NFκB Inhibition Mitigates Serum Amyloid A-Induced Pro-Atherogenic Responses in Endothelial Cells and Leukocyte Adhesion and Adverse Changes to Endothelium Function in Isolated Aorta.
Abigail VallejoBelal ChamiJoanne M DennisMartin SimoneGulfam AhmadAdrian I AbdoArpeeta SharmaWaled A ShihataNathan MartinJaye P F Chin-DustingJudy B de HaanPaul K WittingPublished in: International journal of molecular sciences (2018)
The acute phase protein serum amyloid A (SAA) is associated with endothelial dysfunction and early-stage atherogenesis. Stimulation of vascular cells with SAA increases gene expression of pro-inflammation cytokines and tissue factor (TF). Activation of the transcription factor, nuclear factor kappa-B (NFκB), may be central to SAA-mediated endothelial cell inflammation, dysfunction and pro-thrombotic responses, while targeting NFκB with a pharmacologic inhibitor, BAY11-7082, may mitigate SAA activity. Human carotid artery endothelial cells (HCtAEC) were pre-incubated (1.5 h) with 10 μM BAY11-7082 or vehicle (control) followed by SAA (10 μg/mL; 4.5 h). Under these conditions gene expression for TF and Tumor Necrosis Factor (TNF) increased in SAA-treated HCtAEC and pre-treatment with BAY11-7082 significantly (TNF) and marginally (TF) reduced mRNA expression. Intracellular TNF and interleukin 6 (IL-6) protein also increased in HCtAEC supplemented with SAA and this expression was inhibited by BAY11-7082. Supplemented BAY11-7082 also significantly decreased SAA-mediated leukocyte adhesion to apolipoprotein E-deficient mouse aorta in ex vivo vascular flow studies. In vascular function studies, isolated aortic rings pre-treated with BAY11-7082 prior to incubation with SAA showed improved endothelium-dependent vasorelaxation and increased vascular cyclic guanosine monophosphate (cGMP) content. Together these data suggest that inhibition of NFκB activation may protect endothelial function by inhibiting the pro-inflammatory and pro-thrombotic activities of SAA.
Keyphrases
- heart failure
- nuclear factor
- endothelial cells
- gene expression
- oxidative stress
- signaling pathway
- high glucose
- toll like receptor
- rheumatoid arthritis
- early stage
- lps induced
- transcription factor
- aortic valve
- induced apoptosis
- nitric oxide
- dna methylation
- pi k akt
- pulmonary artery
- poor prognosis
- squamous cell carcinoma
- water quality
- binding protein
- pseudomonas aeruginosa
- machine learning
- escherichia coli
- electronic health record
- pulmonary arterial hypertension
- small molecule
- emergency department
- long non coding rna
- lymph node
- candida albicans
- inflammatory response
- biofilm formation
- radiation induced
- artificial intelligence
- reactive oxygen species
- cell migration
- cell death
- case control