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CERID Bibliography

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Journal Article
Hawn TR, Berrington WR, Smith IA, Uematsu S, Akira S, Aderem A, Smith KD, Skerrett SJ. Altered inflammatory responses in TLR5-deficient mice infected with Legionella pneumophila. J Immunol. 2007 ;179(10):6981-7.
Torres-Santos ECaio, Sampaio-Santos MIsabel, Buckner FS, Yokoyama K, Gelb M, Urbina JA, Rossi-Bergmann B. Altered sterol profile induced in Leishmania amazonensis by a natural dihydroxymethoxylated chalcone. J Antimicrob Chemother. 2009 ;63(3):469-72.
Bang I-S, Frye JG, McClelland M, Velayudhan J, Fang FC. Alternative sigma factor interactions in Salmonella: sigma and sigma promote antioxidant defences by enhancing sigma levels. Mol Microbiol. 2005 ;56(3):811-23.
Fang FC, Libby SJ, Buchmeier NA, Loewen PC, Switala J, Harwood J, Guiney DG. The alternative sigma factor katF (rpoS) regulates Salmonella virulence. Proc Natl Acad Sci U S A. 1992 ;89(24):11978-82.
Crouch M-L, Becker LA, Bang I-S, Tanabe H, Ouellette AJ, Fang FC. The alternative sigma factor sigma is required for resistance of Salmonella enterica serovar Typhimurium to anti-microbial peptides. Mol Microbiol. 2005 ;56(3):789-99.
Testerman TL, Vazquez-Torres A, Xu Y, Jones-Carson J, Libby SJ, Fang FC. The alternative sigma factor sigmaE controls antioxidant defences required for Salmonella virulence and stationary-phase survival. Mol Microbiol. 2002 ;43(3):771-82.
Palmer GH. The Ames test: a look at the Salmonella/mammalian microsome mutagenicity test. Vet Hum Toxicol. 1980 ;22(1):23-5.
Palmer GH, Buswell JF, Dowrick JS, Yeoman GH. Amoxycillin: a new veterinary penicillin. Vet Rec. 1976 ;99(5):84-5.
Palmer GH, Bywater RJ, Francis ME. Amoxycillin: distribution and clinical efficacy in calves. Vet Rec. 1977 ;100(23):487-91.
Rose TM, Ryan JT, Schultz ER, Raden BW, Tsai C-C. Analysis of 4.3 kilobases of divergent locus B of macaque retroperitoneal fibromatosis-associated herpesvirus reveals a close similarity in gene sequence and genome organization to Kaposi's sarcoma-associated herpesvirus. J Virol. 2003 ;77(9):5084-97.
A Lopez M, Hines MT, Palmer GH, Knowles DP, Alperin DC, Hines SA. Analysis of anamnestic immune responses in adult horses and priming in neonates induced by a DNA vaccine expressing the vapA gene of Rhodococcus equi. Vaccine. 2003 ;21(25-26):3815-25.
Van Voorhis WC, Barrett LK, Sweeney YT, Kuo CC, Patton DL. Analysis of lymphocyte phenotype and cytokine activity in the inflammatory infiltrates of the upper genital tract of female macaques infected with Chlamydia trachomatis. J Infect Dis. 1996 ;174(3):647-50.
Vazquez-Torres A, Stevanin T, Jones-Carson J, Castor M, Read RC, Fang FC. Analysis of nitric oxide-dependent antimicrobial actions in macrophages and mice. Methods Enzymol. 2008 ;437:521-38.
Cantor GH, Palmer GH, Fenwick BW. Analysis of post mortem aqueous humour chemistry in the horse, with particular reference to urea nitrogen and creatinine. Equine Vet J. 1989 ;21(4):288-91.
Macmillan H, Brayton KA, Palmer GH, McGuire TC, Munske G, Siems WF, Brown WC. Analysis of the Anaplasma marginale major surface protein 1 complex protein composition by tandem mass spectrometry. J Bacteriol. 2006 ;188(13):4983-91.
Lu S, Manges AR, Xu Y, Fang FC, Riley LW. Analysis of virulence of clinical isolates of Salmonella enteritidis in vivo and in vitro. Infect Immun. 1999 ;67(11):5651-7.
Han S, Norimine J, Brayton KA, Palmer GH, Scoles GA, Brown WC. Anaplasma marginale infection with persistent high-load bacteremia induces a dysfunctional memory CD4+ T lymphocyte response but sustained high IgG titers. Clin Vaccine Immunol. 2010 ;17(12):1881-90.
Abbott JR, Palmer GH, Howard CJ, Hope JC, Brown WC. Anaplasma marginale major surface protein 2 CD4+-T-cell epitopes are evenly distributed in conserved and hypervariable regions (HVR), whereas linear B-cell epitopes are predominantly located in the HVR. Infect Immun. 2004 ;72(12):7360-6.
Visser ES, McGuire TC, Palmer GH, Davis WC, Shkap V, Pipano E, Knowles DP. The Anaplasma marginale msp5 gene encodes a 19-kilodalton protein conserved in all recognized Anaplasma species. Infect Immun. 1992 ;60(12):5139-44.
Gelati M, Aplin AC, Fogel E, Smith KD, Nicosia RF. The angiogenic response of the aorta to injury and inflammatory cytokines requires macrophages. J Immunol. 2008 ;181(8):5711-9.
W Liles C. Is angiopoietin-2 the key piece in the sepsis puzzle?*. Crit Care Med. 2012 ;40(11):3100-1.
Matute-Bello G, Frevert CW, Martin TR. Animal models of acute lung injury. Am J Physiol Lung Cell Mol Physiol. 2008 ;295(3):L379-99.
Fang FC. Antibiotic and ROS linkage questioned. Nat Biotechnol. 2013 ;31(5):415-6.
Wilkerson C, Samadpour M, van Kirk N, Roberts MC. Antibiotic resistance and distribution of tetracycline resistance genes in Escherichia coli O157:H7 isolates from humans and bovines. Antimicrob Agents Chemother. 2004 ;48(3):1066-7.
Ushe TC, Palmer GH, Sotomayor L, Figueroa JV, Buening GM, Perryman LE, McElwain TF. Antibody response to a Babesia bigemina rhoptry-associated protein 1 surface-exposed and neutralization-sensitive epitope in immune cattle. Infect Immun. 1994 ;62(12):5698-701.

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