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Biomedical subjects

D Oxley

Publications and source records attributed to D Oxley.

At least 19 recordsLinked to original sources

Structure of the N-linked oligosaccharides from tridacnin, a lectin found in the haemolymph of the giant clam Hippopus hippopus.

Tridacnin, a glycoprotein lectin, was isolated from the symbiotic marine clam Hippopus hippopus and the structure of its major N-glycan chains determined. Tridacnin contains only N-linked glycans which were quantitatively cleaved by peptide-N4-(N-acetyl-beta-glucosaminyl)asparagine amidase F. Following purification by anion-exchange HPLC, the structures of the oligosaccharides were established using a combination of electrospray ionisation mass spectrometry, 1H-NMR spectroscopy and linkage analysis. The N-glycans are primarily of the oligomannose type but, in addition, some contain a novel 6-O-Me group on the terminal mannose residue of the chain. The N-glycan chains had the following structures. [formula: see text]

Animals

Structural and serological characterisation of an O-specific polysaccharide from Serratia plymuthica.

The surface polysaccharides of a strain of Serratia plymuthica were characterised and shown to consist of a linear, acidic galactoglucomannan as well as a major and a minor neutral galactan. Immunoblotting results demonstrated cross-reactions between this strain and others with similar galactans (S. marcescens O16 and O20, Klebsiella O1, and Pasteurella haemolytica T4 and T10).

Antigens, Bacterial

Structure of a neutral glycan from the lipopolysaccharides of reference strains for Serratia marcescens serogroups O2 and O3.

Serogroups O2 and O3 of Serratia marcescens are differentiated by acidic glycans present in the aqueous phase when lipopolysaccharides are extracted from the reference strains by the aqueous-phenol method. The phenolic phases of these extracts from both strains also contain lipopolysaccharides, from which the same neutral glycan is released on milk acid hydrolysis. The neutral glycan has the disaccharide repeating-unit shown, and accounts for the cross-reactions between the two serogroups and also with serogroup O21: --> 4)-alpha-D-GlcpNAc-(1-->4)-beta-D-ManpNAc-(1--.

Carbohydrate Sequence

Structure of an acidic glycan from the reference strain for Serratia marcescens serogroup O22.

In addition to a neutral glycan, lipopolysaccharide extracts from the reference strain for Serratia marcescens serogroup O22 contain an acidic polymer which probably defines the serogroup and is of microcapsular origin. The polymer is doubly branched with a heptasaccharide repeating unit and a galactan backbone. By means of spectroscopic and degradative studies, the structure of the repeating unit was established as that shown. [formula: see text]

Carbohydrate Conformation

An animal model of fibrinolytic bleeding based on the rebleed phenomenon: application to a study of vulnerability of hemostatic plugs of different age.

The primary bleeding time is prolonged when tested during the infusion of both plasminogen activators and anticoagulants, and such sites frequently exhibit rebleeding after initial hemostatic control. This study describes an animal (rabbit) model which distinguishes fibrinolytic from anticoagulant hemorrhage and further applies the model to the study of hemostatic plugs of increasing age. In this model, rebleeding occurred from hemostatically-stable ear puncture sites induced prior to infusion of streptokinase (SK) or recombinant tissue-plasminogen activator (rt-PA), but not of heparin or hirudin. This distinction was apparent even for lesions induced only 15 minutes prior to the infusion and fibrinolytic bleeding was observed in such lesions induced up to 24 hours earlier. Post-infusion sites bled more quickly than did pre-infusion sites, and there was a gradual decrease in susceptibility of such prior trauma sites for rebleeding, evidenced not only by a lower proportion of sites that rebled, but also by a longer lag time after starting SK or rt-PA before such rebleeding occurred. At the dosages tested, SK showed a trend (not statistically significant) toward more sites that rebled, while rt-PA showed a trend towards a longer duration of rebleeding. Thus, this animal model of rebleeding appears to be unique for fibrinolytic agents and allows for more detailed study of the physiological mechanisms of such bleeding and for a multifaceted comparison of the bleeding potential of plasminogen activators.

Animals

Structure of an acidic glycan present in the lipopolysaccharide extract from the reference strain for Serratia marcescens serogroup O18.

The lipopolysaccharide extract from the cell wall of the reference strain for Serratia marcescens serogroup O18 contained, in addition to a neutral glycan characterised previously, an acidic glycan. Acidity was contributed both by D-glucuronic acid and by 4-O-[(R)-1-carboxyethyl]-D-glucose (4-O-Lac-D-Glc). By using n.m.r. spectroscopy, methylation analysis, and chemical degradations, the repeating unit of the acidic glycan was identified as a branched hexasaccharide having the structure shown; an O-acetyl group also present was not located. The glycan is believed to define the O18 serogroup, but is probably not an integral component of the lipopolysaccharide. [formula: see text].

Carbohydrate Conformation

Structure of the 021 antigen from Serratia marcescens.

Lipopolysaccharide was isolated from both phases of an aqueous-phenol extraction of defatted cell walls from the reference strain for Serratia marcescens serogroup 021. The product from the aqueous phase was of the R type, lacking a polymeric side-chain. The polymeric fraction of the lipopolysaccharide from the phenolic phase (the 021 antigen) had a disaccharide repeating-unit with the following structure: ----4)-alpha-D-Glcp-(1----4)-beta-D-ManpNAc-(1----.

Antigens, Bacterial

The hemodynamics of thrombus formation in arteries.

Alterations in arterial blood flow are thought to predispose to thrombus formation, but the exact relationships have not been fully elucidated. The effect of varying blood flows on the accumulation of thrombotic material within arteries was investigated, with use of shear rate as an index of flow across the luminal surface. Partially denuded rabbit aortas were perfused with fresh nonanticoagulated human blood for 3 minutes, with an in vitro recirculating apparatus, Indium 111-labeled platelets, and fibrinogen I 125. Shear rates ranged from zero to 1500 sec-1, correlating with the hemodynamics of various segments of the human arterial tree. A significant correlation was observed between shear rate and platelet deposition, ranging from 5.2 +/- 2.8 x 10(6) platelets/cm2 of vessel surface area at zero shear to a maximum of 64.7 +/- 8.3 x 10(6) platelets/cm2 at a shear rate of 1500 sec-1 (F = 5.01, p less than 0.05). Fibrin deposition paralleled that of platelets, ranging from 28.2 +/- 7.6 micrograms/cm2 at zero shear to 354.1 +/- 62.7 micrograms/cm2 at a shear rate of 1500 sec-1 (F = 5.91, p less than 0.05). These results suggest that shear rate is a most important determinant of platelet and fibrin deposition on altered arterial surfaces.

Animals

Changes in gastric emptying in recipients of successful combined pancreas-kidney transplants.

Gastroparesis causes gastric emptying disorders in patients with chronic diabetes mellitus and it results from reduced smooth muscle contractility secondary to autonomic dysfunction. Today there has been little objective evidence of improvement in gastric emptying following correction of both uremia and diabetes by combined kidney-pancreas transplantation. We used gastrointestinal symptom scores, solid gastric emptying tests and electrogastrography to evaluate the effect of combined kidney-pancreas transplantation on gastric emptying in 8 uremic diabetic patients. The mean age of the patients was 40 years (range: 30-51 years) and the mean duration of diabetes was 24 years (range: 16-30 years). The patients had been on dialysis up to 24 months. The pretransplant A1 mean was 6.5 before improving to 4.3 after transplantation. All patients were receiving exogenous insulin. Our study data indicate that uremic diabetics have a high prevalence of symptomatic gastrointestinal dysfunction including abnormalities of gastric emptying and gastric electrical activity. Following transplantation, the gastrointestinal symptomatology improved significantly. Significant improvement in the rate of gastric emptying also correlated with improvement in the symptom complex. Gastric electrical activity also improved during the follow-up period.

Adult

Structural studies of acidic polymers produced by the O23 reference strain of Serratia marcescens: presence of amide-linked glutamic acid.

The major fraction of an acidic galactoglucomannan present in lipopolysaccharide extracts from cell walls of the O23 reference strain of Serratia marcescens has the tetrasaccharide repeating-unit shown. In a minor fraction, L-glutamic acid was amide-linked to about half of the D-glucuronic acid residues. The possible contributions of the acidic polymers and a neutral polymer produced by the organism to cross-reactions with other serogroups are discussed.

Acids

Structure of a neutral glycan isolated from the lipopolysaccharide of the reference strain for Serratia marcescens serogroup O22.

Both a neutral and an acidic polymer have been isolated from a lipopolysaccharide extract of the reference strain for Serratia marcescens serogroup O22. The neutral polymer has a linear structure with the repeating unit shown. The same tetrasaccharide unit also forms the backbone of the branched neutral polymer isolated from the reference strain for serogroup O10, which cross-reacts strongly with O22. ----2)-alpha-L-Rhap-(1----2)-alpha-L-Rhap-(1----3)-alpha-L-+ ++Rhap-(1----3)-alpha- D-GlcpNAc-(1----

Carbohydrate Conformation

Structure of the putative O23 antigen of Serratia marcescens.

A neutral glycan containing L-rhamnose and 2-acetamido-2-deoxy-D-galactose is one of two polymers present in the lipopolysaccharide extract from the reference strain for Serratia marcescens serogroup O23. The glycan, which has the disaccharide repeating-unit shown, shares structural features with polymers from several other O serogroups. ----4)-alpha-L-Rhap-(1----4)-beta-D-GalpNAc-(1----.

Antigens, Bacterial

Structure of a neutral polymer isolated from the lipopolysaccharide of the reference strain for Serratia marcescens serogroup O18.

A neutral polymer (the putative O antigen) has been isolated from the lipopolysaccharide of the reference strain for Serratia marcescens serogroup 018. From the results of spectroscopic and degradative studies, the repeating unit of the polymer was identified as a linear tetrasaccharide having the structure shown. ----2)-alpha-L-Rhap-(1----2)-alpha-L-Rhap-(1----6)-alpha-D- GlcpNAc-(1----

Biopolymers

Structure of the O-specific galactan from the lipopolysaccharide of the reference strain for Serratia marcescens serogroup O24.

The putative O-specific polysaccharide for Serratia marcescens serogroup O24 is a galactan with a branched, trisaccharide repeating-unit of the structure shown. The structure of the backbone is identical to that of the linear galactans isolated from the reference strains for S. marcescens serogroups O16 and O20, presumably accounting for the serological cross-reactions observed. (Formula: see text)

Carbohydrate Sequence

Structures of neutral glycans isolated from the lipopolysaccharides of reference strains for Serratia marcescens serogroups O16 and O20.

Neutral polymers have been isolated from the lipopolysaccharides of the reference strains for Serratia marcescens O16 and O20, serogroups which exhibit significant cross-reactivity. Both organisms produce a galactan with the disaccharide repeating-unit shown, and which apparently accounts for the serological observations. The same galactan has also been reported as the O4-specific polysaccharide of Pasteurella haemolytica. In S. marcescens O16, the galactan is apparently accompanied by a polymer of 2-substituted beta-D-ribofuranosyl residues.

Carbohydrate Sequence