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Items: 1 to 20 of 130

1.
2.

The effect of host genetics on in vitro performance of bovine monocyte-derived macrophages.

Emam M, Tabatabaei S, Sargolzaei M, Sharif S, Schenkel F, Mallard B.

J Dairy Sci. 2019 Aug 7. pii: S0022-0302(19)30673-3. doi: 10.3168/jds.2018-15960. [Epub ahead of print]

3.

Immune Responses in the Eye-Associated Lymphoid Tissues of Chickens after Ocular Inoculation with Vaccine and Virulent Strains of the Respiratory Infectious Laryngotracheitis Virus (ILTV).

Beltrán G, Hurley DJ, Gogal RM Jr, Sharif S, Read LR, Williams SM, Jerry CF, Maekawa DA, García M.

Viruses. 2019 Jul 10;11(7). pii: E635. doi: 10.3390/v11070635.

4.

Innate antiviral responses are induced by TLR3 and TLR4 ligands in chicken tracheal epithelial cells: Communication between epithelial cells and macrophages.

Barjesteh N, Taha-Abdelaziz K, Kulkarni RR, Sharif S.

Virology. 2019 Aug;534:132-142. doi: 10.1016/j.virol.2019.06.003. Epub 2019 Jun 8.

PMID:
31255797
5.

Development of an aerosolized Mannheimia haemolytica experimental pneumonia model in clean-catch colostrum-deprived calves.

Bassel LL, Kaufman EI, Alsop SNA, Stinson KJ, Hewson J, Sharif S, Vulikh K, Siracusa L, Clark ME, Caswell JL.

Vet Microbiol. 2019 Jul;234:34-43. doi: 10.1016/j.vetmic.2019.05.012. Epub 2019 May 19.

PMID:
31213270
6.

Development of innate immunity in chicken embryos and newly hatched chicks: a disease control perspective.

Alkie TN, Yitbarek A, Hodgins DC, Kulkarni RR, Taha-Abdelaziz K, Sharif S.

Avian Pathol. 2019 Aug;48(4):288-310. doi: 10.1080/03079457.2019.1607966.

PMID:
31063007
7.

Single stranded (ss)RNA-mediated antiviral response against infectious laryngotracheitis virus infection.

Abdul-Cader MS, De Silva Senapathi U, Ahmed-Hassan H, Sharif S, Abdul-Careem MF.

BMC Microbiol. 2019 Feb 8;19(1):34. doi: 10.1186/s12866-019-1398-6.

8.

Corrigendum: Detecting and Predicting Emerging Disease in Poultry With the Implementation of New Technologies and Big Data: A Focus on Avian Influenza Virus.

Astill J, Dara RA, Fraser EDG, Sharif S.

Front Vet Sci. 2019 Jan 22;5:337. doi: 10.3389/fvets.2018.00337. eCollection 2018.

9.

Dietary selenium supplementation enhances antiviral immunity in chickens challenged with low pathogenic avian influenza virus subtype H9N2.

Shojadoost B, Kulkarni RR, Yitbarek A, Laursen A, Taha-Abdelaziz K, Negash Alkie T, Barjesteh N, Quinteiro-Filho WM, Smith TK, Sharif S.

Vet Immunol Immunopathol. 2019 Jan;207:62-68. doi: 10.1016/j.vetimm.2018.12.002. Epub 2018 Dec 13.

PMID:
30593352
10.

Antiviral response elicited against avian influenza virus infection following activation of toll-like receptor (TLR)7 signaling pathway is attributable to interleukin (IL)-1β production.

Abdul-Cader MS, De Silva Senapathi U, Nagy E, Sharif S, Abdul-Careem MF.

BMC Res Notes. 2018 Dec 4;11(1):859. doi: 10.1186/s13104-018-3975-4.

11.

Lactobacillus elicits a 'Marmite effect' on the chicken cecal microbiome.

Zou A, Sharif S, Parkinson J.

NPJ Biofilms Microbiomes. 2018 Nov 9;4:27. doi: 10.1038/s41522-018-0070-5. eCollection 2018.

12.

Detecting and Predicting Emerging Disease in Poultry With the Implementation of New Technologies and Big Data: A Focus on Avian Influenza Virus.

Astill J, Dara RA, Fraser EDG, Sharif S.

Front Vet Sci. 2018 Oct 30;5:263. doi: 10.3389/fvets.2018.00263. eCollection 2018. Review. Erratum in: Front Vet Sci. 2019 Jan 22;5:337.

13.

The effects of in ovo administration of encapsulated Toll-like receptor 21 ligand as an adjuvant with Marek's disease vaccine.

Bavananthasivam J, Read L, Astill J, Yitbarek A, Alkie TN, Abdul-Careem MF, Wootton SK, Behboudi S, Sharif S.

Sci Rep. 2018 Nov 6;8(1):16370. doi: 10.1038/s41598-018-34760-6.

14.

Characterization of immunogenicity of avian influenza antigens encapsulated in PLGA nanoparticles following mucosal and subcutaneous delivery in chickens.

Alkie TN, Yitbarek A, Taha-Abdelaziz K, Astill J, Sharif S.

PLoS One. 2018 Nov 1;13(11):e0206324. doi: 10.1371/journal.pone.0206324. eCollection 2018.

15.

Author Correction: Gut microbiota-mediated protection against influenza virus subtype H9N2 in chickens is associated with modulation of the innate responses.

Yitbarek A, Taha-Abdelaziz K, Hodgins DC, Read L, Nagy É, Weese JS, Caswell JL, Parkinson J, Sharif S.

Sci Rep. 2018 Oct 31;8(1):16367. doi: 10.1038/s41598-018-34065-8.

16.

When too much isn't enough: Does current food production meet global nutritional needs?

Kc KB, Dias GM, Veeramani A, Swanton CJ, Fraser D, Steinke D, Lee E, Wittman H, Farber JM, Dunfield K, McCann K, Anand M, Campbell M, Rooney N, Raine NE, Acker RV, Hanner R, Pascoal S, Sharif S, Benton TG, Fraser EDG.

PLoS One. 2018 Oct 23;13(10):e0205683. doi: 10.1371/journal.pone.0205683. eCollection 2018.

17.

A Comparison of Toll-Like Receptor 5 and 21 Ligands as Adjuvants for a Formaldehyde Inactivated H9N2 Avian Influenza Virus Vaccine in Chickens.

Astill J, Alkie T, Yitbarek A, Taha-Abdelaziz K, Shojadoost B, Petrik JJ, Nagy É, Sharif S.

Viral Immunol. 2018 Nov;31(9):605-612. doi: 10.1089/vim.2018.0072. Epub 2018 Sep 15.

PMID:
30222508
18.

Gut microbiota-mediated protection against influenza virus subtype H9N2 in chickens is associated with modulation of the innate responses.

Yitbarek A, Taha-Abdelaziz K, Hodgins DC, Read L, Nagy É, Weese JS, Caswell JL, Parkinson J, Sharif S.

Sci Rep. 2018 Sep 4;8(1):13189. doi: 10.1038/s41598-018-31613-0. Erratum in: Sci Rep. 2018 Oct 31;8(1):16367.

19.

PLGA-encapsulated CpG ODN and Campylobacter jejuni lysate modulate cecal microbiota composition in broiler chickens experimentally challenged with C. jejuni.

Taha-Abdelaziz K, Yitbarek A, Alkie TN, Hodgins DC, Read LR, Weese JS, Sharif S.

Sci Rep. 2018 Aug 13;8(1):12076. doi: 10.1038/s41598-018-30510-w.

20.

Characterizaton of gamma delta T cells in Marek's disease virus (Gallid herpesvirus 2) infection of chickens.

Laursen AMS, Kulkarni RR, Taha-Abdelaziz K, Plattner BL, Read LR, Sharif S.

Virology. 2018 Sep;522:56-64. doi: 10.1016/j.virol.2018.06.014. Epub 2018 Jul 12.

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