Divergent macrophage responses to Mycobacterium bovis among naturally exposed uninfected and infected cattle
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G. López-Rincón | C. Estrada-Chávez | J. A. Gutiérrez-Pabello | H. Esquivel-Solís | C. Morales-Martínez | Omar A Alcaraz‐López | Cindy García-Gil | José A Gutiérrez‐Pabello
[1] Simon J. More,et al. A genome-wide association study for genetic susceptibility to Mycobacterium bovis infection in dairy cattle identifies a susceptibility QTL on chromosome 23 , 2016, Genetics Selection Evolution.
[2] Yongyan Wu,et al. Generation of transgenic cattle expressing human β‐defensin 3 as an approach to reducing susceptibility to Mycobacterium bovis infection , 2016, The FEBS journal.
[3] Yan Zhang,et al. TALE nickase-mediated SP110 knockin endows cattle with increased resistance to tuberculosis , 2015, Proceedings of the National Academy of Sciences.
[4] Deming Zhao,et al. Transcriptome changes upon in vitro challenge with Mycobacterium bovis in monocyte-derived macrophages from bovine tuberculosis-infected and healthy cows. , 2015, Veterinary immunology and immunopathology.
[5] D. A. Magee,et al. Comparative Functional Genomics and the Bovine Macrophage Response to Strains of the Mycobacterium Genus , 2014, Front. Immunol..
[6] J. Woolliams,et al. Genomics and disease resistance studies in livestock , 2014, Livestock science.
[7] J. Woolliams,et al. Genome-wide association study identifies novel loci associated with resistance to bovine tuberculosis , 2022 .
[8] Y. López-Vidal,et al. Nitric Oxide Not Apoptosis Mediates Differential Killing of Mycobacterium bovis in Bovine Macrophages , 2013, PloS one.
[9] Á. Menin,et al. Asymptomatic Cattle Naturally Infected with Mycobacterium bovis Present Exacerbated Tissue Pathology and Bacterial Dissemination , 2013, PloS one.
[10] L. Vagnoni,et al. Vaccination with a BCG Strain Overexpressing Ag85B Protects Cattle against Mycobacterium bovis Challenge , 2012, PloS one.
[11] Y. Cavalcanti,et al. Role of TNF-Alpha, IFN-Gamma, and IL-10 in the Development of Pulmonary Tuberculosis , 2012, Pulmonary medicine.
[12] L. Casanova,et al. Population structure of Mycobacterium bovis isolates from cattle in Mexico , 2012 .
[13] A. Stringaro,et al. Infection of human THP-1 cells with dormant Mycobacterium tuberculosis. , 2012, Microbes and infection.
[14] H. Vordermeier,et al. Duration of Immunity against Mycobacterium bovis following Neonatal Vaccination with Bacillus Calmette-Guérin Danish: Significant Protection against Infection at 12, but Not 24, Months , 2012, Clinical and Vaccine Immunology.
[15] R. G. Hewinson,et al. The influence of cattle breed on susceptibility to bovine tuberculosis in Ethiopia , 2012, Comparative immunology, microbiology and infectious diseases.
[16] J. Ernst,et al. Tuberculosis pathogenesis and immunity. , 2012, Annual review of pathology.
[17] Feliciano Milián Suazo,et al. Population structure of Mycobacterium bovis isolates from cattle in Mexico. , 2012, Preventive veterinary medicine.
[18] E. Caron,et al. RhoG is required for both FcγR- and CR3-mediated phagocytosis , 2011, Journal of Cell Science.
[19] G. Ameni,et al. Cytokine responses of Holstein and Sahiwal zebu derived monocytes after mycobacterial infection , 2011, Tropical Animal Health and Production.
[20] Yang Wang,et al. Effects of Mycobacterium bovis on monocyte-derived macrophages from bovine tuberculosis infection and healthy cattle. , 2011, FEMS microbiology letters.
[21] S. Sreevatsan,et al. Tuberculosis Immunity: Opportunities from Studies with Cattle , 2010, Clinical & developmental immunology.
[22] S. Downs,et al. Pathology of naturally occurring bovine tuberculosis in England and Wales. , 2008, Veterinary journal.
[23] Thomas D. Schmittgen,et al. Analyzing real-time PCR data by the comparative CT method , 2008, Nature Protocols.
[24] C. Bleck,et al. On the killing of mycobacteria by macrophages , 2007, Cellular microbiology.
[25] M. Palmer,et al. Associations between cytokine gene expression and pathology in Mycobacterium bovis infected cattle. , 2007, Veterinary immunology and immunopathology.
[26] S. Gordon,et al. High Prevalence and Increased Severity of Pathology of Bovine Tuberculosis in Holsteins Compared to Zebu Breeds under Field Cattle Husbandry in Central Ethiopia , 2007, Clinical and Vaccine Immunology.
[27] H. Vordermeier,et al. Is Interleukin-4δ3 Splice Variant Expression in Bovine Tuberculosis a Marker of Protective Immunity? , 2007, Infection and Immunity.
[28] J. Cassidy. The pathogenesis and pathology of bovine tuberculosis with insights from studies of tuberculosis in humans and laboratory animal models. , 2006, Veterinary microbiology.
[29] M. Denis,et al. IFN‐γ enhances bovine macrophage responsiveness to Mycobacterium bovis: Impact on bacterial replication, cytokine release and macrophage apoptosis , 2005, Immunology and cell biology.
[30] R. Skuce,et al. Influence of pathological progression on the balance between cellular and humoral immune responses in bovine tuberculosis , 2005, Immunology.
[31] H. Vordermeier,et al. Cattle as a model for development of vaccines against human tuberculosis. , 2005, Tuberculosis.
[32] P. Morris,et al. The transmission of Mycobacterium bovis infection to cattle. , 2003, Research in veterinary science.
[33] P. Morris,et al. Genetic and management factors that influence the susceptibility of cattle to Mycobacterium bovis infection , 2002, Animal Health Research Reviews.
[34] J. Pollock,et al. Mycobacterium bovis infection and tuberculosis in cattle. , 2002, Veterinary journal.
[35] R. Clifton-Hadley,et al. Cattle-to-cattle transmission of Mycobacterium bovis. , 2001, Tuberculosis.
[36] H. E. Kennedy,et al. Immune responses in bovine tuberculosis. , 2001, Tuberculosis.
[37] G. Buchan,et al. In vitro control of Mycobacterium bovis by macrophages. , 2001, Tuberculosis.
[38] F D Menzies,et al. Cattle-to-cattle transmission of bovine tuberculosis. , 2000, Veterinary journal.
[39] D. McMurray,et al. Pathologic findings and association of Mycobacterium bovis infection with the bovine NRAMP1 gene in cattle from herds with naturally occurring tuberculosis. , 2000, American journal of veterinary research.
[40] E. Costello,et al. A study of cattle-to-cattle transmission of Mycobacterium bovis infection. , 1998, Veterinary journal.
[41] C. Daborn,et al. The epidemiology of Mycobacterium bovis infections in animals and man: a review. , 1995, Tubercle and lung disease : the official journal of the International Union against Tuberculosis and Lung Disease.