ETHNOPHARMACOLOGICAL RELEVANCE
Coicis Semen is a classic example of a resource used both as food and medicine. In traditional Chinese medicine, it is known for several functions: promoting diuresis, resolving dampness, strengthening the spleen, stopping diarrhea, draining pus, and removing toxins. For a long time, it has been widely used to relieve symptoms of gastrointestinal disorders. In particular, Coixol shows strong biological activity when it comes to regulating intestinal inflammation. However, its specific therapeutic potential and underlying mechanisms in ulcerative colitis (UC) have not been fully elucidated.
AIM OF THE STUDY
This research aimed to define the therapeutic potential of Coixol in ulcerative colitis and clarify its regulatory influence on the Axin1-mediated Wnt signaling axis and the subsequent activation of group 3 innate lymphoid cells (ILC3).
MATERIALS AND METHODS
We established a colitis model in mice using dextran sulfate sodium and utilized LPS-stimulated macrophages for in vitro assays. Therapeutic outcomes were measured through disease activity scores, tissue histology, and epithelial barrier assessment. We integrated bulk RNA sequencing and Olink proteomics to pinpoint core regulatory pathways. We then validated Axin1 as the direct molecular target of the drug using molecular docking, surface plasmon resonance, and cellular thermal shift assay. Mechanistic insights were further substantiated by Western blot, flow cytometry, and a pharmacological rescue experiment using a Wnt signaling activator. Finally, the functional necessity of this axis was confirmed via IL-22 neutralization assays, demonstrating the regulatory link between Axin1 and the observed phenotypic changes.
RESULTS
Coixol intervention significantly lowered inflammatory markers and promoted the restoration of the intestinal wall. Coixol modulated macrophage polarization and increased Axin1 protein levels to trigger the degradation of β-catenin. Furthermore, flow cytometry demonstrated that Coixol expanded the colonic ILC3 population, a process essential for driving IL-22-dependent mucosal healing. This protective effect was reversed by an IL-22-neutralizing antibody.
CONCLUSION
Coixol effectively mitigates experimental colitis by targeting the Axin1 and Wnt axis to promote ILC3 expansion and subsequent IL-22 production. These results provide a modern scientific foundation for the traditional medicinal use of Coicis Semen and highlight the Axin1 and ILC3 module as a viable target for treating UC.
Jia-li Ma, Qianqian Yin, Yi-jing Zhou et al.· Journal of Ethnopharmacology· 0 citations
BACKGROUND
Gastric cancer (GC) remains one of the leading causes of cancer-related mortality globally and is associated with poor patient prognosis, which highlights an urgent need to identify effective biomarkers and therapeutic targets. N6-methyladenosine (m6A) modification and its reader proteins play a crucial role in tumorigenesis. Insulin-like growth factor 2 mRNA-binding protein 1 (IGF2BP1) participates in carcinogenesis and serves as a reader of m6A. However, its exact function and the underlying molecular mechanisms in the progression of GC remain unknown.
AIM
To investigate the role of IGF2BP1 in the progression of GC.
METHODS
The IGF2BP1 expression in GC tissues was assessed via immunohistochemistry and correlated with clinicopathological characteristics. Gain-of-function and loss-of-function experiments were performed to explore the functional roles of IGF2BP1 and its potential downstream target in GC cells and a nude mouse xenograft model. Cell proliferation, migration, and invasion were assessed using cell counting kit-8, wound-healing, and Transwell assays. RNA sequencing, methylated RNA immunoprecipitation quantitative polymerase chain reaction, and dual-luciferase reporter assays were conducted to elucidate the molecular mechanisms involved.
RESULTS
The IGF2BP1 was significantly upregulated in GC tissues and was positively associated with lymph node metastasis and poor overall survival. Functionally, IGF2BP1 knockdown inhibited GC cell proliferation, migration, and invasion in vitro and attenuated tumor growth in vivo . Integrated multi-omics analysis identified heparan sulfate 6-O-sulfotransferase 2 (HS6ST2) as a key downstream target of IGF2BP1. IGF2BP1 recognized and bound to m6A-modified sites within HS6ST2 mRNA, thereby enhancing its stability in an m6A-dependent manner. Rescue experiments confirmed that HS6ST2 mediated the oncogenic effects of IGF2BP1. Additionally, HS6ST2 knockdown inhibited the malignant characteristics of GC cells and triggered apoptosis, which was associated with inactivation of the phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin signaling pathway.
CONCLUSION
These findings demonstrated that IGF2BP1 drives GC progression by stabilizing HS6ST2 mRNA via m6A modification. The IGF2BP1/HS6ST2 axis may serve as a potential prognostic biomarker and therapeutic intervention for GC.
Lu Liu, Yi-jing Zhou, Yue Xu et al.· World Journal of Gastrointes...· 0 citations
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