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April 24, 2026BMC Pharmacology and Toxicology0 citationsOpen Access

Integration of multi-omics and network toxicology reveals TLR4-mediated nephrotoxicity induced by arecoline

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JYJixiang Yuan陈陈丽晨XWXilong Wang

Key Points

  • The study aims to identify the molecular mechanisms of arecoline-induced nephrotoxicity via TLR4 activation.
  • Integrated network toxicology with molecular docking and dynamics simulations to predict targets.
  • Used cellular thermal shift assay (CETSA) for in vitro validation in HK-2 cells.
  • Evaluated inflammatory and fibrotic markers through Western blotting, ELISA, and immunofluorescence.
  • Arecoline was found to enhance the thermal stability of TLR4 in HK-2 cells.
  • Activated the PI3K/AKT/NF-κB signaling pathway, promoting inflammatory cytokine release.
  • Increased levels of fibrotic proteins and renal injury markers were observed.

Abstract

Arecoline, the primary alkaloid in areca nut, induces renal injury, yet its underlying molecular mechanisms remain poorly understood. This study aimed to identify arecoline’s molecular targets and elucidate the subsequent pathological signaling cascade in renal cells. We integrated network toxicology, molecular docking, and molecular dynamics (MD) simulations to predict arecoline’s targets. In vitro validation in human kidney (HK-2) cells assessed target engagement via a cellular thermal shift assay (CETSA). Downstream signaling, inflammatory, and fibrotic markers were evaluated using Western blotting, ELISA, and immunofluorescence. Computational models predicted a stable arecoline-Toll-like receptor 4 (TLR4) complex. CETSA demonstrated that arecoline enhanced TLR4 thermal stability in HK-2 cells, strongly indicating target engagement. This binding activated the PI3K/AKT/NF-κB signaling pathway. Consequently, arecoline induced NF-κB-dependent upregulation of pro-inflammatory cytokines (TNF-α, IL-6, IL-1β), elevated the renal injury marker KIM-1, and promoted the accumulation of fibrotic proteins (α-SMA, Collagen III). Arecoline instigates nephrotoxicity by targeting TLR4 and activating the PI3K/AKT/NF-κB axis, driving an inflammatory and fibrotic phenotype in renal tubular cells. The arecoline-TLR4 interaction represents a critical event in areca nut-associated nephropathy, offering a novel therapeutic target.

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Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/69eb092b553a5433e34b3b1dhttps://doi.org/10.1186/s40360-026-01137-9
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