Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Potential pathogens”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 973 records · Page 54Linked to original sources

Super-infection by Bacillus thuringiensis H34 or 3a3b can lead to death in mice infected with the influenza A virus.

Bacterial super-infections are the main cause of complication and mortality after influenza virus (IAV) infection. Since Bacillus thuringiensis (Bt) is considered non-pathogenic for humans and is widely sprayed in urban areas, the aim of this work was to evaluate the potential pathogenicity of a combined infection Bt-IAV in a mouse model of pneumonia. Bacteria used for super-infections were Bt serotype H34 isolated from human infection and the insecticidal strain 3a3b obtained from a commercial source. Virus strain was A/Scotland/20/74 (H3N2) adapted to BALB/c mice by serial lung passage. Combined infection with 4% of the viral lethal dose 50% (LD(50)) and 10(2) spores of Bt H34 killed 40% of the mice. Mortality rates increased up to 55% and 100% when combined infections were done with respectively 10(4) and 10(7) spores. The insecticidal strain Bt 3a3b was less pathogenic than Bt H34. A dose of 10(4) spores associated with 4% of IAV LD(50) killed 50% of the mice. This inoculum must be compared with the doses usually sprayed in agriculture: 10(11) spores m(-2). Total protection against super-infection was obtained when mice were treated with amantadine. Even if only a few cases of Bt human infection have been reported, these results suggest a possible risk for workers spraying Bt-based biopesticides during flu outbreaks.

Administration, Oral↗

First reported case of Aspergillus granulosus infection in a cardiac transplant patient.

We report a case of disseminated infection with Aspergillus granulosus in a cardiac transplant recipient on immunosuppressive therapy. This is the first reported case in which this organism has been described as a pathogen. This organism bears morphological features different from those of more common Aspergillus species and should be considered a potential pathogen in immunocompromised patients.

Aspergillosis↗

Population patterns and antimicrobial resistance of Aeromonas in urban playa lakes.

Bacteria belonging to the genus Aeromonas are indigenous to aquatic environments. Once regarded as unimportant human pathogens, reports of opportunistic infections caused by these organisms have appeared increasingly in the medical literature. To estimate the potential for human infection by Aeromonas where limited water resources are being used intensively, we studied the spatial and temporal variation and incidence of antimicrobial resistance among environmental isolates of Aeromonas from two urban playa lakes in Lubbock, Texas. Aeromonas population densities varied seasonally, with the highest densities occurring from mid-April to late October. The greatest range of densities was 100-fold, from 2.50 to 255.17 colony-forming units per 0.1 mL of water sample. Densities also varied with water depth, although the variation did not display a consistent pattern. One hundred fifty-one Aeromonas isolates were divided into 10 species or subspecies groups by using the BIOLOG identification system. Nine isolates displayed resistance to co-trimoxazole, tetracycline, and cefuroxime, and none was resistant to more than one of these antimicrobial agents. In summary, the results of this study showed that the densities of Aeromonas peak in the late spring and again in late summer, times when human activity around the playa lakes is also high. Thus, we infer that human exposure to these potential pathogens varies seasonally. Compared to other published studies, the incidence of antimicrobial-resistant Aeromonas is relatively low in urban playa lakes in Lubbock, Texas. Nevertheless, resistant organisms were detected.

Aeromonas↗

Antibacterial activities of peptides from the water-soluble extracts of Italian cheese varieties.

Water-soluble extracts of 9 Italian cheese varieties that differed mainly for type of cheese milk, starter, technology, and time of ripening were fractionated by reversed-phase fast protein liquid chromatography, and the antimicrobial activity of each fraction was first assayed toward Lactobacillus sakei A15 by well-diffusion assay. Active fractions were further analyzed by HPLC coupled to electrospray ionization-ion trap mass spectrometry, and peptide sequences were identified by comparison with a proteomic database. Parmigiano Reggiano, Fossa, and Gorgonzola water-soluble extracts did not show antibacterial peptides. Fractions of Pecorino Romano, Canestrato Pugliese, Crescenza, and Caprino del Piemonte contained a mixture of peptides with a high degree of homology. Pasta filata cheeses (Caciocavallo and Mozzarella) also had antibacterial peptides. Peptides showed high levels of homology with N-terminal, C-terminal, or whole fragments of well known antimicrobial or multifunctional peptides reported in the literature: alphaS1-casokinin (e.g., sheep alphaS1-casein (CN) f22-30 of Pecorino Romano and cow alphaS1-CN f24-33 of Canestrato Pugliese); isracidin (e.g., sheep alphaS1-CN f10-21 of Pecorino Romano); kappacin and casoplatelin (e.g., cow kappa-CN f106-115 of Canestrato Pugliese and Crescenza); and beta-casomorphin-11 (e.g., goat beta-CN f60-68 of Caprino del Piemonte). As shown by the broth microdilution technique, most of the water-soluble fractions had a large spectrum of inhibition (minimal inhibitory concentration of 20 to 200 microg/mL) toward gram-positive and gram-negative bacterial species, including potentially pathogenic bacteria of clinical interest. Cheeses manufactured from different types of cheese milk (cow, sheep, and goat) have the potential to generate similar peptides with antimicrobial activity.

Amino Acid Sequence↗

Phenotypic and plasmid pattern analysis of Staphylococcus epidermidis in bacterial keratitis.

BACKGROUND: Staphylococcus epidermidis, a commensal of the conjunctival sac has been incriminated as the commonest etiological agent of bacterial keratitis. However, the pathogenic potential of this commensal organism is not clearly known. AIM: To determine any phenotypic, molecular markers of S. epidermidis pathogenicity in bacterial keratitis. MATERIALS AND METHODS: A total of 382 corneal ulcer isolates of S. epidermidis and 87 S. epidermidis isolates from healthy eyes (controls) were studied. Speciation, biotyping and antibiotic sensitivity testing were performed by conventional methods. Tube slime and adherence tests were carried out by recommended techniques. Plasmid analysis was conducted by a standard protocol. STATISTICAL ANALYSIS: Chi-square test was employed for calculations. RESULTS: Out of 382 corneal ulcer isolates (Pathogens) 284 (74.3%) belonged to biotypes I and II. Slime was detected in 164 (42.9%) of 382 pathogens vs. 21 (24.1%) of 87 controls (P<0.001). Sixty-five (39.6%) of 164 slime positive isolates were multidrug-resistant as compared to only 49 (22.4%) of 218 slime negative isolates (P<0.001). A significantly higher number i.e, 73.1% (120/164) of slime-producers possessed a 21 Kb plasmid in contrast to only 53.2% (116/218) of nonslime-producers (P<0.001). Presence of this plasmid had a statistical correlation of low significance with multidrug resistance (P=0.04). One hundred and seventy-two (45.0%) of 382 pathogens and 24 (27.6%) of the 87 controls were adherent to artificial surfaces (P=0.003) and the majority of the adherent organisms (99/172, 57.6%) were slime producers (P<0.001). CONCLUSIONS: Slime was associated with multidrug resistance in corneal ulcer isolates of S. epidermidis. The 21 Kb plasmid could determine virulence as it was responsible for slime production and adherence.

Corneal Ulcer↗

Studies on the occurrence of Gram-negative bacteria in ticks: Ixodes ricinus as a potential vector of Pasteurella.

A total of 372 Ixodes ricinus ticks (101 females, 122 males, and 149 nymphs) collected by flagging in 6 mixed woodlands of eastern Poland were examined by culture for the presence of internal Gram-negative bacteria other than Borrelia burgdorferi. Adult ticks were examined in pools of 2 specimens each and nymphs were examined in pools of 3-5 specimens each. Ticks were disinfected in 70 % ethanol and homogenized in 0.85% NaCl. The diluted homogenate was inoculated onto 3 kinds of agar media: buffered charcoal yeast extract (BCYE-alpha) for isolation of fastidious Gram-negative bacteria, eosin methylene blue agar (EMB) for isolation of enterobacteria, and tryptic soya agar for isolation of all other non-fastidious Gram-negative bacteria. The Gram-negative isolates were identified with the API Systems 20E and NE microtests. A total of 9 species of Gram-negative bacteria were identified, of which the commonest were strains determined as Pasteurella pneumotropica/haemolytica, which were isolated on BCYE-alpha agar from ticks collected in all 6 examined woodlands. The total number of these strains (49) exceeded the total number of all other strains of Gram-negative bacteria recovered from ticks (30). Of the total number of examined ticks, the minimum infection rate with Pasteurella pneumotropica/haemolytica was highest in females (18.8%), and slightly lower in males (12.3%) and nymphs (10%). Besides Pasteurella pneumotropica/haemolytica, the following species of Gram-negative bacteria were isolated from examined ticks: Pantoea agglomerans, Serratia marcescens, Serratia plymuthica on EMB agar and Aeromonas hydrophila, Burkholderia cepacia, Chromobacterium violaceum, Pseudomonas aeruginosa, and Stenotrophomonas maltophilia on tryptic soya agar. Minimal infection rates with these bacteria were low, ranging from 0.7-5.9%. Of the isolated bacteria, Chromobacterium violaceum, Pasteurella pneumotropica/haemolytica, Pseudomonas aeruginosa, and Serratia marcescens are potentially pathogenic for man and/or animals. In particular, the common occurrence of Pasteurella pneumotropica/haemolytica in Ixodes ricinus ticks poses a potential risk of pasteurellosis for humans and animals exposed to tick bites.

Animals↗

A small round virus associated with enteritis in turkey poults.

In a natural outbreak of enteric disease in turkey poults, Salmonella, group D rotavirus, astrovirus, and a small (18-24 nm) round virus were detected in the gut contents. Except for the small virus, the pathogenic potential of the other agents is recognized. In experiments, the small round virus was shown to be transmissible and pathogenic in specific-pathogen-free turkey poults.

Animals↗

Clinical aspects on bacterial infections in the upper respiratory tract.

Acute respiratory tract infections represent the major cause of morbidity in younger age groups. Most of these infections involve the upper respiratory tract. The frequency of respiratory tract infections vary not only with age, but also with season of the year and the epidemiological situation. Surveys of the incidence and aetiology of these infections must therefore cover large populations during relatively long periods of time. In the developed countries, the mortality in respiratory tract infections in patients below the age of 60 years is low, while it increases markedly in elderly patients, mainly due to involvement of the lower respiratory tract. Aetiologically, viral infections dominate but bacterial pathogens often cause pharyngitis/tonsillitis, otitis media and sinusitis. In longstanding cough in children, Branhamella catarrhalis has been found to be a pathogen of probably high significance. Other factors increasing the clinical importance of colonisation of the upper respiratory tract with potentially pathogenic bacterial species, are various immune defects, especially reduced IgA production, and granulocytopenia. In the latter case, Gram-negative bacteria seem to be more pathogenic than Gram-positive ones. The clinical differentiation between viral and bacterial upper respiratory tract infections is difficult and sometimes not possible. However, based on the knowledge that acute tracheitis, laryngitis and common cold are normally caused by viral agents, it seems reasonable not to use antibiotics for those patients.

Acute Disease↗

HIV-1 DNA vaccines.

HIV-1 was among the original DNA vaccine targets and HIV DNA vaccines are now in human trials. Lack of strong correlates of protective immunity makes vaccine design difficult; however, DNA vaccines have the potential to be an ideal vaccine and therapeutic approach against HIV-1. DNA vaccines induce conformational-dependent antibodies, mimic live vaccines but without the pathogenic potential, and can easily be made polyvalent. Genes which encode important CTL and antibody epitopes can be included while those that confer pathogenicity, virulence, antibody enhancement or represent non-conserved epitopes can be excluded. In our hands pre-treatment of muscles with bupivacaine or cardiotoxin did not offer any advantage over no muscle pre-treatment or gene gun inoculation of skin although gene gun immunization seem to favour a Th2 type response. As DNA vaccine candidates we have compared vaccines encoding native HIV MN gp160 with Rev-independent synthetic genes encoding MNgp160 and MNgp120 using mammalian high expression codons. In these experiments the gene encoding secreted gp120 gave highest antibody neutralizing titers. High and fast antibody responses could also be obtained by transferring the HIV-1 MN V3 loop to the secreted HBsAg as a fusion gene vaccine. Thus, in the case of HIV-1 MN genes encoding secreted surface glycoproteins may be preferred instead of membrane bound envelopes. CTL responses were induced in all cases. However, in order to meet the high diversity of HIV and HLA types our approach is to include many CTL epitopes in a multivalent minigene vaccine. We found that gene gun DNA vaccination with minimal epitopes could induce specific CTL. Flanking sequences influenced the CTL response but was not needed. DNA vaccines encoding known and computer predicted CTL epitopes are now being developed.

AIDS Vaccines↗

Strong evidence that the common variant S384F in BRCA2 has no pathogenic relevance in hereditary breast cancer.

INTRODUCTION: Unclassified variants (UVs) of unknown clinical significance are frequently detected in the BRCA2 gene. In this study, we have investigated the potential pathogenic relevance of the recurrent UV S384F (BRCA2, exon 10). METHODS: For co-segregation, four women from a large kindred (BN326) suffering from breast cancer were analysed. Moreover, paraffin-embedded tumours from two patients were analysed for loss of heterozygosity. Co-occurrence of the variant with a deleterious mutation was further determined in a large data set of 43,029 index cases. Nature and position of the UV and conservation among species were evaluated. RESULTS: We identified the unclassified variant S384F in three of the four breast cancer patients (the three were diagnosed at 41, 43 and 57 years of age). One woman with bilateral breast cancer (diagnosed at ages 32 and 50) did not carry the variant. Both tumours were heterozygous for the S384F variant, so loss of the wild-type allele could be excluded. Ser384 is not located in a region of functional importance and cross-species sequence comparison revealed incomplete conservation in the human, dog, rodent and chicken BRCA2 homologues. Overall, the variant was detected in 116 patients, five of which co-occurred with different deleterious mutations. The combined likelihood ratio of co-occurrence, co-segregation and loss of heterozygosity revealed a value of 1.4 x 10-8 in favour of neutrality of the variant. CONCLUSION: Our data provide conclusive evidence that the S384F variant is not a disease causing mutation.

Adult↗

Serotonin--a link between disgust and immunity?

Immune systems maintain the integrity of organisms by recognising and attacking foreign substances and/or pathogens. However, immune defences can only take place following direct contact with threats. Disgust can prevent infection before contact with potential pathogens: we propose that disgust is an evolved nervous response to a signal reliably co-occurring with infectious environmental disease threats, which motivates behaviour leading to the avoidance of infection. We hypothesize that disgust and immunity form a defensive continuum with overlaps: disgust acts prior to contact with the infectious agent and prevents it from getting into the body; emesis (vomiting) gets it out once inside the gastrointestinal tract, before penetration of the body boundaries; and immunity expels or kills infectious threats following penetration of the body proper. We further propose that serotonin (5-hydroxytryptamine, 5-HT) might be the link between disgust and immunity. 5-HT plays a central role in the induction of the emetic reflex and is possibly involved in the development of learned aversion; it is also a signal used by immune cells and modulates both innate and acquired immunity. We therefore propose 5-HT might mediate the interaction between these two defensive mechanisms.

Animals↗

Endobronchial carcinoid tumor combined with pulmonary non-tuberculous mycobacterial infection: report of two cases.

We report here two cases of endobronchial carcinoid tumor complicated with pulmonary infection with non-tuberculous mycobacteria (NTM). Case 1 was an 81-year-old woman with the left lower lobe atelectasis. Bronchoscopy showed complete obstruction of the left basal bronchus by a tumor and a sleeve lower lobectomy with mediastinal lymph node dissection was performed. Pathological examination showed typical carcinoid located in the left basal bronchus and many caseous granulomas containing mycobacteria in the lung parenchyma distal to the bronchus. Bacterial examinations of sputum and gastric juice after the operation showed a growth of Mycobacterium kansasii. Case 2 was a 50-year-old woman with the atelectasis of the left upper division. Bronchoscopy showed complete obstruction of the left upper division bronchus by a tumor and a left upper lobectomy with mediastinal lymph node dissection was performed. Pathological examination showed typical carcinoid located in the left upper division bronchus and many caseous granulomas in the lung parenchyma distal to the bronchus. The Ziehl-Neelsen stain showed many mycobacteria in these granulomas and they were identified as Mycobacterium avium by PCR analysis. Although NTM are not well recognized as possible pathogens of pulmonary infection related to bronchial obstruction by endobronchial carcinoma, our experiences rouse a caution to consider NTM as potential pathogens. We also discuss the possible mechanisms responsible for the specific relationship between carcinoid tumor and TNM.

Aged↗

Human cytotoxic T-cell responses against Epstein-Barr virus nuclear antigens demonstrated by using recombinant vaccinia viruses.

The potentially pathogenic effects of infection with Epstein-Barr virus (EBV), a B-lymphotropic agent with cell growth-transforming potential, are contained in healthy virus carriers by virus-specific cytotoxic T-lymphocyte (CTL) surveillance. The target antigens against which such CTL responses are directed are yet undefined, but the antigens probably derived from one or more of the EBV "latent" proteins constitutively expressed in virus-transformed B cells. We have analyzed target specificity of CTL responses from two EBV-immune donors that are preferentially reactive against autologous cells transformed with type A but not with type B virus isolates. Coding sequences for four EBV latent proteins with allelic polymorphism between A and B virus types--namely, the EBV nuclear antigens (EBNAs) EBNA 2, EBNA 3a, EBNA 3c, and EBNA leader protein--have been introduced into vaccinia virus vectors under control of vaccinia promoter P7.5 and used to express relevant EBNA proteins in appropriate target cells. Thus the CTL response from one donor has been mapped to type A EBNA 2 protein and from a second donor to type A EBNA 3a protein. Thereafter, a series of recombinant vaccinia viruses were constructed that carried specific internal deletions within the EBNA 2 type A coding sequence; by using these vectors, the above EBNA 2 type A-specific CTL response was shown to be directed against an epitope within a 100-amino acid fragment near the N terminus of the protein. This work clearly shows human CTL recognition of virus-coded nuclear antigens in the EBV system; moreover, it establishes an experimental approach that can be extended to all EBV latent proteins and to the more common CTL responses that cross-react against type A and type B virus isolates.

Antigens, Viral↗

Support for and implications of the specific plaque hypothesis.

The role of specific microorganisms in dental caries is reviewed. A considerable amount of evidence supports the association between organisms of the Streptococcus mutans group and caries incidence and prevalence. The cariogenic potential of S. mutans is probably due to the unique combination of properties with which this microorganism is endowed. The pathogenic potential can be modified by changes in the environment. Lactobacilli play a major role in the development of a lesion. The specific plaque hypothesis has important implications because the association between S. mutans, lactobacilli and dental caries can be used in diagnosis, treatment and prevention of the disease in groups of subjects as well as in the individual case.

Animals↗

Concentrations of pathogens and indicators in animal feces in the Sydney watershed.

A fecal analysis survey was undertaken to quantify animal inputs of pathogenic and indicator microorganisms in the temperate watersheds of Sydney, Australia. The feces from a range of domestic animals and wildlife were analyzed for the indicator bacteria fecal coliforms and Clostridium perfringens spores, the pathogenic protozoa Cryptosporidium and Giardia, and the enteric viruses adenovirus, enterovirus, and reovirus. Pathogen and fecal indicator concentrations were generally higher in domestic animal feces than in wildlife feces. Future studies to quantify potential pathogen risks in drinking-water watersheds should thus focus on quantifying pathogen loads from domestic animals and livestock rather than wildlife.

Animals↗

Southern hemisphere mollusc diseases and an overview of associated risk assessment problems.

In Australia and New Zealand, Bonamia sp. causes epizootics in flat oysters (Tiostrea chilensis, Ostrea angasi); Marteilia sydneyi and Mikrocytos roughleyi cause mortality in farmed rock oysters (Saccostrea commercialis); and Perkinsus olseni is pathogenic in abalone (Haliotis spp.). Marteilia lengehi, Marteilioides branchialis, other Marteilioides spp. and two species of Haplosporidium are regarded as potential pathogens. A review of the pathogens causing diseases listed in the Office International des Epizooties 'notifiable diseases' of molluscs shows major gaps in the information available. The life cycles and transmission of Haplosporidium nelsoni and Marteilia refringens are unknown, Bonamia spp. and Mikrocytos spp. cannot be diagnosed with certainty, monoclonal antibodies and molecular probes are not generally available, and little is known of survival parameters or treatment of the pathogens. The author concludes that stringent guidelines and protocols are needed to minimise the high risks involved in translocation of molluscs.

Animals↗

Epidermolysis bullosa.

The disorders known as epidermolysis bullosa constitute a group of genetic diseases of the skin which in the mildest form are debilitating throughout life and in the most severe forms result in death at an early age. The profound morbidity associated with all forms of the disease results not only in the loss of an economically productive life but also, in many cases, in the need for continuing medical care throughout life. Inroads are being made into potential pathogenic mechanisms in certain forms of EB. The current state of knowledge can best be characterized as a number of potentially significant disparate observations from various disciplines. The ultimate goals of research in EB are not only to understand the disease but also to provide the biochemical tools for reliable genetic classification, for antenatal diagnosis, and for rational modes of therapy.

Epidermolysis Bullosa↗

Plant perception systems for pathogen recognition and defence.

Recognition of and defence against microbial infections are universal adaptations of multicellular organisms. Plants express a sophisticated molecular system for recognition of and response to potentially pathogenic microorganism. Although the environments of plant and animal cells are vastly different and present unique challenges to invading pathogens, the molecular basis of the innate immune response shows remarkable evolutionary conservation in both kingdoms. Even if more cellular components are continually being identified in plants, the mechanism, interactions and responses are only partly understood. Furthermore, most of this research has been performed in the model plant Arabidopsis thaliana and a significant effort will be needed to understand the above processes in crop species and in natural populations. In this review I will describe examples of the best characterized recognition systems in plants, that mediate pathogen perception either through the perception of highly variable and non-essential pathogen molecules or via conserved microbial structures called pathogen associated molecular patterns (PAMPs).

Arabidopsis↗