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Chapter 6: TBE in children
43. Barkhash AV, Perelygin AA, Babenko VN,
Brinton MA, Voevoda MI. Single nucleotide
polymorphism in the promoter region of the
CD209 gene is associated with human
predisposition to severe forms of tick-borne
encephalitis. Antiviral Res. 2012;93:64-8.
44. Kindberg E, Mickiene A, Ax C, et al. A deletion
in the chemokine receptor 5 (CCR5) gene is
associated with tickborne encephalitis. J Infect
Dis. 2008;197:266-9.
45. Kindberg E, Vene S, Mickiene A, Lundkvist Å,
Lindquist L, Svensson L. A functional Toll-like
receptor 3 gene (TLR3) may be a risk factor for
tick-borne encephalitis virus (TBEV) infection. J
Infect Dis. 2011;203:523-8.
46. Mickienė A, Pakalnienė J, Nordgren J, et al.
Polymorphisms in chemokine receptor 5 and
Toll-like receptor 3 genes are risk factors for
clinical tick-borne encephalitis in the
Lithuanian population. PLoS One.
2014;9:e106798.
47. Palus M, Formanová P, Salát J, Žampachová E,
Elsterová J, Růžek D. Analysis of serum levels of
cytokines, chemokines, growth factors, and
monoamine neurotransmitters in patients with
tick-borne encephalitis: identification of novel
inflammatory markers with implications for
pathogenesis. J Med Virol.2015;87:885-92.
48. Fowler Å, Ygberg S, Bogdanovic G, Wickström,
R. Biomarkers in Cerebrospinal Fluid of
Children With Tick-borne Encephalitis:
Association With Long-term Outcome. Pediatr
Infect Dis J. 2016;35:961-6.
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