Title : Sulforaphane mitigates mast cell-mediated allergic inflammatory reactions in in silico simulation and in vitro models.

Pub. Date : 2020 Apr

PMID : 32041439






6 Functional Relationships(s)
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1 Binding mode of sulforaphane within caspase-1 was determined by molecular docking simulation. sulforaphane caspase 1 Homo sapiens
2 In the molecular docking simulation and in vitro caspase-1 assays, sulforaphane regulated caspase-1 activity by docking with the identical binding site of caspase-1. sulforaphane caspase 1 Homo sapiens
3 In the molecular docking simulation and in vitro caspase-1 assays, sulforaphane regulated caspase-1 activity by docking with the identical binding site of caspase-1. sulforaphane caspase 1 Homo sapiens
4 In the molecular docking simulation and in vitro caspase-1 assays, sulforaphane regulated caspase-1 activity by docking with the identical binding site of caspase-1. sulforaphane caspase 1 Homo sapiens
5 Furthermore, phosphorylation of mitogen-activated protein kinases (MAPK) was down-regulated by treatment with sulforaphane or WE.Conclusion: Our findings suggest that sulforaphane and WE have anti-allergic inflammatory effects by intercepting caspase-1/NF-kappaB/MAPKs signaling pathways. sulforaphane caspase 1 Homo sapiens
6 Furthermore, phosphorylation of mitogen-activated protein kinases (MAPK) was down-regulated by treatment with sulforaphane or WE.Conclusion: Our findings suggest that sulforaphane and WE have anti-allergic inflammatory effects by intercepting caspase-1/NF-kappaB/MAPKs signaling pathways. sulforaphane caspase 1 Homo sapiens