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1.
Acta Microbiol Immunol Hung ; 70(2): 111-118, 2023 Jun 16.
Article in English | MEDLINE | ID: mdl-37130018

ABSTRACT

Following the introduction of the West Nile virus (WNV) into Hungary in 2004, it has shortly become one of the most important human arbovirus infections, with a gradually increasing number of cases. The study aimed to summarize the current epidemiological situation in Hungary and sequence the WNV PCR-positive clinical specimens and virus isolates by next-generation whole genome sequencing (NGS) to obtain a detailed phylogenetic analysis of the circulating virus strains. Whole blood and urine samples from confirmed WNV-infected patients and WNV isolates were investigated by reverse transcription PCR assays. Genome sequencing was carried out by Sanger-method, followed by NGS on the Illumina MiSeq platform. Altogether 499 human infections were diagnosed between 2004 and 2022. A particularly remarkable increase in human WNV infections was observed in 2018, while the number of reported cases significantly decreased during the COVID-19 pandemic. Between 2015 and 2022, 15 WNV isolates, and 10 PCR-positive clinical specimens were investigated by NGS. Phylogenetic analysis revealed that the major European WNV lineage 2 clades, namely the Eastern European (or Russian) and the Central European (or Hungarian) clades, are presented in Hungary. Strains of the Balkan and other European clusters within the Central European clade are co-circulating in the country, following a characteristic geographical distribution. In Hungary, the presence and co-circulation of multiple lineage 2 WNV strains could be identified in the last few years. Therefore, in light of the 2018 WNV outbreak, sequence-based typing of the currently circulating strains could highly support outbreak investigations.


Subject(s)
COVID-19 , West Nile Fever , West Nile virus , Humans , West Nile Fever/epidemiology , Phylogeny , Hungary/epidemiology , Pandemics , COVID-19/epidemiology , West Nile virus/genetics
2.
Euro Surveill ; 27(36)2022 09.
Article in English | MEDLINE | ID: mdl-36082686

ABSTRACT

Following the report of a non-travel-associated cluster of monkeypox cases by the United Kingdom in May 2022, 41 countries across the WHO European Region have reported 21,098 cases and two deaths by 23 August 2022. Nowcasting suggests a plateauing in case notifications. Most cases (97%) are MSM, with atypical rash-illness presentation. Spread is mainly through close contact during sexual activities. Few cases are reported among women and children. Targeted interventions of at-risk groups are needed to stop further transmission.


Subject(s)
Exanthema , Mpox (monkeypox) , Animals , Child , Disease Outbreaks , Female , Humans , Mpox (monkeypox)/diagnosis , Mpox (monkeypox)/epidemiology , Monkeypox virus , World Health Organization
3.
Microorganisms ; 10(7)2022 Jul 20.
Article in English | MEDLINE | ID: mdl-35889189

ABSTRACT

Brucellosis, mainly caused by Brucella (B.) melitensis, is associated with a risk of chronification and relapses. Antimicrobial susceptibility testing (AST) standards for B. melitensis are not available, and the agent is not yet listed in the EUCAST breakpoint tables. CLSI recommendations for B. melitensis exist, but they do not fulfill the requirements of the ISO 20776 standard regarding the culture medium and the incubation conditions. Under the third EU Health Programme, laboratories specializing in the diagnostics of highly pathogenic bacteria in their respective countries formed a working group within a Joint Action aiming to develop a suitable method for the AST of B. melitensis. Under the supervision of EUCAST representatives, this working group adapted the CLSI M45 document to the ISO 20776 standard after testing and validation. These adaptations included the comparison of various culture media, culture conditions and AST methods. A Standard Operation Procedure was derived and an interlaboratory validation was performed in order to evaluate the method. The results showed pros and cons for both of the two methods but also indicate that it is not necessary to abandon Mueller-Hinton without additives for the AST of B. melitensis.

4.
Front Immunol ; 12: 750496, 2021.
Article in English | MEDLINE | ID: mdl-34867981

ABSTRACT

One of the main hallmarks of tuberculosis (TB) is the ability of the causative agent to transform into a stage of dormancy and the capability of long persistence in the host phagocytes. It is believed that approximately one-third of the population of the world is latently infected with Mycobacterium tuberculosis (Mtb), and 5%-10% of these individuals can develop clinical manifestations of active TB even decades after the initial infection. In this latent, intracellular form, the bacillus is shielded by an extremely robust cell wall and becomes phenotypically resistant to most antituberculars. Therefore, there is a clear rationale to develop novel compounds or carrier-conjugated constructs of existing drugs that are effective against the intracellular form of the bacilli. In this paper, we describe an experimental road map to define optimal candidates against intracellular Mtb and potential compounds effective in the therapy of latent TB. To validate our approach, isoniazid, a first-line antitubercular drug was employed, which is active against extracellular Mtb in the submicromolar range, but ineffective against the intracellular form of the bacteria. Cationic peptide conjugates of isoniazid were synthesized and employed to study the host-directed drug delivery. To measure the intracellular killing activity of the compounds, Mtb-infected MonoMac-6 human monocytic cells were utilized. We have assessed the antitubercular activity, cytotoxicity, membrane interactions in combination with internalization efficacy, localization, and penetration ability on interface and tissue-mimicking 3D models. Based on these in vitro data, most active compounds were further evaluated in vivo in a murine model of TB. Intraperitoneal infectious route was employed to induce a course of slowly progressive and systemic disease. The well-being of the animals, monitored by the body weight, allows a prolonged experimental setup and provides a great opportunity to test the long-term activity of the drug candidates. Having shown the great potency of this simple and suitable experimental design for antimicrobial research, the proposed novel assay platform could be used in the future to develop further innovative and highly effective antituberculars.


Subject(s)
Antimicrobial Peptides/administration & dosage , Antitubercular Agents/administration & dosage , Biological Assay/methods , Cell-Penetrating Peptides/administration & dosage , Isoniazid/administration & dosage , Mycobacterium tuberculosis/drug effects , Animals , Antimicrobial Peptides/chemistry , Antitubercular Agents/chemistry , Bronchi , Cell Line , Cell-Penetrating Peptides/chemistry , Endocytosis , Female , Humans , Isoniazid/chemistry , Mice, Inbred BALB C , Monocytes/microbiology , Mycobacterium tuberculosis/growth & development , Reproducibility of Results , Spheroids, Cellular , Tuberculosis/drug therapy
5.
Ticks Tick Borne Dis ; 12(1): 101555, 2021 01.
Article in English | MEDLINE | ID: mdl-33022559

ABSTRACT

Crimean-Congo hemorrhagic fever (CCHF) is an emerging tick-borne disease that is endemic in Africa, Asia, the Middle East, and the Balkan region of Europe; the disease is spreading northwards following widespread distribution of the main vector, Hyalomma marginatum, which was first found in Hungary in 2011. The aim of this pilot sero-surveillance study was to assess CCHF seroprevalence in Hungary. A total of 2700 serum samples obtained from healthy volunteer blood donors were screened using an in-house immunofluorescence assay and a commercially available ELISA kit. We found ten (0.37 %) seropositive donors. The western and central regions proved to be the most affected areas, with a prevalence of 2.97 %. Higher positivity was found among male donors (0.55 %) and younger donors (18-34 years; 0.78 %). Based on these results, a more extended surveillance focusing on specific at-risk populations and animals is advised. The results should also raise the awareness of clinicians and other high-risk populations, such as foresters and hunters, about the emerging threat of CCHF in Hungary.


Subject(s)
Hemorrhagic Fever Virus, Crimean-Congo/isolation & purification , Hemorrhagic Fever, Crimean/epidemiology , Adult , Female , Hemorrhagic Fever, Crimean/virology , Humans , Hungary/epidemiology , Male , Middle Aged , Pilot Projects , Prevalence , Retrospective Studies , Seroepidemiologic Studies , Young Adult
6.
Q Rev Biophys ; 53: e5, 2020 03 02.
Article in English | MEDLINE | ID: mdl-32115014

ABSTRACT

Here it is demonstrated how some anionic food additives commonly used in our diet, such as tartrazine (TZ), bind to DHVAR4, an antimicrobial peptide (AMP) derived from oral host defense peptides, resulting in significantly fostered toxic activity against both Gram-positive and Gram-negative bacteria, but not against mammalian cells. Biophysical studies on the DHVAR4-TZ interaction indicate that initially large, positively charged aggregates are formed, but in the presence of lipid bilayers, they rather associate with the membrane surface. In contrast to synergistic effects observed for mixed antibacterial compounds, this is a principally different mechanism, where TZ directly acts on the membrane-associated AMP promoting its biologically active helical conformation. Model vesicle studies show that compared to dye-free DHVAR4, peptide-TZ complexes are more prone to form H-bonds with the phosphate ester moiety of the bilayer head-group region resulting in more controlled bilayer fusion mechanism and concerted severe cell damage. AMPs are considered as promising compounds to combat formidable antibiotic-resistant bacterial infections; however, we know very little on their in vivo actions, especially on how they interact with other chemical agents. The current example illustrates how food dyes can modulate AMP activity, which is hoped to inspire improved therapies against microbial infections in the alimentary tract. Results also imply that the structure and function of natural AMPs could be manipulated by small compounds, which may also offer a new strategic concept for the future design of peptide-based antimicrobials.


Subject(s)
Anti-Bacterial Agents/chemistry , Cell Membrane/metabolism , Food Coloring Agents/chemistry , Histatins/chemistry , Peptides/chemistry , Animals , Biological Transport/drug effects , Circular Dichroism , Escherichia coli/drug effects , Escherichia coli/metabolism , Flow Cytometry , HeLa Cells , Humans , Lipid Bilayers/chemistry , Microbial Sensitivity Tests , Microscopy, Fluorescence , Monocytes/drug effects , Phosphates/chemistry , Spectrophotometry , Spectroscopy, Fourier Transform Infrared , Streptococcus pneumoniae/drug effects
7.
Vaccines (Basel) ; 7(3)2019 Aug 27.
Article in English | MEDLINE | ID: mdl-31461944

ABSTRACT

Epitopes from different proteins expressed by Mycobacterium tuberculosis (Rv1886c, Rv0341, Rv3873) were selected based on previously reported antigenic properties. Relatively short linear T-cell epitope peptides generally have unordered structure, limited immunogenicity, and low in vivo stability. Therefore, they rely on proper formulation and on the addition of adjuvants. Here we report a convenient synthetic route to induce a more potent immune response by the formation of a trivalent conjugate in spatial arrangement. Chemical and structural characterization of the vaccine conjugates was followed by the study of cellular uptake and localization. Immune response was assayed by the measurement of splenocyte proliferation and cytokine production, while vaccine efficacy was studied in a murine model of tuberculosis. The conjugate showed higher tendency to fold and increased internalization rate into professional antigen presenting cells compared to free epitopes. Cellular uptake was further improved by the incorporation of a palmitoyl group to the conjugate and the resulted pal-A(P)I derivative possessed an internalization rate 10 times higher than the free epitope peptides. Vaccination of CB6F1 mice with free peptides resulted in low T-cell response. In contrast, significantly higher T-cell proliferation with prominent expression of IFN-γ, IL-2, and IL-10 cytokines was measured for the palmitoylated conjugate. Furthermore, the pal-A(P)I conjugate showed relevant vaccine efficacy against Mycobacterium tuberculosis infection.

8.
Chembiochem ; 20(12): 1578-1590, 2019 06 14.
Article in English | MEDLINE | ID: mdl-30720915

ABSTRACT

Antimicrobial peptides (AMPs) kill bacteria by targeting their membranes through various mechanisms involving peptide assembly, often coupled with disorder-to-order structural transition. However, for several AMPs, similar conformational changes in cases in which small organic compounds of both endogenous and exogenous origin have induced folded peptide conformations have recently been reported. Thus, the function of AMPs and of natural host defence peptides can be significantly affected by the local complex molecular environment in vivo; nonetheless, this area is hardly explored. To address the relevance of such interactions with regard to structure and function, we have tested the effects of the therapeutic drug suramin on the membrane activity and antibacterial efficiency of CM15, a potent hybrid AMP. The results provided insight into a dynamic system in which peptide interaction with lipid bilayers is interfered with by the competitive binding of CM15 to suramin, resulting in an equilibrium dependent on peptide-to-drug ratio and vesicle surface charge. In vitro bacterial tests showed that when CM15⋅suramin complex formation dominates over membrane binding, antimicrobial activity is abolished. On the basis of this case study, it is proposed that small-molecule secondary structure regulators can modify AMP function and that this should be considered and could potentially be exploited in future development of AMP-based antimicrobial agents.


Subject(s)
Anti-Infective Agents , Antimicrobial Cationic Peptides , Suramin , Anti-Infective Agents/chemistry , Anti-Infective Agents/pharmacology , Antimicrobial Cationic Peptides/chemistry , Antimicrobial Cationic Peptides/pharmacology , Cells, Cultured , Circular Dichroism/methods , Escherichia coli , Humans , Lipid Bilayers/chemistry , Protein Structure, Secondary , Suramin/chemistry , Suramin/pharmacology
9.
Emerg Microbes Infect ; 7(1): 52, 2018 Mar 29.
Article in English | MEDLINE | ID: mdl-29593278

ABSTRACT

In 2013-2016, West Africa experienced the largest and longest Ebola virus disease outbreak ever documented. The wide geographic spread and magnitude of the outbreak often limited the timely and rapid testing of diagnostic samples from patients with suspected Ebola virus disease, raising questions regarding the optimal storage and shipping conditions of clinically relevant specimens, including EDTA-whole blood, plasma, capillary blood, urine and seminal fluid (associated with sexual transmission of the Ebola virus after recovery from the disease). Therefore, the aim of our study was to identify the extent to which storage temperature and clinical specimen type influence Ebola virus viability. Virus infectivity was determined using a fluorescent focus-forming assay. In our study, we show that Ebola virus was the most stable in EDTA-whole blood and plasma samples, whereas rapid decay of infectivity was observed in simulated capillary blood, urine and semen samples, especially when these samples were stored at higher temperatures. The analysis of variance results demonstrated that both temperature and clinical specimen type have significant effects on virus viability, whereas donor differences were not observed. Repeated freeze and thaw cycles of the samples also had a notable impact on virus viability in EDTA-whole blood and urine. Due to the rapid temperature- and specimen-dependent degradation of the virus observed here, our study highlights the importance of proper clinical sample storage at low temperatures during transportation and laboratory analysis.


Subject(s)
Ebolavirus/physiology , Environment , Microbial Viability , Specimen Handling , Temperature , Clinical Laboratory Techniques/statistics & numerical data , Disease Outbreaks/prevention & control , Ebolavirus/genetics , Hemorrhagic Fever, Ebola/diagnosis , Hemorrhagic Fever, Ebola/virology , Humans , RNA, Viral/isolation & purification
10.
J Med Microbiol ; 66(7): 915-918, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28693667

ABSTRACT

The objective of the present study was to determine the frequency and age distribution of different Chlamydia trachomatis (CT) genotypes causing ophthalmia neonatorum (ON) in Hungary. Using CT specific PCR, we tested 76 conjunctival samples from symptomatic infants up to 3 months old in the National Centre for Epidemiology, Budapest between 2008 and 2016. CT tested positive in 30 of 76 conjunctival samples (39.5 %). The sequencing of the positive samples was successful in every case but one, and resulted in 48 % dominance for genotype E (14/29), followed by 24 % for genotype G (7/29), 10 % for J (3/29), 6.9 % for K and F (2/29), and 3.4 % for H (1/29). CT must still be regarded as a common pathogen causing ON in Hungary. Routine screening and treatment of pregnant women can be recommended to prevent these conditions. Chronic ON cases can be reduced by early diagnosis. Further research is needed to explain the dominance of genotypes E and G.


Subject(s)
Chlamydia trachomatis/classification , Chlamydia trachomatis/genetics , Conjunctivitis, Inclusion/epidemiology , Conjunctivitis, Inclusion/microbiology , Genotype , Age Factors , Chlamydia trachomatis/isolation & purification , Female , Humans , Hungary/epidemiology , Infant , Infant, Newborn , Male , Molecular Epidemiology , Polymerase Chain Reaction , Prevalence , Sequence Analysis, DNA
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