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Biomedical subjects

G Peters

Publications and source records attributed to G Peters.

At least 55 records · Page 3Linked to original sources

Low proliferative rate of invasive node-negative breast cancer predicts for a favorable outcome: a prospective evaluation of 669 patients.

This study was designed to compare outcome in terms of disease-free survival (DFS) in women with histologically negative axillary lymph nodes and documented low proliferative rate cancer to other well-defined prognostic factors including type of adjuvant treatment. Between 1988 and 1998, we studied 669 patients with invasive node-negative breast cancer up to 5 cm in size and low proliferative rate measured by flow cytometry to determine S-phase fraction (SPF) or by histochemistry (Ki67/MIB1). At a median follow-up of 53 months, 5-year DFS for the entire group was 94% and did not differ significantly by type of systemic adjuvant treatment: none (133 patients, 95% DFS), tamoxifen (441 patients, 94% DFS), or chemotherapy with doxorubicin and cyclophosphamide (95 patients, 92% DFS). In a multivariate prognostic factor analysis, only tumor size was significant; 5-year DFS was 96% for T1N0 cancer versus 89% for T2N0 cancer (P = 0.01). We have prospectively confirmed that a low rate of proliferation as measured by SPF or MIB1 determination confers an excellent prognosis in invasive node-negative breast cancer up to 5 cm in size, regardless of adjuvant treatment.

Adult↗

Coagulase-negative staphylococci. Pathogens have major role in nosocomial infections.

Coagulase-negative staphylococci live naturally on the skin and mucous membranes of humans and are therefore often found in clinical specimens. Distinguishing clinically significant, pathogenic strains from contaminant strains is one of the major challenges facing clinical microbiology laboratories. S epidermidis and other novobiocin-susceptible coagulase-negative staphylococci have emerged as a major cause of nosocomial infections, particularly of nosocomial bacteremia in immunocompromised patients. S epidermidis also is common in injecting drug users, who are particularly susceptible to right-sided endocarditis, and--most important--in patients with such indwelling foreign bodies as intravenous catheters. Depending on the kind of device and its insertion site, different infection syndromes generate a variety of clinical presentations. In these patients, the host defense mechanisms often seem unable to handle the infection and, in particular, to eliminate the staphylococci from the infected device because of a biofilm on the foreign body surface. S saprophyticus, the most commonly isolated bacterium of the novobiocin-resistant coagulase-negative staphylococci, is a common pathogen of the urogenital tract; it generally infects immunocompetent patients, particularly young, sexually active men and women.

Coagulase↗

Protein A is the von Willebrand factor binding protein on Staphylococcus aureus.

Endovascular infection is a highly critical complication of invasive Staphylococcus aureus disease. For colonization, staphylococci must first adhere to adhesive endovascular foci. Von Willebrand factor (vWF) is a large, multimeric glycoprotein mediating platelet adhesion at sites of endothelial damage. Earlier it was demonstrated that vWF binds to and promotes the surface adhesion of S. aureus, prompting this effort to identify the vWF adhesin. In Western ligand assays of S. aureus lysates, staphylococcal protein A (SPA) was recognized by purified vWF. Surface plasmon resonance demonstrated the binding of soluble vWF to immobilized recombinant protein A with a K(d) of 1.49 x 10(-8) mol/L. Using flow cytometry, the binding of fluorescein isothiocyanate-labeled vWF to S. aureus was found to be saturable and inhibitable by unlabeled vWF, antiprotein-A antibodies, or IgG. Isogenic Deltaspa::Tc(r) mutants were constructed by the insertion of a tetracycline resistance cassette into spa using allelic replacement, and it exhibited decreased binding of soluble vWF and decreased adhesion to vWF-adsorbed surfaces. The interaction was restored on complementation of the mutants with spa-containing plasmid pSPA7235. In conclusion, protein A confers interaction of S. aureus with soluble and immobilized vWF in a newly discovered function characterizing protein A as a novel member of the staphylococcal surface protein adhesin superfamily and suggesting its potential role in the pathogenesis of endovascular staphylococcal disease.

Bacterial Adhesion↗

Alternative product of the p16/CKDN2A locus connects the Rb and p53 tumor suppressors.

Two distinct products are specified by the CDKN2A locus, the p16INK4a cyclin dependent kinase inhibitor and a protein termed ARF. ARF has been shown to bind to the Mdm2-p53 complex, resulting in stabilisation of both proteins, and a feedback loop exists through which ARF levels are negatively regulated by p53. Significantly, ARF expression is positively regulated by members of the E2F family of transcription factors. This provides a link between the Rb and p53 pathways and a mechanism whereby inactivation of Rb and release of E2F will lead to the stabilisation and functional activation of p53. The alternative exon encoding the functional amino terminal portion of ARF presumably represents an independent gene that has become co-localized with p16INK4a in order to exploit a common regulatory mechanism or purpose.

Alternative Splicing↗

Distribution of macrolide-resistance genes in Staphylococcus aureus blood-culture isolates from fifteen German university hospitals. M.A.R.S. Study Group. Multicentre Study on Antibiotic Resistance in Staphylococci.

The purpose of the study was to analyze the distribution of the macrolide-resistance genes in 134 erythromycin-resistant Staphylococcus aureus blood-culture isolates collected at 15 German university hospitals. The most prevalent resistance gene was ermC (68/134; 50.7%), followed by ermA (52/134; 38.8%), ereB (10/134; 7.5%), and mrsA/msrB (4/134; 6%). The least common genes were ermB (3/134; 2.2%) and ereA (1/134; 0.7%). Overall, resistance to erythromycin was predominantly due to the presence of two erm genes, although with different distributions, depending on the methicillin-resistance pattern.

Anti-Bacterial Agents↗

Two p16 (CDKN2A) germline mutations in 30 Israeli melanoma families.

Germline mutations in the p16 (CDKN2A) tumour suppressor gene have been linked to inherited predisposition to malignant melanoma (MM). Variable frequencies of p16 germline mutations were reported in different collections of melanoma families but it can be as high as 50%. Here we describe the results of p16 mutation screening in 30 melanoma kindreds in Israel. The entire coding region of the p16 gene, including exons 1, 2 and 3, flanking exon/intron junctions, and a portion of the 3' untranslated (UTR) region of the gene were examined by single-stranded conformation polymorphism (SSCP) analysis and direct sequencing. Two p16 germline mutations were identified: G101W, which has been previously observed in a number of melanoma kindreds, and G122V, a novel missense mutation. Thus, the frequency of mutations identified in this collection of Israeli families was 7%. Functional analysis indicated that the novel G122V variant retained some capacity to interact with cyclin dependent kinases (CDKs) in vitro, yet it was significantly impaired in its ability to cause a G1 cell cycle arrest in human diploid fibroblasts. This partial loss of function is consistent with the predicted impact of G122V substitution on the 3-dimensional structure of the p16 protein.

Adolescent↗

The current scope and future direction of perioperative nursing practice in Victoria, Australia.

The current scope and future direction of perioperative nursing practice in Victoria, Australia Unlike some overseas countries, perioperative nursing roles in Australia are largely undeveloped, and very little research has explored the opinions of perioperative nurses regarding the development of their specialty. This study was undertaken to identify the current scope, possible future directions, and the barriers to developing perioperative nursing practice in the state of Victoria (Australia). The study design was descriptive and utilized survey methodology. An instrument was constructed by the researcher for the specific purposes of the study, and comprised three stages of development: questionnaire development; validation by a panel of experts; and a pilot study. The questionnaire was sent randomly to selected perioperative nurses (n=224) and a response rate of 79% (n=176) was obtained. Data were analysed using the Statistical Package for the Social Sciences (SPSS). Descriptive statistics were used to summarize data, and independent sample t-tests, one-way ANOVA and Wilcoxon signed rank tests were used to test differences between groups. For the purpose of data reduction factor analysis was undertaken. The findings of the study indicated that the perioperative nursing model in its espoused form is not being practised, but a large majority of participants believe that perioperative nursing practice should not be restricted to the intraoperative phase of the perioperative model. Expanded rather than extended activities and functions were perceived as more important for development of the specialty, and perceived barriers to advanced perioperative nursing practice centred predominantly on the current application of the perioperative model. Recommendations include refinement of the perioperative nursing model to reflect changes in the delivery of healthcare, addressing issues of cost associated with further education, and undertaking interpretive research to provide more detailed information on the possible future direction for perioperative nursing.

Adult↗

Use of scanning electron microscopy to investigate the prophylactic efficacy of rifampin-impregnated CSF shunt catheters.

Infection continues to be one of the major complications of cerebrospinal fluid (CSF) shunting procedures, and is caused mainly by skin-derived bacteria. Production of an extracellular biofilm plays an important role in the pathogenesis of shunt-associated infections by protecting bacteria from immune mechanisms and antibiotics. So far, removal of the original shunt and implantation of a new shunting device has been the only successful treatment for most patients. As an alternative strategy to prevent CSF infections, a rifampin-impregnated silicone catheter was designed to provide high initial and long-lasting (>60 days) release of bactericidal drug. To investigate the pathophysiological mechanism of its function, this new device was investigated both in vitro and in a rodent model of CSF infection by scanning electron microscopy (SEM) and bacterial culture. Staphylococcus epidermidis (10(8) cfu/ml) and S. aureus (10(4) cfu/ml) served as test strains. SEM demonstrated that, in contrast to the unloaded catheters, initial bacterial adherence on the catheter surface could be reduced to a few single cells, which did not show visible signs of proliferation. Bacterial cultures obtained simultaneously were all sterile, showing that adherent bacteria were killed immediately by the rifampin released from the catheter. Although rifampin incorporation into silicone polymers was not able to prevent initial bacterial adhesion completely, subsequent colonisation could be prevented.

Animals↗

Molecular genotyping of Candida species with special respect to Candida (Torulopsis) glabrata strains by arbitrarily primed PCR.

A set of 46 epidemiologically related or unrelated Candida (Torulopsis) glabrata isolates from four different medical centres in Germany and Hungary, and the type strain of this species, were genetically typed by arbitrarily primed PCR (AP-PCR). The resulting band patterns of C. glabrata strains were compared with those of other species of the genus Candida including C. albicans, C. guilliermondii, C. kefyr, C. parapsilosis, C. tropicalis and C. krusei. After preliminary trials of various reaction parameters and control experiments to test the reproducibility of this method, it was found that consistently reproducible amplification patterns were obtained only when rigorously optimised and standardised reaction conditions were employed. Discriminatory abilities were studied with 29 generated 10-mer oligonucleotides of different G+C content. Typing of clinical isolates with the optimised AP-PCR protocol was then performed with the primer 50-1, with a G+C content of 50%. Sufficiently discriminatory polymorphisms were observed among the band patterns of the Candida species included. The gel electrophoresis patterns of each species showed an adequate similarity. Variations in minor bands were characteristic for comparison at the isolate level. Only three AP-PCR genotypes were identified among the clinical isolates of C. glabrata tested. Two of these genotypes were closely related and appeared to be widespread within German and Hungarian isolates. The third genotype of C. glabrata showed a distinct band pattern. With optimised, validated and standardised assay conditions, the feasibility, sensitivity and rapidity of AP-PCR may offer a discriminatory method for genotyping of yeasts in epidemiological studies, as well as in the control of nosocomial infections.

Candida↗

Bactericidal effect of extracorporeal shock waves on Staphylococcus aureus.

Despite considerable knowledge about the effects of shock waves on eukaryotic soft tissues, no data are available concerning their effect on prokaryotic micro-organisms. In vitro studies on the bactericidal effect of extracorporeal shock waves on staphylococci were performed with energy levels that are standard for the disintegration of calculi. Suspensions containing 10(4)-10(5) cfu of Staphylococcus aureus/ml were sealed in plastic tubes and exposed to shock waves, resulting in a mean decrease of 3.1 log(10). Whereas impulse rates of > or =350 resulted in a decrease of cfu/ml equalling the detection limit, lower numbers of impulses did not result in an appreciable bactericidal effect. The bactericidal effect of extracorporeal shock waves might provide the basis for the development of novel therapeutic strategies for bacterial infections.

Lithotripsy↗

Heterologously expressed Staphylococcus aureus fibronectin-binding proteins are sufficient for invasion of host cells.

Staphylococcus aureus invasion of mammalian cells, including epithelial, endothelial, and fibroblastic cells, critically depends on fibronectin bridging between S. aureus fibronectin-binding proteins (FnBPs) and the host fibronectin receptor integrin alpha(5)beta(1) (B. Sinha et al., Cell. Microbiol. 1:101-117, 1999). However, it is unknown whether this mechanism is sufficient for S. aureus invasion. To address this question, various S. aureus adhesins (FnBPA, FnBPB, and clumping factor [ClfA]) were expressed in Staphylococcus carnosus and Lactococcus lactis subsp. cremoris. Both noninvasive gram-positive microorganisms are genetically distinct from S. aureus, lack any known S. aureus surface protein, and do not bind fibronectin. Transformants of S. carnosus and L. lactis harboring plasmids coding for various S. aureus surface proteins (FnBPA, FnBPB, and ClfA) functionally expressed adhesins (as determined by bacterial clumping in plasma, specific latex agglutination, Western ligand blotting, and binding to immobilized and soluble fibronectin). FnBPA or FnBPB but not of ClfA conferred invasiveness to S. carnosus and L. lactis. Invasion of 293 cells by transformants was comparable to that of strongly invasive S. aureus strain Cowan 1. Binding of soluble and immobilized fibronectin paralleled invasiveness, demonstrating that the amount of accessible surface FnBPs is rate limiting. Thus, S. aureus FnBPs confer invasiveness to noninvasive, apathogenic gram-positive cocci. Furthermore, FnBP-coated polystyrene beads were internalized by 293 cells, demonstrating that FnBPs are sufficient for invasion of host cells without the need for (S. aureus-specific) coreceptors.

Adhesins, Bacterial↗

Staphylococcus aureus RN6390 replicates and induces apoptosis in a pulmonary epithelial cell line.

Staphylococcus aureus frequently colonizes the airways of patients with compromised airway defenses (e.g., cystic fibrosis [CF] patients) for extended periods. Persistent and relapsing infections may be related to live S. aureus bacteria actively residing inside epithelial cells. In this study, we infected a respiratory epithelial cell line, which was derived from a CF patient, with S. aureus RN6390. Internalization of S. aureus was found to be time and dose dependent and could be blocked by cytochalasin D. Transmission electron microscopy revealed that internalized bacteria resided within endocytic vacuoles without any evidence of lysosomal fusion in a 24-h period. The results of internalization experiments and time-lapse fluorescence microscopy of epithelial cells infected with green fluorescent S. aureus indicate that, after an initial lag period of 7 to 9 h, intracellular bacteria began to replicate, with three to five divisions in a 24-h period, leading to apoptosis of infected cells. Induction of apoptosis required bacterial internalization and is associated with intracellular replication. The slow and gradual replication of S. aureus inside epithelial cells hints at the role of host factors or signals in bacterial growth and further suggests possible cross talk between host cells and S. aureus.

Apoptosis↗

Molecular characterization of the vanD gene cluster and a novel insertion element in a vancomycin-resistant enterococcus isolated in Canada.

A single vanD-containing Enterococcus faecium strain (N97-330) was isolated in Canada. The vanD-containing region was cloned and sequenced. Although the proteins have more than 96% identity to a previously described vanD region in BM4339, the vanS(D) gene contains a frameshift mutation that leads to a predicted truncated protein. Furthermore, sequence analysis of the ddl gene revealed the presence of an IS982-like element (ISEfm1) which interrupted the D-Ala-D-Ala ligase. This suggested the constitutive expression of the vanD operon, which was confirmed. Pulsed-field gel electrophoresis fingerprinting demonstrated that BM4339 was not related to N97-330 (>15 band differences). Both strains contained multiple copies of the IS982-like element.

Amino Acid Sequence↗

Nationwide German multicenter study on prevalence of antibiotic resistance in staphylococcal bloodstream isolates and comparative in vitro activities of quinupristin-dalfopristin.

Antibiotic-resistant gram-positive bacteria have become an increasing problem in the last two decades. In order to evaluate the prevalence of antibiotic resistance in staphylococcal bloodstream isolates in Germany, 2,042 staphylococci collected in 21 tertiary-care hospitals were investigated during a 3-year period (March 1996 to March 1999). Altogether, 1,448 S. aureus isolates and 594 coagulase-negative staphylococci (CoNS) that comprised 13 different species were included. Furthermore, the antistaphylococcal activities of quinupristin-dalfopristin were compared with those of eight other compounds by the broth microdilution method. The rates of oxacillin resistance in Staphylococcus aureus, S. epidermidis, S. haemolyticus, and other CoNS were 13.5, 69, 90, and 34%, respectively. In oxacillin-resistant strains high rates of resistance (up to 100%) to erythromycin, clindamycin, ciprofloxacin, and gentamicin were also observed. However, no strain appeared to be resistant to vancomycin or quinupristin-dalfopristin. The streptogramin combination exhibited excellent in vitro activity against all staphylococcal species tested, regardless of the patterns of resistance to other drug classes. In terms of MICs at which 90% of the isolates are inhibited, quinupristin-dalfopristin was 2 times more active against S. aureus isolates, 4 to 16 times more active against S. haemolyticus, and 8 to 32 times more active against S. epidermidis than vancomycin or teicoplanin.

Anti-Bacterial Agents↗

Small colony variants of Staphylococci: a link to persistent infections.

In prospective studies, Staphylococcus aureus small-colony variants (SCVs) have been linked to persistent and recurrent infections. SCVs are a naturally occurring subpopulation often defective in electron transport which may be identified in the microbiological laboratory as nonpigmented, nonhemolytic, slow-growing pinpoint colonies after incubation on rabbit blood agar. In addition, the often relatively unstable SCVs demonstrate a number of other characteristics that are atypical for S. aureus including reduced alpha-toxin production and delayed coagulase activity. A site-directed hemB mutant with a stable SCV phenotype provided strong evidence for the link between these electron transport defective strains and persistent infections. The hemB mutant was phagocytized by cultured endothelial cells, but did not lyse these cells, because the mutant produced very little alpha-toxin. Thus, SCVs can hide within the host cell, then revert to the highly virulent rapidly growing form and lyse the host cell, once the host immune response has abated and antibiotic therapy is completed. The intracellular position shields SCVs from host defenses and decreases exposure to antibiotics. This review discusses what is known of the biology of SCVs and describes the recovery and significance of Staphylococcus SCVs in clinical specimen.

Animals↗

NH2-terminal cleavage of xenopus fibroblast growth factor 3 is necessary for optimal biological activity and receptor binding.

Fibroblast growth factor 3 (FGF3) was originally identified as the mouse proto-oncogene Int-2, which is activated by proviral insertion in tumors induced by mouse mammary tumor virus. To facilitate the biological characterization of the ligand, we have analyzed its homologue in Xenopus laevis, XFGF3. Here we confirm that the X. laevis genome contains two distinct FGF3 alleles, neither of which is capable of encoding the NH2-terminally extended forms specified by the mouse and human FGF3 genes. Unlike the mammalian proteins, XFGF3 is efficiently secreted as a Mr 31,000 glycoprotein, gp31, which undergoes proteolytic cleavage to produce an NH2-terminally truncated product, gp27. Processing removes a segment of 18 amino acids immediately distal to the signal peptide that is not present in the mammalian homologues. By inserting an epitope-tag adjacent to the cleavage site, we show that a substantial amount of the gp27 is generated intracellularly, although processing can also occur in the extracellular matrix. Two residues are also removed from the COOH terminus. To compare the biological properties of the different forms, cDNAs were constructed that selectively give rise to the larger, gp31, or smaller, gp27, forms of XFGF3. As judged by their ability to cause morphological transformation of NIH3T3 cells, their mitogenicity on specific cell types, and their affinity for the IIIb and IIIc isoforms of Xenopus FGF receptors, gp27 has a much higher biological activity than gp31. Sequence comparison revealed an intriguing similar cleavage motif immediately downstream of the signal peptide cleavage site in the NH2-terminus of mouse and human FGF3. Analysis of secreted mutant mouse FGF3 confirmed an additional NH2-terminal processing at the corresponding sequence motif. NH2-terminal trimming of Xenopus and mammalian FGF3s may therefore be a prerequisite of optimal biological activity.

Alleles↗