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Updated: Jun 11, 2025

Fluorescence-based Monitoring of PAD4 Activity via a Pro-fluorescence Substrate Analog
Published on: November 5, 2014
Didang decoction attenuates cancer-associated thrombosis by inhibiting PAD4-dependent NET formation in lung cancer
Xiaoyan Zeng1, Jiuxi Li2, Liyuan Pei3
1Department of Clinical Chinese Pharmacy, College of Pharmacy Hunan University of Chinese Medicine Changsha Hunan China.
Abstract:
This research aims to investigate the impact of Didang decoction (DD) on the formation of neutrophil extracellular traps (NETs) and cancer-associated thrombosis in lung cancer. BALB/c nude mice were used to establish xenograft models for inducing deep vein thrombosis. Tumor growth and thrombus length were assessed. The impact of DD on NET generation was analyzed using enzyme-linked immunosorbent assay, immunofluorescence staining, quantitative real-time PCR, and western blot analysis, both in vivo and in vitro. CI-amidine, a PAD4 inhibitor, was employed to evaluate the role of PAD4 in the generation of NETs. In vivo studies demonstrated that treatment with DD reduced tumor growth, inhibited thrombus formation, and decreased the levels of NET markers in the serum, tumor tissues, neutrophils, and thrombus tissues of mice. Additional data indicated that DD could suppress neutrophil counts, the release of tissue factor (TF), and the activation of thrombin-activated platelets, all of which contributed to increased formation of NETs in mouse models. In vitro, following incubation with conditioned medium (CM) derived from Lewis lung carcinoma cells, the expression of NET markers in neutrophils was significantly elevated, and an extracellular fibrous network structure was observed. Nevertheless, these NET-associated changes were partially counteracted by DD. Additionally, CI-amidine reduced the expression of NET markers in CM-treated neutrophils, consistent with the effects of DD. Collectively, DD inhibits cancer-associated thrombosis in lung cancer by decreasing PAD4-dependent NET formation through the regulation of TF-mediated thrombin-platelet activation. This presents a promising therapeutic strategy for preventing and treating venous thromboembolism in lung cancer.
Insights
Didang decoction (DD) effectively inhibits lung cancer-associated thrombosis by reducing neutrophil extracellular traps (NETs) formation. This therapeutic strategy targets PAD4-dependent NET generation and TF-mediated thrombin-platelet activation.
Area of Science:
- Oncology
- Hematology
- Pharmacology
Background:
- Lung cancer is associated with an increased risk of cancer-associated thrombosis.
- Neutrophil extracellular traps (NETs) play a crucial role in the pathogenesis of cancer-associated thrombosis.
- Didang decoction (DD) is a traditional Chinese medicine with potential anti-cancer properties.
Purpose of the Study:
- To investigate the effect of Didang decoction (DD) on NET formation and cancer-associated thrombosis in lung cancer.
- To elucidate the underlying mechanisms of DD's action, including its impact on PAD4 and tissue factor (TF).
Main Methods:
- Establishment of lung cancer xenograft and deep vein thrombosis mouse models.
- In vivo and in vitro analyses of NET formation using ELISA, immunofluorescence, qPCR, and Western blot.
- Assessment of tumor growth, thrombus length, neutrophil counts, TF release, and thrombin-activated platelet activation.
- Utilized CI-amidine, a PAD4 inhibitor, to evaluate the role of PAD4 in NET generation.
Main Results:
- DD treatment significantly reduced tumor growth and thrombus formation in mice.
- DD decreased NET markers in serum, tumor, neutrophils, and thrombus tissues.
- DD suppressed neutrophil counts, TF release, and thrombin-activated platelet activation.
- In vitro studies confirmed DD's ability to counteract cancer cell-induced NET formation in neutrophils.
Conclusions:
- Didang decoction (DD) inhibits lung cancer-associated thrombosis by decreasing PAD4-dependent NET formation.
- DD regulates TF-mediated thrombin-platelet activation, thereby reducing thrombosis.
- DD presents a promising therapeutic strategy for preventing and treating venous thromboembolism in lung cancer.
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