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I Rychlik

Publications and source records attributed to I Rychlik.

At least 19 recordsLinked to original sources

Vaccination and early protection against non-host-specific Salmonella serotypes in poultry: exploitation of innate immunity and microbial activity.

A recent European Union Directive required member states to put monitoring and control programmes in place, of which vaccination is a central component. Live Salmonella vaccines generally confer better protection than killed vaccines, because the former stimulate both cell-mediated and humoral immunity. Administering Salmonella bacteria orally to newly hatched chickens results in extensive gut colonization and a strong adaptive immune stimulus but broiler chickens are immunologically immature. However, colonization exerts a variety of rapid (within 24 h) protective effects. These include specific colonization-inhibition (competitive exclusion) in which the protective bacteria exert a profound resistance to establishment and colonization by other related bacteria. This is thought to be primarily a metabolic attribute of the vaccinating bacteria but may also involve competition for attachment sites. The presence of large numbers of bacteria originating from a live Salmonella vaccine in the intestine can also induce infiltration of polymorphonuclear cells into the intestinal wall, which confers resistance to invasion and systemic spread by virulent Salmonella strains. This opens new perspectives for vaccine usage in broilers, layers and breeding poultry but also in other animals which show increased susceptibility to infection because of their young age or for other reasons, such as oral chemoprophylaxis or chemotherapy, where the lack of established normal gut flora is an issue. We recommend that all live vaccines considered for oral administration should be tested for their ability to induce the two protective effects described above. Further developments in live Salmonella vaccines are, however, currently hindered by fears associated with the use and release of live vaccines which may be genetically modified.

Animals↗

Intestinal colonisation-inhibition and virulence of Salmonella phoP, rpoS and ompC deletion mutants in chickens.

Administration of live Salmonella strains to day-old chicks provides profound protection against superinfection with a related strain within a matter of hours by a colonisation-inhibition mechanism, which is primarily a bacterial physiological process. Although currently available, commercial, live attenuated Salmonella vaccines induce protection by adaptive immunity, none of them is able to induce protection against Salmonella organisms by colonisation-inhibition and, therefore, they are unable to protect newly-hatched birds immediately after oral vaccination. In this study, mutants of Salmonella Typhimurium and Enteritidis with deletions in phoP and rpoS, either alone or in combination with ompC, were characterised and tested for their level of attenuation and their ability to inhibit the intestinal colonisation of the isogenic parent strains in chickens. Mutants with deletions only in rpoS demonstrated an unaffected potential to inhibit the intestinal colonisation of the challenge strain but were still fully virulent for the chickens. Mutants with deletions in phoP, either alone or in combination with rpoS, resulted in a high level of attenuation, unimpaired ability to colonise the gut and a nearly unaffected potential to inhibit the challenge strain from caecal colonisation. Mutants with an additional deletion in ompC revealed a reduced capacity of intestinal colonisation-inhibition when compared to the control strains and both the single rpoS and the phoP deletion mutants. Mutations in phoP- or phoP-regulated genes may therefore be used for the development of live attenuated Salmonella vaccines possessing these novel characteristics.

Animals↗

Medium-chain fatty acids decrease colonization and invasion through hilA suppression shortly after infection of chickens with Salmonella enterica serovar Enteritidis.

The most common source of Salmonella infections in humans is food of poultry origin. Salmonella enterica serovar Enteritidis has a particular affinity for the contamination of the egg supply. In this study, the medium-chain fatty acids (MCFA), caproic, caprylic, and capric acid, were evaluated for the control of Salmonella serovar Enteritidis in chickens. All MCFA were growth inhibiting at low concentrations in vitro, with caproic acid being the most potent. Contact of Salmonella serovar Enteritidis with low concentrations of MCFA decreased invasion in the intestinal epithelial cell line T84. By using transcriptional fusions between the promoter of the regulatory gene of the Salmonella pathogenicity island I, hilA, and luxCDABE genes, it was shown that all MCFA decreased the expression of hilA, a key regulator related to the invasive capacity of Salmonella. The addition of caproic acid (3 g/kg of feed) to the feed of chicks led to a significant decrease in the level of colonization of ceca and internal organs by Salmonella serovar Enteritidis at 3 days after infection of 5-day-old chicks. These results suggest that MCFA have a synergistic ability to suppress the expression of the genes required for invasion and to reduce the numbers of bacteria in vivo. Thus, MCFA are potentially useful products for reducing the level of colonization of chicks and could ultimately aid in the reduction of the number of contaminated eggs in the food supply.

Animals↗

Evolution of antibiotic resistance in Salmonella enterica serovar typhimurium strains isolated in the Czech Republic between 1984 and 2002.

In a collection of 66 Salmonella enterica serovar Typhimurium strains isolated between 1984 and 2002 in the Czech Republic, genes coding for antibiotic resistance were determined by using specific PCRs. We found that the pentadrug-resistant ACSSuT clone first appeared in the Czech Republic in 1990. A new variant of the aadA gene designated aadA21 is described, the 5' end of which was identical to aadA2 and the 3' end of which was identical to aadA1.

Animals↗

[Specificity of inhibition between Salmonella strains].

A phenomenon of inhibition among Salmonella organisms colonizing the gut of young animals can be demonstrated which is important in connection with immunization using live Salmonella vaccines. For practical utilization of this inhibition phenomenon, research into its specificity is very important. In vitro broth culture and animal experiments have shown inhibition to be genus-specific, i.e. there is no inhibition between strains of different genera of Enterobacteriaceae in most cases. The strongest inhibition occurs between isogenic (identical genotype) strains (strain-specific inhibition). This applies to Salmonella and other genera of Enterobacteriaceae. There was a close correlation between the degree of the inhibitory effect and the genetic relatedness of the strains, as has been demonstrated in Salmonella strains of different epidemiological classification. The inhibitory capacity was most pronounced among closely related strains. Clonal strains of Salmonella Enteritidis phage type 4 fully inhibited caecal colonization by Salmonella Enteritidis phage type 4 strains in 65% of the combinations tested in chicks. In broth culture experiments, the share of combinations with complete inhibition was above 90%. A significant inhibitory competence of a selected strongly inhibitory Salmonella Enteritidis phage type 4 strain against the majority of Salmonella Enteritidis field isolates can be expected. However, Salmonella Enteritidis strains of all phase types showed almost no inhibitory competence against other Salmonella serotypes.

Animals↗

Low-molecular-weight plasmid of Salmonella enterica serovar Enteritidis codes for retron reverse transcriptase and influences phage resistance.

Retron reverse transcriptases are unusual procaryotic enzymes capable of synthesis of low-molecular-weight DNA by reverse transcription. All of the so-far-described DNA species synthesized by retron reverse transcriptases have been identified as multicopy single-stranded DNA. We have shown that Salmonella enterica serovar Enteritidis is also capable of synthesis of the low-molecular-weight DNA by retron reverse transcriptase. Surprisingly, Salmonella serovar Enteritidis-produced low-molecular-weight DNA was shown to be a double-stranded DNA with single-stranded overhangs (sdsDNA). The sdsDNA was 72 nucleotides (nt) long, of which a 38-nt sequence was formed by double-stranded DNA with 19- and 15-nt single-stranded overhangs, respectively. Three open reading frames (ORFs), encoded by the 4,053-bp plasmid, were essential for the production of sdsDNA. These included an ORF with an unknown function, the retron reverse transcriptase, and an ORF encoding the cold shock protein homologue. This plasmid was also able to confer phage resistance onto the host cell by a mechanism which was independent of sdsDNA synthesis.

Bacteriophages↗

Subdivision of Salmonella enterica serovar enteritidis phage types PT14b and PT21 by plasmid profiling.

We have shown that plasmid profiling is a sensitive method for further identification of strains of Salmonella enterica serovar enteritidis (S. enteritidis) phage type PT21 and to a lesser extent the strains of phage type PT14b. Five and three plasmid types were identified within 33 strains of phage type PT21 and 19 strains of phage type PT14b, respectively. Plasmid types in strains of phage type PT21 showed significant correlation with geographical origin of the strain. In strains of phage type PT14b a single isolate predominated suggesting that the plasmid designated as 'C' can be directly linked with S. enteritidis PT14b strains. Application of IS200 fingerprinting did not reveal any other differences and showed just one copy of IS200 in all the 52 analysed strains. All the strains were tested for antibiotic resistance and only four strains were resistant to ampicillin, cefotaxime, cefuroxime and cotrimoxazole. This indicates that low molecular weight plasmids in Salmonella enteritidis are not responsible for the spread of antibiotic resistance.

Animals↗

Flow cytometry characterisation of Salmonella typhimurium mutants defective in proton translocating proteins and stationary-phase growth phenotype.

We have shown that the growth, starvation and population heterogeneity of Salmonella typhimurium and its isogenic nuoG and cydA mutants can be monitored by flow cytometry. Bacterial cells were analysed unstained, and after staining with rhodamine 123, propidium iodide and acridine orange. In unstained cultures it was possible to distinguish flagellated and non-flagellated cells. nuoG and cydA mutants were less stained with rhodamine confirming their defects in generating membrane potential. Increase in propidium iodide staining associated with reduced membrane integrity was seen between day 4 and 14 in all the strains. Acridine orange staining showed that there was retarded development in stationary phase in nuoG and cydA mutants. Furthermore, up to day 28, a small portion of cells showed high RNA and DNA levels. To determine whether these cells represent a sub-population better adapted for long term survival, we measured the growth of the population by both OD values and viable counts. Because the OD values increased throughout the whole study in both wild-type and mutant strains, while the viable counts gradually decreased, we propose that even in very old cultures there must be a population of cells undergoing replication.

Acridine Orange↗

Long term treatment of IgA nephropathy with cyclosporine A.

20-50% of patients with IgA nephropathy (IgAN) reach end-stage renal failure. Yet a standard treatment for those with progressive course and/or great proteinuria is lacking. We treated 6 patients with biopsy proven IgAN, proteinuria over 3.5 g/24 h and S-creatinine less than 200 micromol/L non-responding to corticosteroids administered for 3 months. They were given cyclosporine A (CsA) 5 mg/kg bw/day then titrated aiming at a serum concentration of 70-150 ng/mL for one year tapered to discontinuation in 9 months. Prednisone 5-10 mg on alternate days was given with CsA. Proteinuria (g/day) decreased from 4.66 +/- 0.43 to 1.38 +/- 0.29 (p < 0.01) after 1 month and to 0.59 +/- 0.14 (p < 0.001) after 1 year of treatment and remained lower than baseline 2 years from the beginning (1.44 +/- 0.27, p < 0.001). GFR (creatinine clearance) did not change during the first month (1.25 +/- 0.21 mL/s vs 1.38 +/- 0.29 mL/s), but decreased after 1 year (1.05 +/- 0.14 mL/s, p < 0.05). After two years it increased to 1.17 +/- 0.16, NS from baseline. We also calculated the ratio of proteinuria to the GFR (mg/L) to assess the role of hemodynamic changes in the decrease of proteinuria. This ratio was 53.80 + 6.47 before therapy, it decreased after 1 month (11.56 +/- 1.7, p < 0.05) and further after 1 year (6.78 + 1.45, p < 0.01). Three months after discontinuation it was still 14.32 +/- 1.00, p < 0.05 from baseline. In conclusion, CsA significantly lowered moderate to high proteinuria in 6 patients with IgAN. Significant decrease of the proteinuria/GFR ratio suggests some non-hemodynamic mechanism of CsA action. The therapy was well tolerated and side-effects were not so severe as to require CsA withdrawal.

Adult↗

Relationship between IS901 in the Mycobacterium avium complex strains isolated from birds, animals, humans, and the environment and virulence for poultry.

A total of 738 strains of Mycobacterium avium complex (MAC) were examined in biological experiments on poultry by use of PCR methods with primers for detection of the insertion sequence IS901. Serotype strains of MAC from all known 28 serotypes were examined. Further strains were isolated from human immunodeficiency virus (HIV)-negative and HIV-positive patients, 6 animal species, 17 bird species, and the environment. Of 165 strains virulent for poultry, characterized by generalized tuberculosis, 164 strains contained IS901, a result which is statistically highly significant (P, 0.01). The remaining 573 strains were nonvirulent; however, IS901 was present in 24 strains. From among 20 strains of serotypes 1, 2, and 3, IS901 was found in 15 strains, only 5 of which were virulent for poultry. The remaining 111 strains, of serotypes 4 to 28, were nonvirulent and did not incorporate IS901. None of the 152 strains isolated from humans was virulent for poultry, including 12 strains which were IS901 positive.

AIDS-Related Opportunistic Infections↗

Standardisation of restriction fragment length polymorphism analysis for Mycobacterium avium subspecies paratuberculosis.

DNA from 1008 strains of Mycobacterium avium subspecies paratuberculosis, digested by restriction endonucleases PstI and BstEII, was hybridised with a standard IS900 probe prepared by PCR and labelled non-radioactively by ECL. DNA fingerprints were scanned by CCD camera and analysed using the software Gel Compar (Applied Maths, Kortrijk, Belgium). Thirteen restriction fragment length polymorphism (RFLP) (PstI) types were detected, which where designated as A, B, C, D, E, F, G, H, I, J, K, L and M in accordance with the study of Pavlik et al. (1995) [Pavlik, I., Bejckova, L., Pavlas, M., Rozsypalova, V., Koskova, S., 1995. Characterization by restriction endonuclease analysis and DNA hybridization using IS900 of bovine, ovine, caprine and human dependent strains of Mycobacterium paratuberculosis isolated in various localities. Vet. Microbiol. 45, 311-318]. Twenty RFLP (BstEII) types were detected and designated as C1-3, C5, C7-20, S1 and I1 in accordance with the study by Collins et al. 1990 [Collins, D.M., Gabric, D.M., de Lisle, G.W., 1990. Identification of two groups of Mycobacterium paratuberculosis strains by restriction endonuclease analysis and DNA hybridization. J. Clin. Microbiol. 28, 1591-1596]. A combination of both RFLP (PstI) and RFLP (BstEII) results revealed a total of 28 different RFLP types. All the RFLP types and detailed protocols are available at Intemet web site WWW...: http:/ /www.vri.cz/wwwrflptext.htm.

Animals↗

Clinical features and natural history of IgA nephropathy.

IgA nephropathy (IgAN) is the most common form of glomerulonephritis worldwide. It is characterized by recurrent gross hematuria, microhematuria and/or proteinuria and diffuse mesangial IgA deposits in glomeruli. It is predominantly a disease of young males. Apart from primary IgAN (Berger's disease), IgA deposits in the glomeruli are also seen in Henoch-Schönlein purpura and in association with various of other diseases, particularly liver cirrhosis. Originally it was thought that IgAN was a benign disease, but it is now known that approximately 20-40% of patients develop progressive renal disease 5 to 25 years after diagnosis and progress to end-stage renal disease. Clinical predictors of progressive disease are elevated serum creatinine concentration at presentation, increased systemic blood pressure, persistent protein excretion > 1.0 g/day and histological predictors are glomerulosclerosis, tubular atrophy/interstitial fibrosis, extension of immune deposits to the perivascular space and crescent formation. Progression correlates more closely with the severity of tubulointerstitial lesions than with the degree of glomerular lesions. These features of IgAN reported in literature were mostly, but not completely, confirmed by analysis of all consecutive patients with biopsy proven IgAN and follow-up > 12 months in the renal units of Heidelberg and Prague using univariate analysis, multiple range test and multiple regression analysis.

Adult↗

The presence of genes homologous to the K88 genes faeH and faeI on the virulence plasmid of Salmonella gallinarum.

A Tn3 insertion mutation was produced in the virulence plasmid of a strain of Salmonella gallinarum which conferred avirulence by parenteral and oral routes but which was also less invasive following oral inoculation. The transposon was found to have inserted near an open reading frame (ORF) with no homologies in the data banks. This ORF was adjacent to two additional ORF's with a high degree of homology of Escherichia coli genes encoding the minor structural subunits (FaeH and FaeI) of the K88 fimbria. A similar region of homology was found by DNA-DNA hybridization on the virulence plasmids of S. pullorum, S. dublin and other S. gallinarum strains but not in the plasmids of S. typhimurium, S. enteritidis or S. choleraesuis.

Bacterial Proteins↗

Diabetes--renal function--what are the special problems?

Diabetic nephropathy has become the single most important cause of endstage renal failure in most countries of the Western world. Against this background, the role of the renin-angiotensin system (RAS) and its blockade command considerable interest. In diabetic patients and in diabetic animals, the circulating components of the RAS are suppressed. Although the evidence is not completely uniform, there are indirect arguments (renal hemodynamic response to RAS blockade, AT1 receptor expression), however, which would be consistent with increased intrarenal action of angiotensin (ANG) II. There is solid evidence that ACE inhibitors effectively interfere with progression of micro-albuminuria both in IDDM and NIDDM. They also prevent progression of advanced renal failure in IDDM, while there is only preliminary evidence in this respect for NIDDM. ACE inhibitors are superior to conventional antihypertensive agents (with the possible exception of some calcium channel blockers), but such superiority is seen only when the levels of blood pressure are relatively high. In diabetic animals, treatment with ANG II receptor blockers interferes with the development of glomerular lesions. In acute and subacute studies on diabetic patients, ANG II receptor blockers reduced albuminuria (or proteinuria) more than beta-blockers. Head-on comparison of equipotent doses ACE inhibitors and ANG II receptor blockers in non-diabetic patients produced equal reductions in proteinuria. The long-term effects of ANG II receptor blockers on progression of advanced diabetic nephropathy is the object of two large international studies. The results will not be available before the year 2000.

Angiotensin Receptor Antagonists↗

Computer-assisted restriction endonuclease analysis of plasmid DNA in field strains of Salmonella enteritidis.

Computer-assisted restriction endonuclease analysis of plasmid DNA in field strains of Salmonella enterica serovar Enteritidis (S. enteritidis) is described. The procedure consists of plasmid DNA purification, its digestion with restriction endonuclease TaqI, electrophoresis, charge-coupled device camera scanning of the gels, and an analysis of the restriction patterns with the software Gel Manager. The system allowed us to analyse, in detail, results of plasmid profiling in more than 600 field strains of S. enteritidis. In addition to plasmid-free and virulence plasmid only containing strains, 15 additional plasmid types were detected. All the images and detailed protocols are available at the Web site http://www.clark.cz/vri/salmon.htm.

Animals↗