AI Article Synopsis

  • The text discusses how the pathogen causing tuberculosis (TB) uses immune-evasive strategies, leading to treatment challenges and drug-resistant strains, which has renewed interest in finding new therapies.
  • It highlights that the down-regulation of SIRT1, an important protein involved in immune response, was observed in TB patients and animal models, and activating SIRT1 showed promise in reducing TB growth and chronic inflammation.
  • The research suggests that activating SIRT1 not only helps to enhance the effectiveness of existing TB treatments but also points to the potential for developing new host-directed therapies targeting SIRT1 for better TB management.

Article Abstract

() executes a plethora of immune-evasive mechanisms, which contribute to its pathogenesis, limited efficacy of current therapy, and the emergence of drug-resistant strains. This has led to resurgence in attempts to develop new therapeutic strategies/targets against tuberculosis (TB). We show that down-regulates sirtuin 1 (SIRT1), a nicotinamide adenine dinucleotide (NAD)-dependent deacetylase, in monocytes/macrophages, TB animal models, and TB patients with active disease. Activation of SIRT1 reduced intracellular growth of drug-susceptible and drug-resistant strains of and induced phagosome-lysosome fusion and autophagy in a SIRT1-dependent manner. SIRT1 activation dampened -mediated persistent inflammatory responses via deacetylation of RelA/p65, leading to impaired binding of RelA/p65 on the promoter of inflammatory genes. In -infected mice, the use of SIRT1 activators ameliorated lung pathology, reduced chronic inflammation, and enhanced efficacy of anti-TB drug. Mass cytometry-based high-dimensional analysis revealed that SIRT1 activation mediated modulation of lung myeloid cells in -infected mice. Myeloid cell-specific SIRT1 knockout mice display increased inflammatory responses and susceptibility to infection. Collectively, these results provide a link between SIRT1 activation and TB pathogenesis and indicate a potential of SIRT1 activators in designing an effective and clinically relevant host-directed therapies for TB.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5505666PMC
http://dx.doi.org/10.1126/sciimmunol.aaj1789DOI Listing

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