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A High-throughput Compatible Assay to Evaluate Drug Efficacy against Macrophage Passaged Mycobacterium tuberculosis
Published on: March 24, 2017
Vitamin D modulates human macrophage response to Mycobacterium tuberculosis DNA
Jorge L Cervantes1, Esther Oak2, John Garcia3
1Texas Tech University Health Sciences Center, Paul L. Foster School of Medicine, El Paso, TX, USA.
Abstract:
Mycobacterium tuberculosis (Mtb) is a facultative intracellular pathogen that infects macrophages where it avoids elimination by interfering with host defense mechanisms, including phago-lysosome fusion. Endosomal Toll-like receptors (TLRs) generate Type I Interferons (IFNs), which are associated with active tuberculosis (TB). We aimed to explore if DNA from different Mtb lineages lead to differences in the inflammatory response of human monocytic/macrophage cells. THP-1 cells which express two inducible reporter constructs for interferons (IFNs) as well as for NF-κB, were stimulated via endosomal delivery of Mtb DNA as a nanocomplex with PEI. DNA from different Mtb phylogenetic lineages elicited differential inflammatory responses in human macrophages. An initial relatively weak IRF-mediated response to DNA from HN878 and H37Rv increased if the cells were pre-treated with Vitamin D (Vit D) for 72 h. RNAseq of THP-1 under different transformation conditions showed that pre-treatment with Vit D upregulated several TLR9 variants, as well as genes involved in inflammatory immune response to infection, immune cell activation, Type I IFN regulation, and regulation of inflammation. Vit D appears to be important in increasing low IRF responses to DNA from certain lineages of Mtb. Variations in the IRF-mediated response to DNA derived from different Mtb genotypes are potentially important in the pathogenesis of tuberculosis since Type I IFN responses are associated with active disease. The role of Vit D in these responses could also translate into future therapeutic approaches.
Insights
Mycobacterium tuberculosis (Mtb) DNA from different lineages triggers varied inflammatory responses in human macrophages. Vitamin D enhances these responses, potentially impacting tuberculosis pathogenesis and treatment.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- Mycobacterium tuberculosis (Mtb) infects macrophages, evading host defenses and interfering with phagolysosome fusion.
- Endosomal Toll-like receptors (TLRs) activate Type I Interferons (IFNs), linked to active tuberculosis (TB).
Purpose of the Study:
- To investigate if DNA from distinct Mtb lineages induces differential inflammatory responses in human macrophages.
- To explore the role of Vitamin D in modulating these responses.
Main Methods:
- THP-1 cells with reporter constructs for IFNs and NF-κB were stimulated with Mtb DNA nanocomplexes.
- Cells were pre-treated with Vitamin D (Vit D) prior to stimulation.
- RNA sequencing (RNAseq) was performed to analyze gene expression changes.
Main Results:
- DNA from different Mtb phylogenetic lineages elicited varied inflammatory responses in human macrophages.
- Vitamin D pre-treatment significantly increased the IRF-mediated response to Mtb DNA.
- Vit D upregulated TLR9 variants and genes involved in immune response, inflammation, and Type I IFN regulation.
Conclusions:
- Variations in macrophage response to Mtb DNA from different genotypes may influence tuberculosis pathogenesis.
- Vitamin D plays a crucial role in enhancing weak IRF responses to specific Mtb lineages.
- Vitamin D's immunomodulatory effects suggest potential therapeutic applications in tuberculosis.
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