Geoffrey H Hutchings
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Explore the profile of Geoffrey H Hutchings including associated specialties, affiliations and a list of published articles.
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18
Citations
634
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Recent Articles
1.
Ferris N, Clavijo A, Yang M, Velazquez-Salinas L, Nordengrahn A, Hutchings G, et al.
J Virol Methods
. 2012 Jan;
180(1-2):96-100.
PMID: 22230813
Two lateral flow devices (LFD) for the detection of vesicular stomatitis (VS) virus (VSV), types Indiana (VSV-IND) and New Jersey (VSV-NJ) were developed using monoclonal antibodies C1 and F25VSVNJ-45 to...
2.
Ferris N, Grazioli S, Hutchings G, Brocchi E
J Virol Methods
. 2011 Jun;
175(2):253-60.
PMID: 21635921
A sandwich ELISA using recombinant integrin αvβ6 as a capture ligand and serotype-specific monoclonal antibodies (Mabs) as detecting reagents has been compared with a polyclonal antibody based ELISA (using type-specific...
3.
James H, Ebert K, McGonigle R, Reid S, Boonham N, Tomlinson J, et al.
J Virol Methods
. 2009 Dec;
164(1-2):68-74.
PMID: 19963011
A loop-mediated isothermal amplification (LAMP) assay was developed for the detection of African swine fever virus (ASFV). This assay targets the topoisomerase II gene of ASFV and its specificity was...
4.
Ferris N, Nordengrahn A, Hutchings G, Paton D, Kristersson T, Merza M
J Virol Methods
. 2009 Oct;
163(2):477-80.
PMID: 19819260
A lateral flow device (LFD) for the detection of swine vesicular disease (SVD) virus (SVDV) and differential diagnosis from foot-and-mouth disease (FMD) was developed using a monoclonal antibody (Mab C70)....
5.
Ferris N, Nordengrahn A, Hutchings G, Paton D, Kristersson T, Brocchi E, et al.
J Virol Methods
. 2009 Oct;
163(2):474-6.
PMID: 19815031
A lateral flow device (LFD) for the detection of foot-and-mouth disease virus (FMDV) of the SAT 2 serotype was developed using a monoclonal antibody (Mab 2H6). The performance of the...
6.
Ayelet G, Mahapatra M, Gelaye E, Egziabher B, Rufeal T, Sahle M, et al.
Emerg Infect Dis
. 2009 Oct;
15(9):1409-17.
PMID: 19788808
Foot-and-mouth disease (FMD) is endemic to sub-Saharan Africa. To further understand its complex epidemiology, which involves multiple virus serotypes and host species, we characterized the viruses recovered from FMD outbreaks...
7.
Reid S, Ebert K, Bachanek-Bankowska K, Batten C, Sanders A, Wright C, et al.
J Vet Diagn Invest
. 2009 May;
21(3):321-30.
PMID: 19407083
Rapid and accurate diagnosis is essential for effective control of foot-and-mouth disease (FMD). The present report describes the practical steps undertaken to deploy a real-time reverse transcription polymerase chain reaction...
8.
Ferris N, Nordengrahn A, Hutchings G, Reid S, King D, Ebert K, et al.
J Virol Methods
. 2008 Oct;
155(1):10-7.
PMID: 18848845
A lateral flow device (LFD) for the detection of all seven serotypes of foot-and-mouth disease virus (FMDV) was developed using a monoclonal antibody (Mab 1F10) shown to be pan-reactive to...
9.
Knowles N, Wadsworth J, Reid S, Swabey K, El-Kholy A, Abd El-Rahman A, et al.
Emerg Infect Dis
. 2008 Feb;
13(10):1593-6.
PMID: 18258017
We describe the characterization of a foot-and-mouth disease (FMD) serotype A virus responsible for recent outbreaks of disease in Egypt. Phylogenetic analysis of VP1 nucleotide sequences demonstrated a close relationship...
10.
Shaw A, Reid S, Ebert K, Hutchings G, Ferris N, King D
J Virol Methods
. 2007 Apr;
143(1):81-5.
PMID: 17397937
An automated one-step real-time reverse transcription polymerase chain reaction (rRT-PCR) protocol was optimised and evaluated for the routine diagnosis of foot-and-mouth disease (FMD). Parallel testing of RNA samples (n=257) indicated...