HR Excellence in Science
Total found: 37 records
Filatov S., Štěrba J., Dyčka F., Rego R. O. M. (2023) A simple non-invasive method to collect soft tick saliva reveals differences in Ornithodoros moubata saliva composition between ticks infected and uninfected with Borrelia duttonii spirochetes Frontiers in Cellular and Infection Microbiology 13: 1112952.
DOI: 10.3389/fcimb.2023.1112952
Filatov S., Erhart J., Rego R. O. M. (2022) Infestation of laboratory colonies of the soft tick, Ornithodoros moubata Murray 1877 (Acari: Ixodida: Argasidae) by Tyrophagus fanetzhangorum Klimov & OConnor 2009 (Acari: Astigmatina: Acaroidea: Acaridae) Acarologia 62: 223–227.
DOI: 10.24349/xuqf-20hw
Zinck C.B., Thampy P.R., Rego R. O. M., Brisson D., Ogden N.H., Voordouw M.J. (2022) Borrelia burgdorferi strain and host sex influence pathogen prevalence and abundance in the tissues of a laboratory rodent host Molecular Ecology 31: 5872–5888.
DOI: 10.1111/mec.16694
Filatov S., Rego R. O. M. (2021) Argasidae: distribution and vectorial capacity in a changing global environment In: P. Nuttall (Ed.) Climate, Ticks and Disease chapter 31.
Genné D., Rossel M., Sarr A., Battilotti F., Rais O., Rego R. O. M., Voordouw M.J. (2021) Competition between strains of Borrelia afzelii in the host tissues and consequences for transmission to ticks The ISME Journal 2021: 2021.
DOI: 10.1038/s41396-021-00939-5
Hart T.M., Dupuis A.P., Tufts D.M., Blom A.M., Starkey S.R., Rego R. O. M., Ram S., Kraiszy P., Kramer L.D., Diuk-Wasser M.A., Kolokotronis S.-O., Lin Y.-P. (2021) Host tropism determination by convergent evolution of immunological evasion in the Lyme disease system PLoS Pathogens 7: e1009801.
DOI: 10.1371/journal.ppat.1009801
Hejduk L., Rathner P., Strnad M., Grubhoffer L., Štěrba J., Rego R. O. M., Muller N. (2021) Resonance assignment and secondary structure of DbpA protein from the European species, Borrelia afzelii. Biomolecular NMR Assignments 15: 415–420.
DOI: 10.1007/s12104-021-10039-2
Oh Y.J., Strnad M., Vancová M., Hain L., Salo J., Grubhoffer L., Nebesářová J., Hytoenen J., Hinterdorfer P., Rego R. O. M. (2021) 13 th EBSA congress, July 24-28, 2021, Vienna, Austria: Nanomechanical mechanisms of Borrelia interactions with extracellular matrix European Biophysics Journal with Biophysics Letters 50: S59.
DOI: 10.1007/s00249-021-01558-w 
Strnad M., Oh Y.J., Vancová M., Hain L., Salo J., Grubhoffer L., Nebesářová J., Hytönen J., Hinterdorfer P., Rego R. O. M. (2021) Nanomechanical mechanisms of Lyme disease spirochete motility enhancement in extracellular matrix Communications Biology 4: 268 .
DOI: 10.1038/s42003-021-01783-1
Wachter J., Martens J., Barbian K., Rego R. O. M., Rosa P. (2021) Epigenomic Landscape of Lyme Disease Spirochetes Reveals Novel Motifs mBio 12: e01288-21.
DOI: 10.1128/mBio.01288-21
Gobl J., Sinha , Šíma R., Perner J., Kopáček P., Valdés J. J., Rego R. O. M., Cabezas-Cruz A. (2020) Histone Methyltransferase DOT1L Is Involved in Larval Molting and Second Stage Nymphal Feeding in Ornithodoros moubata Vaccines 8: 157.
DOI: 10.3390/vaccines8020157
Kotsarenko K., Věchtová P., Lieskovská J., Fussy Z., Cabral-de-Mello D.C., Rego R. O. M., Alberdi P., Collins M., Bell-Sakyi L., Štěrba J., Grubhoffer L. (2020) Karyotype changes in long-term cultured tick cell lines Scientific Reports 10: 13443.
DOI: 10.1038/s41598-020-70330-5
Rego R. O. M., Lopez J.E., Cabezas-Cruz A. (2020) Editorial: Biological Drivers of Vector–Pathogen Interactions Frontiers in Cellular and Infection Microbiology 10: 609495.
DOI: 10.3389/fcimb.2020.609495
Strnad M., Grubhoffer L., Rego R. O. M. (2020) Novel targets and strategies to combat borreliosis Applied Microbiology and Biotechnology 104: 1915-1925.
DOI: 10.1007/s00253-020-10375-8
Strnad M., Rego R. O. M. (2020) The need to unravel the twisted nature of the Borrelia burgdorferi sensu lato complex across Europe Microbiology 166: 428–435.
DOI: 10.1099/mic.0.000899
Hodžić A., Mateos-Hernández L., Leschnik M., Alberdi P., Rego R. O. M., Contreras M., Villar M., de la Fuente J., Cabezas-Cruz A., Duscher G. G. (2019) Tick Bites Induce Anti-α-Gal Antibodies in Dogs Vaccines 7: 114.
DOI: 10.3390/vaccines7030114
Rego R. O. M., Trentelman J.J., Anguita J., Nijhof A., Sprong H., Klempa B., Hajdušek O., Tomás-Corázar J., Azagi T., Strnad M., Knorr S. , Šíma R., Jalovecká M., Havlíková S., Ličková M., Sláviková M., Kopáček P., Grubhoffer L., Hovius J. (2019) Counterattacking the tick bite: towards a rational design of anti-tick vaccines targeting pathogen transmission Parasites & Vectors 12: 229.
DOI: 10.1186/s13071-019-3468-x
Rodríguez-Ruano S.M., Škochová V., Rego R. O. M., Schmidt J.O., Roachell W., Hypša V., Nováková E. (2018) Microbiomes of North American Triatominae: The Grounds for Chagas Disease Epidemiology Frontiers in Microbiology 9: 1167.
DOI: 10.3389/fmicb.2018.01167
Věchtová P., Štěrbová J., Štěrba J., Vancová M., Rego R. O. M., Selinger M., Strnad M., Golovchenko M., Rudenko N., Grubhoffer L. (2018) A bite so sweet: the glycobiology interface of tick-host-pathogen interactions Parasites & Vectors 11: 594.
DOI: 10.1186/s13071-018-3062-7
Belli A., Sarr A., Rais O., Rego R. O. M., Voordouw M.J. (2017) Ticks infected via co-feeding transmission can transmit Lyme borreliosis to vertebrate hosts Scientific Reports 7: 5006.
DOI: 10.1038/s41598-017-05231-1

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