Literature DB >> 25464969

Human adenovirus type 8: the major agent of epidemic keratoconjunctivitis (EKC).

Arun Kumar Adhikary1, Urmila Banik2.   

Abstract

Human adenovirus type 8 (HAdV-8) is the most common causative agent of a highly contagious eye disease known as epidemic keratoconjunctivitis (EKC). HAdV-8 strains have been classified into genome types HAdV-8A to 8K and HAdV/D1 to D12 according to restriction endonuclease analysis. This review focuses on the significance of HAdV-8 as an agent of EKC. Molecular analysis of HAdV-8 genome types HAdV-53 and HAdV-54 was performed to reveal potential genetic variation in the hexon and fiber, which might affect the antigenicity and tropism of the virus, respectively. On the basis of the published data, three patterns of HAdV-8 genome type distribution were observed worldwide: (1) genome types restricted to a microenvironment, (2) genome types distributed within a country, and (3) globally dispersed genome types. Simplot and zPicture showed that the HAdV-8 genome types were nearly identical to each other. HAdV-54 is very close to the HAdV-8P, B and E genomes, except in the hexon. In a restriction map, HAdV-8P, B, and E share a very high percentage of restriction sites with each other. Hypervariable regions (HVRs) of the hexon were conserved and were 100% identical among the genome types. The fiber knob of HAdV-8P, A, E, J and HAdV-53 were 100% identical. In phylogeny, HVRs of the hexon and fiber knob of the HAdV-8 genome types segregated into monophyletic clusters. Neutralizing antibodies against one genome type will provide protection against other genome types, and the selection of future vaccine strains would be simple due to the stable HVRs. Molecular analysis of whole genomes, particularly of the capsid proteins of the remaining genome types, would be useful to substantiate our observations.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Adenovirus type 8; EKC; Genome type; Molecular analysis

Mesh:

Substances:

Year:  2014        PMID: 25464969     DOI: 10.1016/j.jcv.2014.10.015

Source DB:  PubMed          Journal:  J Clin Virol        ISSN: 1386-6532            Impact factor:   3.168


  14 in total

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2.  [Adenoviral keratoconjunctivitis].

Authors:  U Pleyer; F Birnbaum
Journal:  Ophthalmologe       Date:  2015-05       Impact factor: 1.059

3.  Determinants of Outcomes of Adenoviral Keratoconjunctivitis.

Authors:  Cecilia S Lee; Aaron Y Lee; Lakshmi Akileswaran; David Stroman; Kathryn Najafi-Tagol; Steve Kleiboeker; James Chodosh; Amalia Magaret; Anna Wald; Russell N Van Gelder
Journal:  Ophthalmology       Date:  2018-03-27       Impact factor: 12.079

4.  Molecular phylogeny of a novel human adenovirus type 8 strain causing a prolonged, multi-state keratoconjunctivitis epidemic in Germany.

Authors:  Elias Hage; Werner Espelage; Tim Eckmanns; Daryl M Lamson; Laura Pantó; Tina Ganzenmueller; Albert Heim
Journal:  Sci Rep       Date:  2017-01-13       Impact factor: 4.379

5.  Outbreaks of epidemic keratoconjunctivitis caused by human adenovirus type 8 in the Tibet Autonomous Region of China in 2016.

Authors:  Zhenqiang Lei; Zhen Zhu; Bai Ma Ci Wang; Hong Mei; Hong Li; Dan Zeng Gong Ga; Guo Jie; Mi Ma Bu Chi; Sheng Zhang; Chaofeng Ma; Wenbo Xu
Journal:  PLoS One       Date:  2017-09-15       Impact factor: 3.240

6.  Expression profile of Epstein-Barr virus and human adenovirus small RNAs in tonsillar B and T lymphocytes.

Authors:  Farzaneh Assadian; Wael Kamel; Göran Laurell; Catharina Svensson; Tanel Punga; Göran Akusjärvi
Journal:  PLoS One       Date:  2017-05-25       Impact factor: 3.240

7.  Worldwide increased prevalence of human adenovirus type 3 (HAdV-3) respiratory infections is well correlated with heterogeneous hypervariable regions (HVRs) of hexon.

Authors:  Ezazul Haque; Urmila Banik; Tahmina Monowar; Leela Anthony; Arun Kumar Adhikary
Journal:  PLoS One       Date:  2018-03-28       Impact factor: 3.240

8.  Comparison of the safety and efficacy of topical Tacrolimus (0.03%) versus dexamethasone (0.05%) for subepithelial infiltrates after adenoviral conjunctivitis.

Authors:  Rahul Bhargava; Prachi Kumar
Journal:  Indian J Ophthalmol       Date:  2019-05       Impact factor: 1.848

9.  Virology and epidemiology analyses of global adenovirus-associated conjunctivitis outbreaks, 1953-2013.

Authors:  L Zhang; N Zhao; J Sha; C Wang; X Jin; S Amer; S Liu
Journal:  Epidemiol Infect       Date:  2016-01-06       Impact factor: 4.434

10.  Distribution and Molecular Characterization of Human Adenovirus and Epstein-Barr Virus Infections in Tonsillar Lymphocytes Isolated from Patients Diagnosed with Tonsillar Diseases.

Authors:  Farzaneh Assadian; Karl Sandström; Kåre Bondeson; Göran Laurell; Adnan Lidian; Catharina Svensson; Göran Akusjärvi; Anders Bergqvist; Tanel Punga
Journal:  PLoS One       Date:  2016-05-02       Impact factor: 3.240

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