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Updated: Jun 22, 2025

Shunt Surgery, Right Heart Catheterization, and Vascular Morphometry in a Rat Model for Flow-induced Pulmonary Arterial Hypertension
Published on: February 11, 2017
DYZY01 alleviates pulmonary hypertension via inhibiting endothelial cell pyroptosis and rescuing endothelial
Xuejing Dai1, Yi Liu1, Yusi Wu2
1Department of Pharmacology, Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, 410013, Hunan, China.
Abstract:
Pulmonary hypertension (PH) is a malignant pulmonary vascular disease with a poor prognosis. Although the development of targeted drugs for this disease has made some breakthroughs in recent decades, PH remains incurable. Therefore, innovative clinical treatment methods and drugs for PH are still urgently needed. DYZY01 is a new drug whose main ingredient is high-purity cannabidiol, a non-psychoactive constituent of cannabinoids that was demonstrated to have anti-inflammatory and anti-pyroptosis properties. Several recent studies have found cannabidiol could improve experimental PH, whereas the mechanistic effect of it warrants further investigation. Thus, this study aimed to investigate whether DYZY01 can treat PH by inhibiting inflammation and pyroptosis and to reveal its underlying mechanism. We established hypoxia and monocrotaline (MCT)-induced PH rat models in vivo and treated them with either DYZY01 (10,50 mg/kg/d) or Riociguat (10 mg/kg/d) by oral administration. The mean pulmonary arterial pressure (mPAP), right ventricular hypertrophy index (RVHI), and extent of vascular remodeling were measured. Meanwhile, the effect of DYZY01 on human pulmonary arterial endothelial cells (HPAECs) was assessed in vitro. The results indicated that DYZY01 significantly reduced mPAP and RVHI in PH rats and reversed the extent of pulmonary vascular remodeling. This improvement may have been achieved by reducing endothelial cell pyroptosis via inhibiting the NF-κB/NLRP3/Caspase-1 pathway. Furthermore, DYZY01 could improve endothelial vascular function, possibly by regulating the secretion of vasodilator factors and inhibiting the proliferation and migration of pulmonary endothelial cells.
Insights
DYZY01, a cannabidiol-based drug, shows promise in treating pulmonary hypertension (PH) by reducing inflammation and pyroptosis. This novel treatment effectively improved PH markers in rat models, offering new hope for this severe vascular disease.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Cell Biology
Background:
- Pulmonary hypertension (PH) is a severe vascular disease with limited treatment options.
- Cannabidiol (CBD) exhibits anti-inflammatory and anti-pyroptosis properties, suggesting therapeutic potential for PH.
- The precise mechanisms by which CBD impacts PH require further elucidation.
Purpose of the Study:
- To investigate the efficacy of DYZY01, a high-purity CBD drug, in treating PH.
- To determine if DYZY01 ameliorates PH by inhibiting inflammation and pyroptosis.
- To elucidate the underlying molecular mechanisms of DYZY01's action in PH.
Main Methods:
- Established rat models of PH using hypoxia and monocrotaline (MCT) exposure.
- Administered DYZY01 (10, 50 mg/kg/d) or Riociguat (10 mg/kg/d) orally.
- Assessed mean pulmonary arterial pressure (mPAP), right ventricular hypertrophy index (RVHI), vascular remodeling, and effects on human pulmonary arterial endothelial cells (HPAECs) in vitro.
Main Results:
- DYZY01 significantly reduced mPAP and RVHI in PH rats, alongside reversing vascular remodeling.
- Treatment with DYZY01 inhibited endothelial cell pyroptosis by suppressing the NF-κB/NLRP3/Caspase-1 pathway.
- DYZY01 improved endothelial vascular function by modulating vasodilator secretion and inhibiting pulmonary endothelial cell proliferation and migration.
Conclusions:
- DYZY01 demonstrates significant therapeutic effects in preclinical models of pulmonary hypertension.
- The anti-hypertensive effects of DYZY01 are attributed to the inhibition of inflammation and pyroptosis via the NF-κB/NLRP3/Caspase-1 pathway.
- DYZY01 represents a promising novel therapeutic agent for pulmonary hypertension, warranting further clinical investigation.
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