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10.1016/j.taap.2021.115444

http://scihub22266oqcxt.onion/10.1016/j.taap.2021.115444
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33549591!ä!33549591

suck abstract from ncbi


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pmid33549591      Toxicol+Appl+Pharmacol 2021 ; 416 (ä): 115444
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  • Health disparities: Intracellular consequences of social determinants of health #MMPMID33549591
  • Emeny RT; Carpenter DO; Lawrence DA
  • Toxicol Appl Pharmacol 2021[Apr]; 416 (ä): 115444 PMID33549591show ga
  • Health disparities exist dependent on socioeconomic status, living conditions, race/ethnicity, diet, and exposures to environmental pollutants. Herein, the various exposures contributing to a person's exposome are collectively considered social determinants of health (SDOH), and the SDOH-exposome impacts health more than health care. This review discusses the extent of evidence of the physiologic consequences of these exposures at the intracellular level. We consider how the SDOH-exposome, which captures how individuals live, work and age, induces cell processes that modulate a conceptual "redox rheostat." Like an electrical resistor, the SDOH-exposome, along with genetic predisposition and age, regulate reductive and oxidative (redox) stress circuits and thereby stimulate inflammation. Regardless of the source of the SDOH-exposome that induces chronic inflammation and immunosenescence, the outcome influences cardiometabolic diseases, cancers, infections, sepsis, neurodegeneration and autoimmune diseases. The endogenous redox rheostat is connected with regulatory molecules such as NAD(+)/NADH and SIRT1 that drive redox pathways. In addition to these intracellular and mitochondrial processes, we discuss how the SDOH-exposome can influence the balance between metabolism and regulation of immune responsiveness involving the two main molecular drivers of inflammation, the NLRP3 inflammasome and NF-kappaB induction. Mitochondrial and inflammasome activities play key roles in mediating defenses against pathogens and controlling inflammation before diverse cell death pathways are induced. Specifically, pyroptosis, cell death by inflammation, is intimately associated with common disease outcomes that are influenced by the SDOH-exposome. Redox influences on immunometabolism including protein cysteines and ion fluxes are discussed regarding health outcomes. In summary, this review presents a translational research perspective, with evidence from in vitro and in vivo models as well as clinical and epidemiological studies, to outline the intracellular consequences of the SDOH-exposome that drive health disparities in patients and populations. The relevance of this conceptual and theoretical model considering the SARS-CoV-2 pandemic are highlighted. Finally, the case of asthma is presented as a chronic condition that is modified by adverse SDOH exposures and is manifested through the dysregulation of immune cell redox regulatory processes we highlight in this review.
  • |*Health Status Disparities[MESH]
  • |Environmental Pollutants/adverse effects/immunology/metabolism[MESH]
  • |Humans[MESH]
  • |Inflammation Mediators/immunology/*metabolism[MESH]
  • |Intracellular Fluid/immunology/*metabolism[MESH]
  • |Oxidative Stress/*physiology[MESH]
  • |Social Determinants of Health/*trends[MESH]


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