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Mechanisms of resistance in Salmonella enterica adapted to erythromycin, benzalkonium chloride and triclosan.

The potential for adaptive resistance of S. enterica serovar Enteritidis, Typhimurium and Virchow to increasing sub-lethal concentrations of erythromycin, benzalkonium chloride and triclosan was investigated to identify mechanisms underlying resistance. Permeability changes of the outer membrane, including LPS, cell surface charge, hydrophobicity and the presence of an active efflux in the adapted strain compared with the parent were studied. Examination of the outer membrane and LPS did not reveal any significant changes, although most of the pre-adapted strains were notably less hydrophobic than resistant strains. More than one type of active efflux was identified in all strains investigated, on the basis of restored sensitivity in the presence of the inhibitors reserpine and carbonyl cyanide 3-chlorophenylhydrazone (CCCP). Cell surface hydrophobicity and the presence of active efflux could contribute to the resistance of S. enterica to the antibacterial agents studied here.

Adaptation, Physiological↗

Dendritic cells: vehicles for tolerance induction and prevention of autoimmune diseases.

Adaptive immune responses are orchestrated by specialized professional antigen-presenting cells (APCs), the dendritic cells (DCs), which play crucial roles as initiators and modulators of adaptive immune responses. A main feature of DCs is their phenotypic and functional plasticity. In the absence of any inflammation or pathogenic elements, most DCs in peripheral tissues and lymphoid organs have a resting, immature phenotype characterized by high endocytic capacity and low surface expression of MHC- and costimulatory molecules. However, upon interaction with microbial ligands, pro-inflammatory cytokines or CD40Ligand, DCs rapidly acquire an activated phenotype. These mature DCs have a very efficient T cell-priming ability as a consequence of upregulation of MHC- and costimulatory molecules on their cell surface. For this reason, DC-based vaccines have been used successfully to combat infections and malignancies. Nonetheless, evidence is accumulating that, especially immature, or semi-matured, DCs also have a potent ability to tolerize T cells or prevent undesired immune reactions. Therefore, current and prospective strategies to promote the inherent tolerogenic potential of DCs are a rational approach for the therapy of autoimmune diseases such as rheumatoid arthritis (RA). This review summarizes some aspects of the intriguing ability of DCs to steer the outcome of immunity and their potency to modulate the outcome of various pathological conditions.

Animals↗

Association of NOD1 polymorphisms with atopic eczema and related phenotypes.

BACKGROUND: Interactions with microbial pathogens are crucial for the maturation of the immune system. The nucleotide-binding oligomerization domain protein 1 (NOD1) is a cytosolic receptor sensing a muropeptide found mostly in gram-negative bacterial peptidoglycans. NOD1 is located on chromosome 7p14-p15, a region that has been linked with atopy. Recently, polymorphisms of the closely related NOD2 have been associated with atopy-related traits. OBJECTIVES: Within a large population-based cohort of German adults (n = 1417), a case-control population for atopic eczema (n = 454), and a large cohort of parent-offspring trios for atopic eczema (189 trios), we evaluated 11 NOD1 polymorphisms for associations with atopic phenotypes. Methods Subjects were phenotyped by standardized questionnaires and interviews, skin examination, and serum IgE measurements. Genotyping was performed by using matrix-assisted laser desorption ionization-time of flight mass spectrometry. RESULTS: Analyses revealed significant association of one NOD1 haplotype with atopic eczema in the population-based cohort ( P = .004) and the case-control population ( P = .003). Another NOD1 haplotype was associated with decreased total IgE ( P = .008). In addition, significant associations with total serum IgE levels were observed for polymorphisms rs2907748 ( P = .006), rs2907749 ( P = .012), and rs2075822 ( P = .018). These polymorphisms were significantly associated with atopic eczema and asthma in the family-based association analyses ( P = .001-.043). Seven polymorphisms showed significant transmission distortion for total IgE levels ( P values < .0001-.029). CONCLUSION: These data indicate that genetic variants within NOD1 are important determinants of atopy susceptibility.

Adaptor Proteins, Signal Transducing↗

Toll-like receptor 2 ligands inhibit TH2 responses to mite allergen.

BACKGROUND: There is intense interest in the interaction between microbial compounds and allergy. Although Toll-like receptor (TLR)-2 ligands derived from Gram-positive bacteria alter allergic sensitization in animal models, it is not clear what effect TLR2 ligands have on allergen-specific T-cell memory in human beings. OBJECTIVE: To determine whether in vitro exposure to TLR2 ligands modifies the immune response to house dust mite allergen (HDM). METHODS: Blood mononuclear cells were obtained from individuals both allergic (n = 23) and not allergic (n = 22) to HDM, and stimulated with HDM in the presence or absence of TLR2 ligands. RESULTS: In subjects allergic to HDM, IL-5 and IL-13 responses to HDM were inhibited by heat-killed Staphylococcus aureus, staphylococcal lipoteichoic acid, and the synthetic lipoprotein Pam3CSK4 (P < .005; all stimuli). Although the whole staphylococcal bacteria increased IFN-gamma responses, the purified TLR2 ligands lipoteichoic acid and Pam3CSK4 inhibited HDM-specific IFN-gamma synthesis. In contrast, TLR2 ligands had minimal effects on responses to HDM in subjects without allergy. TLR2 ligands induced upregulation of HLA-DR expression but did not inhibit antigen uptake or processing by antigen-presenting cells. CONCLUSION: Toll-like receptor 2 ligands inhibit allergen-specific T(H)2 responses in sensitized individuals. This effect appears to be mediated by the actions of TLR2 ligands on antigen-presenting cells, and at least for the purified TLR2 ligands does not involve the induction of a strong T(H)1 immune response. CLINICAL IMPLICATIONS: These findings provide an impetus for further preclinical studies examining the potential use of TLR2 ligands in allergic disease.

Adult↗

A newly developed assay for the quantitative determination of antimicrobial (anticyanobacterial) activity of both hydrophilic and lipophilic test compounds without any restriction.

This paper reports about a newly developed assay which enables the user to quantify and compare the antimicrobial (anticyanobacterial) activity of both hydrophilic and lipophilic test compounds without any restriction. The assay is characterised by the application of a test compound solution on a porous matrix (silica gel) in well-defined concentrations per unit area, and by the coating of this matrix by a concentrated suspension of the tested living cyanobacterium (using a spraying or a dipping technique). The organism was only applied after the complete evaporation of the solvent used for preparation of the test compound solution to avert potential influences of this solvent on micro-organisms' viability. Toxic concentrations of a test compound caused a clearly contoured regional damage in the blue-green coloured uniform layer of the cyanobacterial test organism. The resulting regional decolourisation was readily identifiable within a species-dependent short time (e.g. for the species Arthrospira laxissima after 24h). This newly developed assay is applied for a patent in Germany.

Anti-Bacterial Agents↗

Tuning the biological properties of amphipathic alpha-helical antimicrobial peptides: rational use of minimal amino acid substitutions.

In nature, alpha-helical antimicrobial peptides present the small and flexible residue glycine at positions 7 or 14 with a significant frequency. Based on the sequence of the non-proteinogenic alpha-helical model peptide P1(Aib7), with a potent, broad spectrum antimicrobial activity, six peptides were designed by effecting a single amino acid substitution to investigate how tuning the structural characteristics at position 7 could lead to optimization of selectivity without affecting antimicrobial activity against a broad panel of multidrug resistant bacterial and yeast indicator strains. The relationship between structural features (size/hydrophobicity of the side chain as well as conformation and flexibility) and biological activity, in terms of minimum inhibitory concentration, membrane permeabilization kinetics and lysis of red blood cells are discussed. On conversion of the peptide to proteinogenic residues, these principles allowed development of a potent antimicrobial peptide with a reduced cytotoxicity. However, while results suggest that both hydrophobicity of residue 7 and chain flexibility at this position can be modulated to improve selectivity, position 14 is less tolerant of substitutions.

Amino Acid Substitution↗

Enterococcus faecalis GP1764 induces an early differential gene expression in the intestine on key pathways related to cellular immune response and gut barrier function in chickens.

The aim of the present study was to elucidate the mode of action of Enterococcus faecalis GP1764 in improving performance traits during the starter phase by analyzing genome-wide gene expression and its interaction with microbial populations in the intestine of chickens challenged with an NSP-rich diet. At day 7, microbiota populations from ileal and cecal contents and transcriptomics from jejunal and cecal mucosa were analyzed between Control (Ctrl) and Enterococcus faecalis GP1764 (EntF) groups. Results from microbiota analysis demonstrated that EntF shifted &#x3b2;-diversity indices in ileum (neutral (p= 0.006) and phylogenetic (p= 0.006)) and caecum (phylogenetic (p= 0.017)). Transcriptomics revealed 43 differentially expressed genes for EntF vs. Ctrl in the jejunal mucosa. Of these, MHCY-36 (MHC-I-Related), RAG2 and MUC19-like genes were upregulated in EntF vs. Ctrl, protein-coding genes with immunomodulatory capacities as supported by GSEA and Cytoscape-ClueGo pathway analyses. Results suggest an intestinal immunomodulation induced through presentation of B vitamins metabolites, synthetized by EntF, to an undescribed subset of innate-like unconventional T lymphocytes in chickens, similar to MAIT cells in mammals. These cells could contribute to antibacterial responses and repair of damaged barrier tissue after inflammatory processes. The upregulation of the MUC19-like gene expression observed in the jejunal mucosa can protect gut integrity via the promotion of mucus production by goblet cells. Finally, RAG2, involved in V(D)J coding segments recombination in B- and T-cells may provide a greater recognition of foreign invaders, allowing the animals to efficiently fight against pathogenic infections. Collectively, these results suggest an important role of EntF in promoting the capacity of animals to rapidly act against pathogenic challenges, herein, inducing resilience towards dietary ingredients with anti-nutritional activity that impart moderate inflammation in chickens.

Enterococcus faecalis↗

Differential scanning calorimetric study of the effect of the antimicrobial peptide gramicidin S on the thermotropic phase behavior of phosphatidylcholine, phosphatidylethanolamine and phosphatidylglycerol lipid bilayer membranes.

We have studied the effects of the antimicrobial peptide gramicidin S (GS) on the thermotropic phase behavior of large multilamellar vesicles of dimyristoylphosphatidylcholine (DMPC), dimyristoylphosphatidylethanolamine (DMPE) and dimyristoyl phosphatidylglycerol (DMPG) by high-sensitivity differential scanning calorimetry. We find that the effect of GS on the lamellar gel to liquid-crystalline phase transition of these phospholipids varies markedly with the structure and charge of their polar headgroups. Specifically, the presence of even large quantities of GS has essentially no effect on the main phase transition of zwitterionic DMPE vesicles, even after repeating cycling through the phase transition, unless these vesicles are exposed to high temperatures, after which a small reduction in the temperature, enthalpy and cooperativity of the gel to liquid-crystalline phase transitions is observed. Similarly, even large amounts of GS produce similar modest decreases in the temperature, enthalpy and cooperativity of the main phase transition of DMPC vesicles, although the pretransition is abolished at low peptide concentrations. However, exposure to high temperatures is not required for these effects of GS on DMPC bilayers to be manifested. In contrast, GS has a much greater effect on the thermotropic phase behavior of anionic DMPG vesicles, substantially reducing the temperature, enthalpy and cooperativity of the main phase transition at higher peptide concentrations, and abolishing the pretransition at lower peptide concentrations as compared to DMPC. Moreover, the relatively larger effects of GS on the thermotropic phase behavior of DMPG vesicles are also manifest without cycling through the phase transition or exposure to high temperatures. Furthermore, the addition of GS to DMPG vesicles protects the phospholipid molecules from the chemical hydrolysis induced by their repeated exposure to high temperatures. These results indicate that GS interacts more strongly with anionic than with zwitterionic phospholipid bilayers, probably because of the more favorable net attractive electrostatic interactions between the positively charged peptide and the negatively charged polar headgroup in such systems. Moreover, at comparable reduced temperatures, GS appears to interact more strongly with zwitterionic DMPC than with zwitterionic DMPE bilayers, probably because of the more fluid character of the former system. In addition, the general effects of GS on the thermotropic phase behavior of zwitterionic and anionic phospholipids suggest that it is located at the polar/apolar interface of liquid-crystalline bilayers, where it interacts primarily with the polar headgroup and glycerol-backbone regions of the phospholipid molecules and only secondarily with the lipid hydrocarbon chains. Finally, the considerable lipid specificity of GS interactions with phospholipid bilayers may prove useful in the design of peptide analogs with stronger interactions with microbial as opposed to eucaryotic membrane lipids.

Anti-Infective Agents↗

On the relationship between the substitution pattern of thiobenzanilides and their antimycobacterial activity.

The goal of this work was to shed more light on a preliminary finding about the relationship between the substitution in the thioacyl part of thiobenzanilides and their antituberculous effect. Thus, we prepared a set of 14 derivatives, out of which eight had not yet been reported, and the compounds were evaluated for antimycobacterial activity on a panel of four Mycobacteria species, including Mycobacterium tuberculosis CNCTC My 331/88, Mycobacterium kansasii CNCTC My 235/80, Mycobacterium avium CNCTC My 330/88 and M. kansasii 6509/96. While the contribution of the substituents with differing electronic and lipophilicity characteristics in position 3 to the antituberculous activity was negligible, we found that unsubstituted position 4 in the thioacyl part appears to be a prerequisite for a thiobenzanilide derivative to possess appreciable biological activity.

Anilides↗

Sexually transmitted arthritis syndromes.

Sexually transmitted infections may provoke a wide variety of rheumatic lesions. Disseminated N. gonorrhoeae infection leads to septic arthritis, which may be rapidly destructive but which responds promptly to appropriate antibiotic therapy. In contrast, both gonococcal and nongonococcal infections may lead to aseptic "reactive" arthritis or Reiter's syndrome. Inheritance of HLA B27 confers a relative risk of 30 to 50 times for the development of this condition. The demonstration of C. trachomatis antigen in joint material from a minority of patients suggests that direct interaction between microbial components and class I HLA antigens in the joint may be central to the pathogenesis of this disease. Arthralgia and arthritis occur in up to 50% of individuals in the prodrome of hepatitis B infection. Joint symptoms may be accompanied by urticarial or cutaneous vasculitic lesions, especially on the legs; both features resolve with the onset of jaundice. Hepatitis B infection is also a major cause of necrotizing vasculitis, which may or may not be associated with overt hepatitis. Seronegative arthritis, including Reiter's syndrome, psoriatic arthritis, and undifferentiated arthritis, a Sjögren's-like syndrome, vasculitis, and myopathies have been described in association with HIV infection. It is clear that synovitis occurs in those patients despite the fact that HIV is present in immune cells within the joint during inflammatory arthritis and that both antigen presentation and lymphocyte responsiveness within the joint are impaired. Nevertheless, synovitis may occur in the presence of marked CD4-positive lymphocyte depletion. Rheumatic syndromes, including arthralgia, inflammatory arthritis, and neuropathic arthritis, may occur during any stage of congenital or acquired syphilis. Syphilitic synovitis responds well to antibiotic therapy, but neuropathic lesions cannot be treated effectively. Septic arthritis has rarely been described as a complication of disseminated Mycoplasma or Urea-plasma infections, and joint lesions sometimes associated with erythema nodosum have also been reported in lymphogranuloma venereum and granuloma inguinale.

Arthritis, Infectious↗

Characterization of Siglec-5 (CD170) expression and functional activity of anti-Siglec-5 antibodies on human phagocytes.

OBJECTIVE: The Siglec family of proteins consists of at least 10 members with immunoglobulin and lectin domains and with similar sialic acid-binding properties. Many Siglec family members are expressed on hematopoietic cells and are involved in cell/cell interactions. Some family members are suspected of regulating cellular processes through specific signaling pathways. Monoclonal antibodies were generated against specific epitopes of Siglec-5 (CD170) and were used to determine expression of Siglec-5 on normal blood and marrow cells and cell lines. The antibodies also were used to elucidate functional activity for Siglec-5 on blood neutrophils. METHODS: Flow cytometry and ELISA were used to determine the specificity of the monoclonal antibodies for Siglec-5 and to determine expression patterns. Chemiluminescence assays were employed to measure the oxidative burst activity of whole blood or purified neutrophils following treatment with the anti-Siglec-5 antibodies. RESULTS: Cell surface expression analysis demonstrated that the protein was expressed on gated human neutrophil and monocyte populations, both in the blood and bone marrow. Expression on neutrophils was enhanced by one-hour treatment with fMLP or TNF-alpha. Epitope-specific anti-Siglec-5 monoclonal antibodies did not directly activate human neutrophils; however, antibody binding augmented neutrophil oxidative burst activity as determined by fMLP-induced luminol-dependent chemiluminescence. CONCLUSION: Data demonstrating expression of Siglec-5 on cells of the myelomonocytic lineage and alteration of its expression by inflammatory stimuli suggest a role for this protein in cell/cell interactions following microbial exposure.

Animals↗

Probing molecular interactions and mechanical properties of microbial cell surfaces by atomic force microscopy.

Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of their functions in the natural environment and to efficiently exploit them in biotechnological processes. In this paper, we present force-distance curves recorded, by atomic force microscopy (AFM) in aqueous solutions, on various microbial samples: reconstituted S-layers, whole fungal spores and several bacterial strains. The approach and retraction curves exhibited important differences--depending on the type of microorganism, on the physiological state (dormancy versus germination) and on the environmental conditions (ionic strength)--which were shown to reflect differences in long-range surface forces, adhesion forces and mechanical properties. These data illustrate the great potential of AFM force measurements to elucidate the physical properties of microbial cells and to understand, at the molecular level, biointerfacial phenomena such as cell adhesion and cell aggregation.

Cell Adhesion↗

Permeabilizing effects of sub-inhibitory concentrations of microcystin on the growth of Escherichia coli.

Microcystin, a cyanotoxin produced by Microcystis aeruginosa, lacks potent antibacterial activity. When tested in combination, in vitro, inhibitory values for a range of hydrophobic antibiotics were significantly reduced in the presence of at least 1/20 x the minimum inhibitory concentration of microcystin. The degree of inhibition was equivalent to that of a well-characterised permeabilizing agent, polymyxin B nonapeptide. The permeabilizing ability of sub-inhibitory concentrations of microcystin to affect the envelope of Escherichia coli was demonstrated by a rapid and sustained reduction in absorbance values of lysozyme-treated cells and by enhanced uptake of crystal violet in microcystin-treated cultures. Direct effects of appropriate concentrations of microcystin on the integrity of bacterial outer and inner membranes were measured by release of specific enzyme markers. Although the exact mechanism for permeabilizing E. coli with microcystin has not been elucidated, the effects were consistent with permeability changes to the enterobacterial outer membrane caused by polymyxin B nonapeptide.

Anti-Bacterial Agents↗

Effect of bismuth subcarbonate against Campylobacter pylori: do citrate ions improve antibacterial activity?

The minimum inhibitory concentrations of three bismuth subcarbonate preparations: 1. bismuth subcarbonate, 2. a mixture of 50% bismuth subcarbonate and 50% citric acid, 3. a mixture of 50% bismuth subcarbonate and 50% potassium citrate were assayed against 30 strains of Campylobacter pylori employing the agar dilution method. Bismuth subcarbonate alone exhibited an MIC50 of 2 mg/l and was more effective than the two combinations (MIC50 4 mg/l). It is concluded that the addition of citrate ions does not improve antibacterial activity.

Anti-Bacterial Agents↗

The role of ABO blood groups in infections induced by Staphylococcus saprophyticus and Pseudomonas aeruginosa.

Recently, considerable evidence has been accumulated showing that carbohydrate-containing blood group substances represent prime candidates for the specific interaction with microbial surface lectins in infectious diseases. Accordingly, clinical studies have proved that urinary tract infections by Staphylococcus saprophyticus and outer ear canal infections by Pseudomonas aeruginosa can be positively correlated with the patients blood group. Apparently, the blood group antigens (terminal carbohydrates) represent receptors recognized by S. saprophyticus and P. aeruginosa surface lectins.

ABO Blood-Group System↗

High-density, microsphere-based fiber optic DNA microarrays.

A high-density fiber optic DNA microarray has been developed consisting of oligonucleotide-functionalized, 3.1-microm-diameter microspheres randomly distributed on the etched face of an imaging fiber bundle. The fiber bundles are comprised of 6000-50000 fused optical fibers and each fiber terminates with an etched well. The microwell array is capable of housing complementary-sized microspheres, each containing thousands of copies of a unique oligonucleotide probe sequence. The array fabrication process results in random microsphere placement. Determining the position of microspheres in the random array requires an optical encoding scheme. This array platform provides many advantages over other array formats. The microsphere-stock suspension concentration added to the etched fiber can be controlled to provide inherent sensor redundancy. Examining identical microspheres has a beneficial effect on the signal-to-noise ratio. As other sequences of interest are discovered, new microsphere sensing elements can be added to existing microsphere pools and new arrays can be fabricated incorporating the new sequences without altering the existing detection capabilities. These microarrays contain the smallest feature sizes (3 microm) of any DNA array, allowing interrogation of extremely small sample volumes. Reducing the feature size results in higher local target molecule concentrations, creating rapid and highly sensitive assays. The microsphere array platform is also flexible in its applications; research has included DNA-protein interaction profiles, microbial strain differentiation, and non-labeled target interrogation with molecular beacons. Fiber optic microsphere-based DNA microarrays have a simple fabrication protocol enabling their expansion into other applications, such as single cell-based assays.

Equipment Design↗

Antibacterial activity of G6-quaternary ammonium derivatives of a lipophilic vancomycin analogue.

A series of G6-amino derivatives of a lipophilic vancomycin analogue was prepared. Antibacterial activity of the analogues was inversely proportional to the degree of substitution of the G6-nitrogen. The fully substituted (quaternary) analogues were essentially inactive against vanA phenotype VREF strains but retained substantial activity against other bacteria, a profile reminiscent of teicoplanin.

Anti-Bacterial Agents↗

Oxime derivatives of sordaricin as potent antifungal agents.

Oxime derivatives of the sordarin aglycone have been identified as potent antifungal agents. The in vitro spectrum of activity includes coverage against Candida albicans and Candida glabrata with MICs as low as 0.06 microg/mL. The antifungal activity was established to be exquisitely sensitive to the spatial orientation of the lipophilic side chains.

Antifungal Agents↗