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A Efstratiou

Publications and source records attributed to A Efstratiou.

At least 37 records · Page 2Linked to original sources

Invasive pneumococcal disease in England and Wales: vaccination implications.

Knowledge of the epidemiology of invasive pneumococcal disease (IPD) will aid in planning the use of pneumococcal vaccines. A United Kingdom (UK)-based surveillance in England and Wales (1995-1997) of 11,528 individuals with IPD and a local enhanced surveillance in the Oxford (UK) area (1995-1999) have been analyzed. IPD has a high attack rate in children, with 37.1-48.1 cases per 100,000 infants <1 year old per year, and in older persons, with 21.2-36.2 cases per 100,000 persons >65 years old per year, for England, Wales, and Oxford. The 7-valent conjugate vaccine includes serotypes causing < or =79% of IPD in children <5 years old, but only 66% in adults >65 years old. The data also indicate that IPD varies by serotype, age, and country, emphasizing that the epidemiology of IPD is heterogeneous and requires continued surveillance.

Adolescent↗

Seroprevalence of diphtheria immunity among injured adults in Austria.

Over a period of 1 year a seroepidemiological study was conducted at the outpatient clinic of a trauma department. Immunity to diphtheria was determined in serum samples from 558 injured patients (205 women and 353 men, age from 18 to 70). Diphtheria-antitoxin concentrations were measured with an enzyme immunoassay and a tissue culture toxin-neutralization assay. Sero-immunity was classified as susceptibility (<0.01 IU/ml), basic protection (0.01-<0.1 IU/ml) and full protection (>/=0.1 IU/ml) against the toxic manifestations of the disease. A total of 27.1% of the subjects were susceptible to diphtheria, 26.5% had basic protection, and 46.4% were fully protected. The median antitoxin concentration reached 0.08 IU/ml (0. 0-0.29; quartiles Q25-Q75). A non linear trend toward decreasing immunity with increasing age was observed (P<0.001) and females proved less protected than males (P=0.006). The country of original immunization (Austria, Western European countries, Eastern European countries and Non European countries) had no influence on sero-immunity (P=0.49). Multiple linear regression analysis revealed that age (P<0.001) and gender (P=0.004) had a significant independent influence on diphtheria immunity level, whereas the country of original immunization was not significant (P=0.72).

Adolescent↗

Effect on diphtheria immunity of combined tetanus and diphtheria booster vaccination in adults.

The effect of a single booster injection of an adult formulation of a combined diphtheria-tetanus vaccine (Td) on diphtheria-specific immunity was evaluated. The booster injection, containing 2 IU diphtheria toxoid per dose, was given as part of the surgical wound management for adults with open soft tissue injuries. Diphtheria antitoxin concentrations were determined in serum samples from 534 patients (199 women and 335 men, aged 18-70 years) using an enzyme immunoassay and a tissue culture toxin neutralization assay. Seroimmunity against diphtheria toxin was classified at three levels: susceptibility, basic protection, and full protection against the toxic manifestations of the disease. Before vaccination, 27.1% of the subjects were susceptible to diphtheria, 26.5% had basic protection, and 46.4% were fully protected. Six weeks (minimum 25 days, maximum 98 days) after a single booster injection, 89.7% of the subjects achieved full protection against diphtheria, and only 3.9% had antitoxin levels below the protective level. The median increase from the prevaccination to postvaccination antitoxin concentration was found to be 14-fold (4.4-47; quartiles Q25 to Q75). The change in antitoxin levels after revaccination was higher in older age groups (P< 0.001), whereas neither sex (P = 0.86) nor the country of previous immunization with a different national immunization schedule (P=0.61) had a significant influence on the revaccination effect. Systemic adverse reactions were rare, and local reactions of clinical significance were reported in only 1.9% of subjects.

Adolescent↗

Genetic relatedness of group A streptococci of the newly designated serotype M90 causing a food-borne outbreak and sporadic infections.

Twenty-six isolates of the newly designated M90 serotype group A Streptococcus (GAS) from a large food-borne outbreak of pharyngitis in Greece and six M90 sporadic isolates from UK, were typed by pulsed-field gel electrophoresis (PFGE). Twenty-four outbreak isolates were identical and two closely related. The Greek isolates were possibly related with one UK isolate, while other sporadic isolates exhibited distinct PFGE profiles from the former isolates.

DNA, Bacterial↗

Current approaches to the laboratory diagnosis of diphtheria.

Despite the success of mass immunization in many countries, diphtheria continues to play a major role as a potentially lethal resurgent infectious disease. Early, accurate diagnosis is imperative since delay in specific therapy may result in death. The microbiologic diagnosis of the disease, the identification of contacts and carriers, and the appropriate clinical management of these patients are therefore crucial. The epidemiology of diseases caused by Corynebacterium diphtheriae has changed dramatically over the decades, a situation that is highlighted by the resurgence of infections in the European region. These factors have strengthened the need for laboratories to screen for C. diphtheriae. Many modified and new methodologies are now used widely within laboratories for diphtheria diagnosis. Recent developments have focused upon methods for detection of the lethal and potent exotoxin produced by the causative organism, C. diphtheriae; this detection is the definitive test for the microbiologic diagnosis of diphtheria.

Bacteriological Techniques↗

The European Laboratory Working Group on Diphtheria: A global microbiologic network.

Increasing international travel, migration to and from epidemic areas, and the emergence of epidemic Corynebacterium diphtheriae strains globally have highlighted the need for better microbiologic surveillance and greater clinical and laboratory awareness. As part of the strategy developed by the World Health Organization, one major goal is particularly applicable to the microbiology and epidemiology of diphtheria: to improve surveillance for early detection of emerging and reemerging diseases by establishing a network of national and international laboratories. The European Laboratory Working Group on Diphtheria (ELWGD) was therefore formed in 1993 as a result of the epidemic situation in Eastern Europe. Currently, there is participation from 20 different countries from Western and Eastern Europe, the United States, Australia, and Southeast Asia. ELWGD is a prime example of a collaborative and coordinated approach to the microbiology of diphtheria and should serve as a potential model for other infectious diseases networks.

Corynebacterium diphtheriae↗

Molecular epidemiology of diphtheria.

Molecular subtyping of Corynebacterium diphtheriae identified significant genetic diversity within the species and led to the identification of a unique clonal group that emerged in Russia in 1990 at the beginning of the current epidemic. Strains of this group belong to a distinct electrophoretic type complex and are of ribotypes D1 and D4. Identification of the group allowed for precise monitoring of the epidemic's progression and for rapid detection of cases imported to other countries. The evolution of this clonal group was monitored, and changes were identified. Molecular analysis revealed that no amino acid substitutions have occurred in the diphtheria toxin gene of the epidemic clone strains, reaffirming the use of the current vaccine as the single most effective preventive measure. Application of molecular subtyping methods and continuous monitoring of the spread of these clones has made it possible to distinguish rapidly between epidemic, endemic, and imported cases, allowing for implementation of timely and adequate preventive measures and providing reassurance that no secondary spread resulted from importations.

Bacterial Typing Techniques↗

Group A streptococci in the 1990s.

The last decade has witnessed a remarkable change in the epidemiology of group A streptococcal infections. There has been a marked increase globally in the reporting of invasive infections caused by Streptococcus pyogenes, Lancefield group A streptococci. Many of these cases were deep-seated infections associated with shock and multi-organ failure and are defined as streptococcal toxic shock syndrome. In addition, reports of streptococcal sequelae, in particular, acute rheumatic fever, have re-emerged and remain a serious health threat in developed countries. It appears that these infections are related to the type distributions of the organism among the general population, with the re-emergence of more 'virulent' strains, such as the M1 serotype which in earlier decades was primarily seen in cases of either superficial disease or scarlet fever. Population-based surveillance studies have clearly indicated the importance and relevance of type identification for epidemiological purposes. There have also been suggestions that certain extracellular products and toxins play a major role in the so-called 'increased virulence' of the organism; these include cell surface molecules such as the M protein, opacity factor, the hyaluronic acid capsule, C5a peptidase and streptococcal inhibitor of complement (SIC), in addition to secreted proteins, pyrogenic exotoxins, cysteine proteinase, streptolysins O and S, hyaluronidase, streptokinase and other enzymes. All these factors, and events during the last decade, strongly emphasize the need for a better understanding of the epidemiology, pathogenesis, treatment and prevention of group A streptococcal infections.

Antigens, Bacterial↗

An outbreak of skin sepsis in abattoir workers caused by an 'unusual' strain of Streptococcus pyogenes.

An outbreak of indolent skin infections due to an 'unusual' serological type of Streptococcus pyogenes that lasted for 3 months and affected eight workers in an abattoir is described. The group A streptococcal (GAS) isolates were serotyped as M-type 59; however, they possessed a T-protein pattern (T5/27/44) that is not commonly associated with M-type 59. Further genotypic characterisation studies revealed that all eight isolates were indistinguishable by pulsed-field gel electrophoresis (PFGE) and possessed the emm gene encoding for the M-type 59. Once identified, and after a combination of penicillin treatment, exclusion of workers with lesions and reinforcement of standard hygiene precautions, no further cases developed. Although common in the 1970s and 1980s, streptococcal infections in this situation are now reported infrequently. This report serves to highlight the issues surrounding working practices in abattoirs.

Abattoirs↗

Epidemiology of invasive and other pneumococcal disease in children in England and Wales 1996-1998.

UNLABELLED: The results of enhanced national surveillance of pneumococcal disease in children < 15 y of age in England and Wales are reported for the period 1996-1998. Of the 1985 cases of laboratory-confirmed invasive disease (annual incidence 6.6 per 100,000 overall and 39.7 per 100,000 in infants < 1 y of age), 485 (24%) were meningitis (annual incidence of 1.6 per 100,000 overall and 15.7 per 100,000 in infants <1 y of age). Fifty-nine deaths in children with invasive disease were identified-3% of the total reports. Thirty-one different serogroups/types were identified, with organisms in the 7-valent conjugate vaccine responsible for 69% of the infections in children < 5 y of age: this rose to 77% and 82%, respectively, for the 9-and 11-valent vaccines. Resistance to penicillin varied from 2.3% to 6.2% in different years, but erythromycin resistance remained constant at 17%. The vast majority of resistant isolates were in vaccine serotype/groups. Computerized hospital admission records for all children < 15 y of age with a discharge diagnosis code indicating probable pneumococcal disease were also analysed for 1997. The annual incidence for cases with a code specifically mentioning S. pneumoniae was 9.9 per 100,000 compared with 71.2 per 100,000 for lobar pneumonia; the mean duration of stay for both was < 1 wk. The incidence of admission for pneumococcal meningitis (1.9 overall and 19.6 for infants < 1 y of age) was similar to that derived from laboratory reports and resulted in an average duration of stay of 2 wk. CONCLUSION: This surveillance has confirmed the substantial burden of morbidity attributable to pneumococcal disease in British children and the potential public health benefits that could be achieved by the use of pneumococcal conjugate vaccines.

Adolescent↗

Genetic relationships between clinical isolates of Streptococcus pneumoniae, Streptococcus oralis, and Streptococcus mitis: characterization of "Atypical" pneumococci and organisms allied to S. mitis harboring S. pneumoniae virulence factor-encoding genes.

The oral streptococcal group (mitis phylogenetic group) currently consists of nine recognized species, although the group has been traditionally difficult to classify, with frequent changes in nomenclature over the years. The pneumococcus (Streptococcus pneumoniae), an important human pathogen, is traditionally distinguished from the most closely related oral streptococcal species Streptococcus mitis and Streptococcus oralis on the basis of three differentiating characteristics: optochin susceptibility, bile solubility, and agglutination with antipneumococcal polysaccharide capsule antibodies. However, there are many reports in the literature of pneumococci lacking one or more of these defining characteristics. Sometimes called "atypical" pneumococci, these isolates can be the source of considerable confusion in the clinical laboratory. Little is known to date about the genetic relationships of such organisms with classical S. pneumoniae isolates. Here we describe these relationships based on sequence analysis of housekeeping genes in comparison with previously characterized isolates of S. pneumoniae, S. mitis, and S. oralis. While most pneumococci were found to represent a closely related group these studies identified a subgroup of atypical pneumococcal isolates (bile insoluble and/or "acapsular") distinct from, though most closely related to, the "typical" pneumococcal isolates. However, a large proportion of isolates, found to be atypical on the basis of capsule reaction alone, did group with typical pneumococci, suggesting that they have either lost capsule production or represent as-yet-unrecognized capsular types. In contrast to typical S. pneumoniae, isolates phenotypically identified as S. mitis and S. oralis, which included isolates previously characterized in taxonomic studies, were genetically diverse. While most of the S. oralis isolates did fall into a well-separated group, S. mitis isolates did not cluster into a well-separated group. During the course of these studies we also identified a number of potentially important pathogenic isolates, which were frequently associated with respiratory disease, that phenotypically and genetically are most closely related to S. mitis but which harbor genes encoding the virulence determinants pneumolysin and autolysin classically associated with S. pneumoniae.

Bacterial Proteins↗

Use of amplified fragment length polymorphisms for typing Corynebacterium diphtheriae.

Amplified fragment length polymorphism (AFLP) was investigated for the differentiation of Corynebacterium diphtheriae isolates. Analysis using Taxotron revealed 10 distinct AFLP profiles among 57 isolates. Strains with ribotype patterns D1, D4, and D12 could not be distinguished; however, the technique discriminated isolates of ribotype patterns D3, D6, and D7 further. AFLP was rapid, fairly inexpensive, and reproducible and could be used as an alternative to ribotyping.

Corynebacterium diphtheriae↗

Evaluation of serotype prediction by cpsA-cpsB gene polymorphism in Streptococcus pneumoniae.

New pneumococcal conjugate vaccines covering a limited number of serotypes are likely to come into widespread use over the next few years. It is unknown what effect this will have on the relative importance of different serotypes as causes of pneumococcal infection. Hence, it will be important to monitor serotype prevalence before, during, and after the introduction of new vaccines. We have investigated the ability of a PCR method based on polymorphisms in two genes common to the different capsule loci to predict the serotype of 93 clinical isolates of Streptococcus pneumoniae submitted to the Central Public Health Laboratory in 1997. Of 70 isolates with vaccine serotypes, 65 were predicted to belong to the correct serotype; this number was improved to 69 with the inclusion of two additional patterns to the database. Of 23 isolates with other serotypes, 19 were correctly predicted as non-vaccine serotypes, the discrepancy lying with four isolates of 6A (non-vaccine serotype) that were indistinguishable from isolates of 6B (vaccine serotype). In situations in which culture of the organism is not feasible, this method could potentially be applicable directly to clinical specimens and could be a valuable aid to the surveillance of pneumococcal serotypes.

Bacterial Capsules↗

Rapid enzyme immunoassay for determination of toxigenicity among clinical isolates of corynebacteria.

A rapid enzyme immunoassay (EIA) was developed for the phenotypic detection of diphtheria toxin among clinical isolates of corynebacteria. The assay uses equine polyclonal antitoxin as the capture antibody and an alkaline phosphatase-labeled monoclonal antibody, specific for fragment A of the toxin molecule, as the detecting antibody. The assay is rapid, sensitive, and specific: a final result is available within 3 h of colony selection, and the limits of detection are 0.1 ng of pure diphtheria toxin/ml. Toxigenicity could be detected with isolates grown on a diverse range of culture media, including selective agars. Toxin detection using the EIA was compared to that with the Elek test and PCR detection of fragment A of the diphtheria toxin (tox) gene, using 245 isolates of corynebacteria. The results for the EIA were in complete concordance with those of the Elek test: 87 toxigenic and 158 nontoxigenic isolates. Ten of the phenotypically nontoxigenic strains were found to contain fragment A of the tox gene but did not express the toxin protein. These isolates were found to be nontoxigenic in the Vero cell tissue culture cytotoxicity assay and were therefore nontoxigenic for diagnostic purposes. The EIA is a simple rapid phenotypic test which provides a definitive result on toxigenicity within one working day.

Corynebacterium diphtheriae↗

High rate of tetracycline resistance in Streptococcus pyogenes in Iran: an epidemiological study.

Streptococcus pyogenes, a major human pathogen, is still considered susceptible to beta-lactams, but for other relevant antibiotics, highly variable resistance rates have been reported. Since no data were available from Iran, we tested 1,335 throat isolates from two different regions of the country for their antibiotic susceptibilities and, for comparison, a collection of 80 strains isolated from 1989 to 1991. Erythromycin resistance was uncommon (0.6%), whereas an overall high rate of tetracycline resistance was found, increasing between 1989-1991 and 1995-1997 from 23 to 42%. The tetracycline-resistant strains belonged to more than 10 different T types, the majority being types 4, 11, and B3264. By conventional M typing of 406 tetracycline-resistant isolates, more than 20 different M types were found. Approximately 50% of the strains were nontypeable by T agglutination as well as serological M typing; however, by genotyping by a combined PCR-capture-enzyme-linked immunosorbent assay, many of these strains were successfully emm typed. We conclude that the high rate of tetracycline resistance among Iranian S. pyogenes isolates is due to multiclonal dissemination of resistance within the streptococcal population rather than epidemic spread of single clones.

Antigens, Bacterial↗

Study on the use of an enzyme-linked immunosorbent assay in determining human antibodies to diphtheria toxin as compared with a reference toxin neutralization assay.

Serum samples from 156 Greek persons were assessed by an IgG-specific enzyme-linked immunosorbent assay (ELISA) and a reference tissue culture toxin-neutralization (TN) assay for the quantitation of diphtheria toxin antibodies. By the reference method, 7.7% of the persons were susceptible to diphtheria (antitoxin < 0.01 IU/ml), 28.8% had basic protection (antitoxin 0.01-0.09 IU/ml) and 63.5% were fully protective (antitoxin > or = 0.1 IU/ ml), while the corresponding figures were 17.9, 36.5 and 45.5% when they were tested by the immunoassay. None of the samples been susceptible by the TN assay were found to have some protection when tested by ELISA. However, three (6.7%) of the 45 samples showing a basic protection with TN, were fully protective when titrated by the immunoassay. In addition, 31 (31.3%) of the 99 samples been fully protective by the bioassay, were found to be either basically protective or susceptible by means of the ELISA. Overall, validity features of the immunoassay were: sensitivity 68.7%, specificity 94.7%, positive predictive value 95.8% and negative predictive value 63.5%. The ELISA tested in our study could be used to determine diphtheria antitoxin in individuals needed a booster immunization (susceptible or basic protective samples), although it might falsely include in the above categories samples that are within the fully protective levels of antibodies.

Adolescent↗

PCR typing of Corynebacterium diphtheriae by random amplification of polymorphic DNA.

The usefulness of random amplification of polymorphic DNA (RAPD) analysis with Ready-To-Go RAPD beads was investigated for the rapid differentiation of Corynebacterium diphtheriae isolates from Eastern Europe and neighbouring countries. A selection of 45 C. diphtheriae isolates of known origin, biotype, toxigenicity status and ribotype were examined by RAPD. Twenty RAPD profiles (designated Rp1-Rp20) were revealed among the 45 isolates. There was 100% correlation between RAPD profiles and ribotypes. Preliminary studies showed that the use of crude DNA preparations resulted in poor amplification and the patterns were not reproducible. Different thermal cycler models produced different RAPD profiles from the same DNA sample. Reproducibility of the technique was good when the same thermal cycler was used throughout. RAPD proved to be a simple and a rapid method for analysing C. diphtheriae and it is a method which can be used as a potential alternative to ribotyping or as a screening technique during outbreak investigations.

Corynebacterium diphtheriae↗