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◆ Frontiers in immunology2026-01-01

The β-hCG-TNF-α-T cell axis in threatened abortion: unraveling the pathogenic cascade from aberrant glycosylation to inflammatory demise.

Shimeng Wang, Qing Guo, Dingren Niu, Yao Chen, Yunlu Ping, Jiajie Ren, Ding Qi, Xiaoling Feng

原始摘要(英文原文)· Original abstract
Threatened abortion (TA), vaginal bleeding before 20 weeks in a viable pregnancy, affects 20-25% of early pregnancies. Its unpredictable nature is a major clinical challenge. Current diagnostics (β-hCG and ultrasound) are retrospective and fail to reveal the dynamic pathology. This review presents the "Danger Signal" Hypothesis, focusing on the β-hCG-TNF-α-T cell axis, to explain TA pathogenesis. The process involves three stages: 1) Initiation: Stressed trophoblasts secrete aberrantly glycosylated β-hCG, which acts as a DAMP. 2) Amplification: This DAMP triggers a TNF-α-dominated cytokine storm, reprogramming T cell metabolism to glycolysis and sustaining inflammation. 3) Execution: The inflammatory microenvironment induces trophoblast pyroptosis, creating a vicious cycle of damage. We synthesize evidence from glycobiology, immunometabolism, and cell death research to substantiate this model, explore its implications for the development of stage-specific biomarkers (such as β-hCG glycoforms and GSDMD-N fragments), and discuss precision therapeutic approaches (including the use of metformin for metabolic intervention and anti-TNF-α agents for managing late-phase inflammation). This mechanistic framework aims to guide future research and improve clinical outcomes.
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The β-hCG-TNF-α-T cell axis in threatened abortion: unraveling the pathogenic cascade from aberrant glycosylation to inflammatory demise. — 科研速览 Science Skim