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Chapter 2a: Virology
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and tick cell lines to infection with various encephalitis virus and its neutralization by a
flaviviruses. Med Vet Entomol. 2004;18:268- monoclonal antibody. Nat Commun. 2018 Jan
74. 30;9(1):436.
112. Růzek D, Bell-Sakyi L, Kopecký J, Grubhoffer L.
Growth of tick-borne encephalitis virus
(European subtype) in cell lines from vector
and non-vector ticks. Virus Res. 2008;137:142-
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113. Bell-Sakyi L, Růzek D, Gould EA. Cell lines from
the soft tick Ornithodoros moubata. Exp Appl
Acarol. 2009;49:209-19.
114. Weisheit S, Villar M, Tykalová H, et al. Ixodes
scapularis and ixodes ricinus tick cell lines
respond to infection with tick-borne
encephalitis virus: transcriptomic and
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115. Senigl F, Grubhoffer L, Kopecky J. Differences
in maturation of tick-borne encephalitis virus
in mammalian and tick cell line. Intervirology.
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116. Demina TV, Dzhioev YP, Verkhozina MM,
Kozlova IV, Tkachev SE, Plyusnin A,
Doroshchenko EK, Lisak OV, Zlobin VI.
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encephalitis virus variants with a set of
molecular probes. J Med Virol. 2010;82(6):965
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117. Kozlova IV, Demina TV, Tkachev SE,
Doroschenko EK, Lisak OV, Verkhozina MM,
Karan LS, Dzhioev YP, Paramonov AI, Suntsova
OV, Savinova YS, Chernoivanova OO, Ruzek D,
Tikunova NV, Zlobin VI. Characteristics of the
Baikal subtype of tick-borne encephalitis virus
circulating in Eastern Siberia. Acta Biomedica
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118. Dai X, Shang G, Lu S, Yang J, Xu J. A new
subtype of eastern tick-borne encephalitis
virus discovered in Qinghai-Tibet Plateau,
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