli↗

Nisin resistance distinguishes Mycoplasma spp. from Acholeplasma spp. and provides a basis for selective growth media.

The sensitivity of 11 Mycoplasma and 5 Acholeplasma species to the bacteriocin nisin was determined. When applied on filter paper discs to lawns of acholeplasma cells, nisin (20 nmol per disc) gave 3.5- to 7.0-mm zones of growth inhibition. The inclusion of 0.2 mM nisin in agar medium reduced the number of Acholeplasma laidlawii colonies by a factor of more than 10(6), and in a salts solution, 75 microM nisin killed more than 99.9% of cells within 1 min. Under similar conditions, nisin had no significant effect upon the growth or survival of Mycoplasma species. At low concentrations (1 to 3 microM), nisin stimulated glucose oxidation by A. laidlawii and Acholeplasma oculi. However, in comparison with carbonyl cyanide m-chlorophenylhydrazone (CCCP), a recognized protonophore and uncoupler of respiration, the maximum extent of stimulation was low, < or = 20%, compared with up to 180% for CCCP. Also, in contrast to results obtained with CCCP, at concentrations only slightly above those causing stimulation of acholeplasma oxygen uptake, nisin strongly inhibited respiration. Inhibition of oxygen uptake was greater for A. laidlawii cells grown in the absence of cholesterol, and on agar medium, growth inhibition by nisin decreased with increasing concentrations of cholesterol. Nisin resistance may be a valuable characteristic in the selection and identification of Mycoplasma spp.

Acholeplasma↗

Kinetics of substrate oxidation by whole cells and cell membranes of Helicobacter pylori.

Oxygen uptake by Helicobacter pylori cells and membranes was determined. Cells from stirred broth cultures or agar plates, suspended in buffer, possessed a variable and apparently endogenous respiration which could be sustained for several hours. In contrast, oxygen consumption by cells from statically incubated broth cultures, in the absence of added substrate, was transient or undetectable. These latter cells, however, oxidised ethanol, fumarate, glucose, D-lactate, pyruvate and succinate, though glucose-oxidising ability declined rapidly. The Kms for D-lactate, pyruvate and succinate metabolism were low (< or = 20 microM) and oxygen uptake was approximately 1.5, 2 and 2 mol per mol substrate respectively, indicating metabolism beyond acetate plus CO2 and implying the presence of tricarboxylic acid cycle activity. Cell membranes oxidised fumarate, D-lactate, NADH, NADPH and succinate. NADPH oxidation was six times more rapid than that of NADH. Rates of oxygen uptake by cells suspended in buffer with metabolisable substrate were < 20% of those for cells suspended in a brain heart infusion medium. Uninoculated medium consumed significant quantities of oxygen.

Cell Membrane↗

Alternatives to arginine as energy sources for the non-fermentative Mycoplasma gallinarum.

In contrast to previously studied non-fermentative arginine-hydrolysing (F-/A+) Mycoplasma species, M. gallinarum cells suspended in a salts solution oxidised ethanol and L-lactic, pyruvic and 2-oxobutyric acids. The organic acids were additionally shown effectively to replace arginine as energy sources in growth media. However, their presence did not inhibit arginine hydrolysis, nor did arginine inhibit organic acid catabolism. The ability to oxidise organic acids is a potentially useful diagnostic character enabling sub-division of the F-/A+ Mycoplasma species. M. gallinarum also differed from previously studied F-/A+ mycoplasmas in possessing relatively high NADH oxidase activity and producing H2O2 as only a minor product of NADH oxidation.

Acetoacetates↗

Contrasting effects of Mycoplasma fermentans and M. felis on the viability and chemiluminescence response of human polymorphonuclear leukocytes.

Trypan blue exclusion was used to estimate the viability of human polymorphonuclear leukocytes (PMNL) in the presence of Mycoplasma felis and two strains of M. fermentans (PG18 and incognitus). The competence of PMNL to mount a respiratory burst when challenged with the mycoplasmas was also monitored by luminol-dependent chemiluminescence (CL). Both un-opsonised and non-immune human serum opsonised M. felis cells had little effect on PMNL viability. In contrast, PMNL viability was reduced markedly by un-opsonised cells of M. fermentans strain incognitus and, to a lesser extent, strain PG18, and opsonisation of these mycoplasmas further enhanced killing. Death of PMNL in the presence of M. fermentans was not associated with the autonomous production of active oxygen species during the respiratory burst as M. felis induced a high CL response from PMNL, whereas that induced by M. fermentans strain incognitus was significantly lower. M. fermentans may invade mammalian cells and it is suggested that the mechanism of PMNL death could be related to the ability of M. fermentans to penetrate host cell membranes.

Cell Survival↗

The detection of lipase activity in bacteria using novel chromogenic substrates.

The propionate (Pro), decanoate (Dec) and laurate (Lau) esters of 5-(4-hydroxy-3,5-dimethoxyphenylmethylene)-2-thioxothiazoline++ +-3-acetic acid were assessed as substrates for lipase and esterase. On hydrolysis these substrates yield an intensely red coloured phenol which could be assayed at 505 nm. The Pro ester was an effective substrate for porcine esterase and was hydrolysed at a rate 20 times greater than the Lau and Dec esters. Conversely, Pseudomonas lipase had a high activity towards the Lau and Dec esters, especially in the presence of bovine serum albumin, but little activity towards the Pro ester. The Dec and Lau were used to detect lipolytic activity in Pseudomonas strains associated with milk spoilage. For this purpose, the substrates were absorbed onto filter paper disks, which were placed over bacterial colonies growing on agar plates; activity was indicated by bright red colouration of discs within 2 h. Escherichia coli colonies hydrolysed the Pro but not the Lau or Dec esters.

Benzoates↗

Catabolism in mollicutes.

The small genome size of mollicutes, and particularly mycoplasmas and ureaplasmas, precludes their possession of the extensive range of metabolic activities present in most other bacterial groups. Demonstrated catabolic activities appear primarily to be associated with energy generation, rather than the provision of substrates for synthetic pathways, and anabolism is largely dependent upon extracellular sources of amino acids, nucleic acid precursors and lipids. However, the pathways of energy generation in mollicutes are diverse and specialized, and may in vivo be dependent upon the presence of a single amino acid (arginine) or urea. Even in those species that utilize carbohydrates the range of substrates is restricted, and while Ac. laidlawii has both EMP and PP pathways and is able to oxidize pyruvate to acetate plus CO2, many mycoplasmas possess only a part of these activities. Such specialization and the infrequent demonstration of inducible enzyme activity in mollicutes implies adaptation to specific habitats in host species, and suggests that differences in the catabolic activities of mollicute strains may be significant in terms of their ecology and pathogenicity. The demonstrated energy-generating pathways of mollicutes produce low ATP yields. Thus, mollicute growth will generate relatively large quantities of metabolic end-products and may deplete host tissues of substrates. Arginine depletion may be of particular importance in pathogenesis and the close physical association between mollicutes and host cells will enhance the potential significance of NH4+ production from the hydrolysis of arginine and urea, and of H2O2 and superoxide formation during carbohydrate metabolism. In addition, lipid and protein catabolism may be associated with virulence where extracellular or membrane-bound enzyme activities exist. Membrane-bound DNAase and RNAase activities have also been demonstrated in mycoplasmas and Ac. laidlawii (Pollack et al., 1965) and U. urealyticum (Romano & La Licata, 1978). Many aspects of mollicute catabolism, including energy conservation in some groups, is poorly understood. Also, while substantial catabolic diversity has been demonstrated within mollicutes and new species are continually being isolated, metabolism has been studied in relatively few species, and even in these only single strains or small groups of strains have been used. In this review, therefore, an attempt to avoid generalizations concerning mollicute behaviour has been made. The lack of much basic knowledge concerning mollicute metabolism has also necessitated the widespread use of 'may be' and other equally vague terms.(ABSTRACT TRUNCATED AT 400 WORDS)

Carbohydrate Metabolism↗