Targeting cGAS/STING signaling-mediated myeloid immune cell dysfunction in TIME

被引:0
作者
Vijay Kumar
Caitlin Bauer
John H. Stewart
机构
[1] Louisiana State University Health Science Center (LSUHSC),Department of Interdisciplinary Oncology, Stanley S. Scott Cancer Center, School of Medicine
[2] Louisiana State University Health Science Center (LSUHSC),Louisiana Children’s Medical Center Cancer Center, Stanley S. Scott Cancer Center, School of Medicine
[3] Louisiana State University Health Science Center (LSUHSC),Surgery, Section of Surgical Oncology, Louisiana State University New Orleans
来源
Journal of Biomedical Science | / 30卷
关键词
Cancer; cGAS; STING; MIC; Macrophages; DCs; MDSCs; TME; TIME;
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摘要
Myeloid immune cells (MICs) are potent innate immune cells serving as first responders to invading pathogens and internal changes to cellular homeostasis. Cancer is a stage of altered cellular homeostasis that can originate in response to different pathogens, chemical carcinogens, and internal genetic/epigenetic changes. MICs express several pattern recognition receptors (PRRs) on their membranes, cytosol, and organelles, recognizing systemic, tissue, and organ-specific altered homeostasis. cGAS/STING signaling is a cytosolic PRR system for identifying cytosolic double-stranded DNA (dsDNA) in a sequence-independent but size-dependent manner. The longer the cytosolic dsDNA size, the stronger the cGAS/STING signaling activation with increased type 1 interferon (IFN) and NF-κB-dependent cytokines and chemokines’ generation. The present article discusses tumor-supportive changes occurring in the tumor microenvironment (TME) or tumor immune microenvironment (TIME) MICs, specifically emphasizing cGAS/STING signaling-dependent alteration. The article further discusses utilizing MIC-specific cGAS/STING signaling modulation as critical tumor immunotherapy to alter TIME.
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  • [1] Kennel KB(2021)Immune cell-produced ROS and their impact on tumor growth and metastasis Redox Biol 42 4459-4483
  • [2] Greten FR(2020)The multifaceted role of reactive oxygen species in tumorigenesis Cell Mol Life Sci 77 860-867
  • [3] Kirtonia A(2002)Inflammation and cancer Nature 420 15-18
  • [4] Sethi G(2002)Role of angiogenesis in tumor growth and metastasis Semin Oncol 29 483-497
  • [5] Garg M(2020)Immune crosstalk in cancer progression and metastatic spread: a complex conversation Nat Rev Immunol 20 372-378
  • [6] Coussens LM(2008)Role of myeloid cells in tumor angiogenesis and growth Trends Cell Biol 18 485-498
  • [7] Werb Z(2021)Myeloid-derived suppressor cells in the era of increasing myeloid cell diversity Nat Rev Immunol 21 899-2167
  • [8] Folkman J(2020)The role of tumor-associated myeloid cells in modulating cancer therapy Front Oncol 10 2159-944
  • [9] Garner H(2019)Neutrophil plasticity in the tumor microenvironment Blood 133 e143759-220
  • [10] de Visser KE(2021)Neutrophil dynamics in the tumor microenvironment J Clin Investig 131 830-196