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Updated: May 16, 2026

Use of Animal Model of Sepsis to Evaluate Novel Herbal Therapies
Published on: April 11, 2012
Discovery of the First Highly Potent, Selective, Irreversible Small-Molecule Factor XIIa Inhibitor for Treating
Lei Geng1, Liang Dong1, Fangrong Chen1
1Department of Pharmaceutical Sciences and Engineering, School of Food and Biological Engineering, Hefei University of Technology, Hefei 230009, China.
Abstract:
Factor XIIa (FXIIa), a key serine protease at the intersection of coagulation and inflammation, has emerged as an attractive therapeutic target in recent years. To date, 1,2,4-triazol-5-amine-based covalent inhibitors constitute the most extensively investigated class of FXIIa inhibitors. However, the majority of these compounds have not progressed further in development, largely due to limitations such as insufficient plasma stability and transient, reversible target engagement. To address these shortcomings, we conducted structure-guided optimization and designed a series of derivatives featuring a distinct tricyclic scaffold. Among these, F38 exhibited a mechanistic shift toward irreversible binding, resulting in markedly improved FXIIa inhibition (IC50 = 2 nM) along with enhanced anticoagulant activity (EC1.5X = 11 μM) and anti-inflammatory effects. Notably, F38 demonstrated significant therapeutic benefit in a mouse model of LPS-induced sepsis, substantially reducing mortality and highlighting its promise as a candidate for further preclinical development.
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