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Biomedical subjects

L W Baillie

Publications and source records attributed to L W Baillie.

14 recordsLinked to original sources

Biodegradable microparticles with different release profiles: effect on the immune response after a single administration via intranasal and intramuscular routes.

In the development of single-dose microparticulate vaccines, identification of the type of protein release profile required to elicit high and sustainable immune responses is important. Microparticles exhibiting different protein release profiles (continuous, pulsatile and plateau) were made by solvent evaporation or solvent extraction methods from biodegradable polymers encapsulating the model antigen, bovine serum albumin (BSA). The immune responses obtained after a single intranasal or intramuscular administration of microparticles were determined, and also after a subcutaneous boost after 11 months. Microparticles were manufactured with acceptable protein loading and average volume size ranging from 1 to 10 microm. The integrity of BSA extracted and released from microparticles after 2 months incubation was retained. Microparticulate preparations administered by either intranasal or intramuscular routes, evoked rapid, high titre and long-lived (up to 11 months after priming) specific serum IgG responses which were significantly greater than for free BSA. The type of protein release from microparticles had no significant effect on the systemic immune responses. Interestingly, a formulation exhibiting a plateau-release profile was the only microparticulate system capable of inducing significantly greater IgA responses than free BSA after intranasal immunization. This study shows the benefit of microencapsulation in inducing high and long-lasting systemic immune responses after a single dose by both parenteral and mucosal delivery. We conclude that of the microparticles tested, the longevity and magnitude of humoral responses was not effected by the type of in-vitro protein release profile.

Administration, Intranasal↗

Human immune responses to the UK human anthrax vaccine.

The IgG anti-protective antigen subclass antibody response of individuals who had been infected with anthrax was compared with that of healthy individuals immunized with the UK licensed anthrax vaccine. The predominant subclass in both groups was IgG1. In addition, IgG3 was seen in convalescent serum while vaccinees produced IgG2, IgG3 and IgG4 subclass. The significance of these results is discussed. Further work is required to determine the role of antibodies in mediating protective immunity in man.

Anthrax↗

Presentation of protective antigen to the mouse immune system: immune sequelae.

Protective antigen (PA), the major protective component of the existing vaccine, is a potent immunogen. Protective antigen in alhydrogel induced a high serum IgG titre (> log10 4) in both the C57B16 and Balb/c mouse and the predominant subclass of antibody induced was IgG1, indicating that the response to PA was predominantly Th2 directed. When plasmid DNA encoding PA was used to immunize the Balb/c mouse, a low serum IgG titre was detected (</=log10 1), which was slightly increased by boosting with plasmid DNA. However, when mice immunized with plasmid DNA were later boosted with rPA, a significant and rapid increase in titre (up to threefold) was observed. Priming mice with PA-encoding plasmid DNA may be a mechanism of enhancing and accelerating the immune response to PA.

Animals↗

A heat-inducible Bacillus subtilis bacteriophage phi 105 expression system for the production of the protective antigen of Bacillus anthracis.

The protective antigen of Bacillus anthracis is the major protective immunogen in the current human vaccine. A heat-inducible protective antigen expression system was constructed based on a derivative of Bacillus subtilis phage phi 105. The recombinant protein produced by this system protected immunised animals against challenge with spores of B. anthracis. Gene instability and protease activity of the host strain contributed to the low level of recoverable protein in culture supernatant (approximately 2 mg l-1).

Animals↗

Production and purification of recombinant protective antigen and protective efficacy against Bacillus anthracis.

Recombinant protective antigen (rPA), expressed by Bacillus subtilis WB600 (pPA 101), has been purified to homogeneity and the protective efficacy against a Bacillus anthracis challenge has been investigated. rPA was fractionated from culture supernatant fluid by ammonium sulphate, followed by anion exchange chromatography using DEAE Streamline, anion-exchange chromatography on FPLC MonoQ HR 10/10 and finally, gel filtration chromatography on FPLC Superose 12 HR 10/30, to yield 7 mg rPA per litre of culture. The protective efficacy of rPA against an airborne challenge with the AMES strain of B. anthracis was determined in the presence of the adjuvants, alhydrogel and Ribi, and compared to that achieved by the current UK human vaccine in guinea pigs. rPA combined with the Ribi adjuvant was found to provide 100% protection against challenge.

Adjuvants, Immunologic↗

Evaluation of the Biolog system for the identification of Bacillus anthracis.

The potential of the Biolog system for the identification of Bacillus anthracis was evaluated. In-house generated databases allowed the correct identification of 19 of 20 isolates of B. anthracis within 24 h. Five strains of the closely related B. cereus/thuringiensis group were misidentified as B. anthracis. For this reason the test could only serve as a primary screen with further testing being required to confirm identity. In addition 20% of all the strains of bacilli examined during the study gave unreadable reaction profiles due to false-positive reactions.

Bacillus anthracis↗

Evaluation of Bacillus subtilis strain IS53 for the production of Bacillus anthracis protective antigen.

An asporogenous strain of Bacillus subtilis, IS53, transformed with plasmid pPA102, produces the protective antigen (PA) component of the tripartite toxin of B. anthracis. Addition of yeast extract was required to support growth and PA production in all the media examined. Protective antigen expression was down-regulated during exponential growth and extracellular proteases caused marked degradation of the mature protein.

Antigens, Bacterial↗

Chlorhexidine hypersensitivity of ciprofloxacin-resistant variants of Pseudomonas aeruginosa PAO.

Examination of 67 ciprofloxacin-resistant clones of Pseudomonas aeruginosa PAO (ciprofloxacin MIC > 0.5 mg/L) yielded four isolates that were hypersensitive to chlorhexidine (MIC 5 mg/L); none was found among 179 ciprofloxacin-sensitive colonies. Revertant studies and the introduction of a wild-type Escherichia coli DNA gyrase A gene confirmed that ciprofloxacin resistance and chlorhexidine hypersensitivity were not the result of a single mutation. Mutagenicity testing of ciprofloxacin showed no evidence for the supposition that chlorhexidine hypersensitivity was the result of ciprofloxacin-induced mutation in P. aeruginosa PAO.

Chlorhexidine↗

Colonial variation in vancomycin resistant Enterococcus faecium.

Vancomycin resistant enterococci are increasingly being isolated from inpatients. This report describes the colonial variation present in most isolates of vancomycin resistant Enterococcus faecium obtained at this hospital. Colonial variants within the same culture were indistinguishable by antimicrobial susceptibility, biochemical reactions, and ribotyping. Failure to appreciate this colonial variation will lead to pure cultures being regarded as contaminated or mixed.

Cross Infection↗

Oral carcinoma.

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Cytodiagnosis↗