ArticleJournal of advanced research2026
Discovery of a small-molecule inhibitor of eIF4E suppressing tumor proliferation via lipid metabolic reprogramming.
Article in Journal of advanced research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers, 1 of them a synthesis that pooled it.
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Who cites it
17 citing papers in PubMed, 1 synthesis or guideline pooled it.
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- Pearl Millet-A Forgotten Ancient Grain with Emerging Immunomodulatory Potential in Sports Nutrition.Current nutrition reports · 2026Review
- Mining QTLs and candidate genes in bread wheat associated with kernel hardness through GWAS.TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik · 2026Article
- Lactylation-regulated ferroptosis: mechanisms, disease associations, and therapeutic strategies.Archives of pharmacal research · 2026Review
- Przewaquinone A regulates cell cycle and autophagy through the SrC/STAT3 signaling pathway to inhibit colorectal cancer progression.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Farnesoid X receptor deficiency accelerates aging and systemic functional decline in male mice.Biogerontology · 2026Article
- Mechanism of liver fibrosis induced by life-long triclosan exposure in offspring rats: an adverse outcome pathway framework validated by in vivo and in vitro experiments.Archives of toxicology · 2026Article
- α-glucosylglycerol: biological activities, emerging applications, and advances in sustainable biomanufacturing.World journal of microbiology & biotechnology · 2026Review
- The CeRNA role of HOTAIR: sponging MiRs to promote chemoresistance.Molecular biology reports · 2026Review
- Epigenetic modulation of CTCs as a novel therapeutic target in oncology.Molecular and cellular biochemistry · 2026Review
Corrections and comments
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Authors and funding
15 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
introductionThe eukaryotic translation initiation factor 4E (eIF4E) has emerged as a compelling target for cancer therapeutics due to its pivotal role in regulating cap-dependent translation of oncogenic mRNAs and its implication in various malignancies. However, the clinical potential of current eIF4E inhibitors is limited by suboptimal potency and binding affinity.
objectivesBased on an analysis of the eIF4E/eIF4G binding pocket and structural features of existing inhibitors, 75 compounds were designed, synthesized, and screened. The binding affinity, molecular mechanism and antitumor activity of the most potent compound b14 were evaluated in vitro and in vivo.
methodsThrough structure-activity relationship analysis, 75 thiazole derivatives were synthesized and screened for binding affinity using fluorescence polarization (FP) and surface plasmon resonance (SPR). Hit compounds were evaluated for antitumor activity using the SRB assay. The most promising compound, b14, was further investigated for its antitumor activity and molecular mechanism via Western blotting (WB), quantitative real-time PCR (qRT-PCR), immunofluorescence, co-immunoprecipitation, and proteomics. The in vivo antitumor activity and safety of b14 were assessed using HeLa xenograft models and acute/subacute toxicity models, respectively.
resultsCompound b14 emerged as a lead molecule, exhibiting a 10-fold higher binding affinity to eIF4E than the reference inhibitor 4EGI-1. Mechanistic studies revealed that b14 disrupts eIF4F complex formation by inhibiting AKT-mTOR-4EBP1 and ERK-eIF4E phosphorylation, subsequently triggering mitochondrial dysfunction and apoptosis in tumor cells, with relatively low IC
conclusionsTogether, our results demonstrate that b14 is an excellent novel small-molecule inhibitor of eIF4E for future cancer therapy.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.