Gene Expression Profiling of Classically Activated Macrophages in Leishmania infantum Infection: Response to Metabolic Pre-Stimulus with Itaconic Acid
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[1] Y. Goto,et al. Pathological roles of macrophages in Leishmania infections. , 2023, Parasitology international.
[2] Yanling Zhang,et al. Itaconate and itaconate derivatives target JAK1 to suppress alternative activation of macrophages. , 2022, Cell metabolism.
[3] Wanjun Chen,et al. Modulation of Macrophage Immunometabolism: A New Approach to Fight Infections , 2022, Frontiers in Immunology.
[4] L. O’Neill,et al. The role of itaconate in host defense and inflammation , 2022, The Journal of clinical investigation.
[5] J. Estaquier,et al. Immune-metabolic interactions between Leishmania and macrophage host. , 2021, Current opinion in microbiology.
[6] E. Carmelo,et al. Early Transcriptional Liver Signatures in Experimental Visceral Leishmaniasis , 2021, International journal of molecular sciences.
[7] K. Engeland,et al. Ki-67 gene expression , 2021, Cell Death & Differentiation.
[8] S. Shaffer,et al. Succination inactivates gasdermin D and blocks pyroptosis , 2020, Science.
[9] Eleanor C. Saunders,et al. Immunometabolism of Leishmania granulomas , 2020, Immunology and cell biology.
[10] L. O’Neill,et al. Cytokine-like Roles for Metabolites in Immunity. , 2020, Molecular cell.
[11] D. M. Simons,et al. Comparative evaluation of itaconate and its derivatives reveals divergent inflammasome and type I interferon regulation in macrophages , 2020, Nature metabolism.
[12] A. Viola,et al. The Metabolic Signature of Macrophage Responses , 2019, Front. Immunol..
[13] B. VanderVen,et al. Immunometabolism at the interface between macrophages and pathogens , 2019, Nature Reviews Immunology.
[14] M. Oosting,et al. The Itaconate Pathway Is a Central Regulatory Node Linking Innate Immune Tolerance and Trained Immunity. , 2019, Cell metabolism.
[15] S. Croft,et al. Leishmaniasis , 2018, The Lancet.
[16] J. Weiss,et al. Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors , 2018, The Journal of clinical investigation.
[17] A. González-García,et al. Transcriptional Profiling of Immune-Related Genes in Leishmania infantum-Infected Mice: Identification of Potential Biomarkers of Infection and Progression of Disease , 2018, Front. Cell. Infect. Microbiol..
[18] Edward T Chouchani,et al. Itaconate is an anti-inflammatory metabolite that activates Nrf2 via alkylation of KEAP1 , 2018, Nature.
[19] M. Muñoz,et al. Analytical Performance of Four Polymerase Chain Reaction (PCR) and Real Time PCR (qPCR) Assays for the Detection of Six Leishmania Species DNA in Colombia , 2017, Front. Microbiol..
[20] R. Xavier,et al. Succinate Dehydrogenase Supports Metabolic Repurposing of Mitochondria to Drive Inflammatory Macrophages , 2016, Cell.
[21] A. González-García,et al. The Challenge of Stability in High-Throughput Gene Expression Analysis: Comprehensive Selection and Evaluation of Reference Genes for BALB/c Mice Spleen Samples in the Leishmania infantum Infection Model , 2016, PloS one.
[22] J. Stumhofer,et al. ICOS Co-Stimulation: Friend or Foe? , 2016, Front. Immunol..
[23] Maxim N. Artyomov,et al. Itaconate Links Inhibition of Succinate Dehydrogenase with Macrophage Metabolic Remodeling and Regulation of Inflammation. , 2016, Cell metabolism.
[24] K. Nakayama,et al. Nrf2 suppresses macrophage inflammatory response by blocking proinflammatory cytokine transcription , 2016, Nature Communications.
[25] C. Glass,et al. Molecular control of activation and priming in macrophages , 2015, Nature Immunology.
[26] L. O’Neill,et al. Metabolic reprogramming in macrophages and dendritic cells in innate immunity , 2015, Cell Research.
[27] N. Saravia,et al. Sensitive diagnosis of cutaneous leishmaniasis by lesion swab sampling coupled to qPCR , 2014, Parasitology.
[28] S. Gordon,et al. The M1 and M2 paradigm of macrophage activation: time for reassessment , 2014, F1000prime reports.
[29] M. Chenik,et al. An approach for interlaboratory comparison of conventional and real-time PCR assays for diagnosis of human leishmaniasis. , 2013, Experimental parasitology.
[30] S. Safe,et al. Investigation of macrophage polarization using bone marrow derived macrophages. , 2013, Journal of visualized experiments : JoVE.
[31] Thomas A. Wynn,et al. Macrophage biology in development, homeostasis and disease , 2013, Nature.
[32] Liang Zheng,et al. Succinate is an inflammatory signal that induces IL-1β through HIF-1α , 2013, Nature.
[33] H. Keun,et al. Metabolic Characterization of Leishmania major Infection in Activated and Nonactivated Macrophages. , 2012, Journal of proteome research.
[34] Dong Liu,et al. The early interaction of Leishmania with macrophages and dendritic cells and its influence on the host immune response , 2012, Front. Cell. Inf. Microbio..
[35] L. M. Melo,et al. Real-time PCR to assess the Leishmania load in Lutzomyia longipalpis sand flies: screening of target genes and assessment of quantitative methods. , 2011, Experimental parasitology.
[36] Wenyun Lu,et al. Itaconic acid is a mammalian metabolite induced during macrophage activation. , 2011, Journal of the American Chemical Society.
[37] P. Kaye,et al. Leishmaniasis: complexity at the host–pathogen interface , 2011, Nature Reviews Microbiology.
[38] Gary D Bader,et al. Enrichment Map: A Network-Based Method for Gene-Set Enrichment Visualization and Interpretation , 2010, PloS one.
[39] J. Edwards,et al. Exploring the full spectrum of macrophage activation , 2008, Nature Reviews Immunology.
[40] P. Herdewijn,et al. A Simplified and Standardized Polymerase Chain Reaction Format for the Diagnosis of Leishmaniasis , 2008, The Journal of infectious diseases.
[41] V. Ling,et al. The B7 family of immune-regulatory ligands , 2005, Genome Biology.
[42] G. Sirera,et al. A nested polymerase chain reaction (Ln-PCR) for diagnosing and monitoring Leishmania infantum infection in patients co-infected with human immunodeficiency virus. , 2002, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[43] M. Pfaffl,et al. A new mathematical model for relative quantification in real-time RT-PCR. , 2001, Nucleic acids research.
[44] M. Desjardins,et al. Survival strategies of Leishmania donovani in mammalian host macrophages. , 1998, Research in immunology.
[45] R. Badolato,et al. Promastigotes Selectively Inhibit Interleukin 12 Induction in Bone Marrow-derived Macrophages from Susceptible and Resistant Mice , 1996 .
[46] N. Reiner,et al. Altered cell signaling and mononuclear phagocyte deactivation during intracellular infection. , 1994, Immunology today.
[47] S Gordon,et al. Interleukin 4 potently enhances murine macrophage mannose receptor activity: a marker of alternative immunologic macrophage activation , 1992, The Journal of experimental medicine.
[48] Jon Timmis,et al. Tissue and host species-specific transcriptional changes in models of experimental visceral leishmaniasis [version 1; peer review: 3 approved, 1 approved with reservations] , 2021 .
[49] J. Ghia,et al. A Gene Expression Analysis of M1 and M2 Polarized Macrophages. , 2020, Methods in molecular biology.
[50] G. Freeman,et al. The B7 family revisited. , 2005, Annual review of immunology.