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10.1096/fj.202101013

http://scihub22266oqcxt.onion/10.1096/fj.202101013
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34339064!8441709!34339064
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suck abstract from ncbi


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pmid34339064      FASEB+J 2021 ; 35 (9): e21798
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  • S100A8 may govern hyper-inflammation in severe COVID-19 #MMPMID34339064
  • Deguchi A; Yamamoto T; Shibata N; Maru Y
  • FASEB J 2021[Sep]; 35 (9): e21798 PMID34339064show ga
  • The coronavirus disease 2019 (COVID-19) pandemic threatens human species with mortality rate of roughly 2%. We can hardly predict the time of herd immunity against and end of COVID-19 with or without success of vaccine. One way to overcome the situation is to define what delineates disease severity and serves as a molecular target. The most successful analogy is found in BCR-ABL in chronic myeloid leukemia, which is the golden biomarker, and simultaneously, the most effective molecular target. We hypothesize that S100 calcium-binding protein A8 (S100A8) is one such molecule. The underlying evidence includes accumulating clinical information that S100A8 is upregulated in severe forms of COVID-19, pathological similarities of the affected lungs between COVID-19 and S100A8-induced acute respiratory distress syndrome (ARDS) model, homeostatic inflammation theory in which S100A8 is an endogenous ligand for endotoxin sensor Toll-like receptor 4/Myeloid differentiation protein-2 (TLR4/MD-2) and mediates hyper-inflammation even after elimination of endotoxin-producing extrinsic pathogens, analogous findings between COVID-19-associated ARDS and pre-metastatic lungs such as S100A8 upregulation, pulmonary recruitment of myeloid cells, increased vascular permeability, and activation coagulation cascade. A successful treatment in an animal COVID-19 model is given with a reagent capable of abrogating interaction between S100A8/S100A9 and TLR4. In this paper, we try to verify our hypothesis that S100A8 governs COVID-19-associated ARDS.
  • |*Pandemics[MESH]
  • |Angiotensin-Converting Enzyme 2/genetics/physiology[MESH]
  • |Animals[MESH]
  • |Antiviral Agents/pharmacology[MESH]
  • |COVID-19/*complications/genetics/pathology[MESH]
  • |Calgranulin A/blood/genetics/*physiology[MESH]
  • |Chemokine CXCL11/blood[MESH]
  • |Cytokine Release Syndrome/*etiology/genetics/pathology[MESH]
  • |Disaccharides/pharmacology/therapeutic use[MESH]
  • |Disease Models, Animal[MESH]
  • |Drug Discovery[MESH]
  • |Epithelial Cells/metabolism/virology[MESH]
  • |Humans[MESH]
  • |Inflammation/*etiology/genetics/pathology[MESH]
  • |Lung Neoplasms/drug therapy/secondary[MESH]
  • |Lung/metabolism/pathology/virology[MESH]
  • |Lymphocyte Antigen 96/physiology[MESH]
  • |Macaca mulatta[MESH]
  • |Mice[MESH]
  • |Mice, Transgenic[MESH]
  • |Models, Biological[MESH]
  • |Mutation[MESH]
  • |Respiratory Distress Syndrome/*etiology/genetics/metabolism[MESH]
  • |SARS-CoV-2/*genetics[MESH]
  • |Species Specificity[MESH]
  • |Sugar Phosphates/pharmacology/therapeutic use[MESH]
  • |Toll-Like Receptor 4/physiology[MESH]
  • |Up-Regulation[MESH]


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