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Tumor necrosis factor alpha–Nuclear factor kappa B signaling axis (TNF-α–NF-κB axis) (TNF-α–NF-κB axis)

Target
TNF-α–NF-κB axis
Molecular classification
Receptor, Transcription factor, Enzyme, Signaling pathway
01

Overview

The Tumor necrosis factor alpha–Nuclear factor kappa B (TNF-α–NF-κB) signaling axis is a fundamental proinflammatory pathway that coordinates the body's response to injury and infection (Source: PubMed, PMID: 30233453). The axis is activated when the cytokine TNF-α binds to its cognate receptors, primarily TNFR1, triggering a complex intracellular signaling cascade that culminates in the activation of the IκB kinase (IKK) complex (Source: NIH, StatPearls). This complex phosphorylates IκB proteins, leading to their ubiquitin-mediated proteasomal degradation, which releases the transcription factor NF-κB to translocate into the nucleus (Source: UniProt). Once in the nucleus, NF-κB promotes the expression of a wide array of genes involved in inflammation, cell survival, and the immune response (Source: Nature Reviews Immunology). Chronic dysregulation of this axis is a primary driver of autoimmune diseases such as rheumatoid arthritis, Crohn's disease, and psoriasis, and it also plays a significant role in promoting tumor cell survival and chemoresistance in various cancers (Source: PubMed, PMID: 24445666). Pharmacological inhibitors, particularly TNF-α antagonists like adalimumab and infliximab, are widely used to treat these conditions by interrupting the signaling flow, though they require careful monitoring due to risks of immunosuppression and serious infection (Source: FDA, Mayo Clinic).

Other names
TNF-NFkB pathwayTNF-alpha/NF-kappaB signaling pathwayTumor necrosis factor-mediated NF-kappaB activationTNF-TNFR-NFkB axis
02

Mechanism of action

Therapeutic modulation of this axis is primarily achieved by neutralizing the ligand (TNF-alpha) with monoclonal antibodies or decoy receptors to prevent binding to TNFR1/2, or by inhibiting downstream components such as the proteasome to prevent the degradation of IkappaB, thereby sequestering NF-kappaB in the cytoplasm and preventing its transcriptional activity.

03

Biological functions

Signal transductionImmune responseInflammationApoptosisCell survivalCell proliferation
04

Disease associations

InflammationAutoimmune diseaseRheumatoid arthritisPsoriasisInflammatory bowel diseaseCancerInfection
05

Safety considerations

Increased risk of serious and opportunistic infections (e.g., tuberculosis, histoplasmosis)Potential risk of malignancies including lymphomaReactivation of latent Hepatitis B virusExacerbation or new onset of congestive heart failureDemyelinating disorders (e.g., multiple sclerosis)Injection site or infusion-related reactions
06

Interacting drugs

Infliximab

6 more in the full profile.

07

Biomarkers

C-reactive protein (CRP)Erythrocyte sedimentation rate (ESR)Serum TNF-alpha levelsNF-kappaB p65 phosphorylation statusInterleukin-6 (IL-6) levels

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