Safety, heart specificity, and therapeutic effect evaluation of Guanfu base A-loaded solid nanolipids in treating
Fei Xiong1,2, Kunliang Liu1,2, Sha Liu1,2
1State Key Laboratory of Bioelectronics, Jiangsu Key Laboratory for Biomaterials and Devices, School of Biological Sciences & Medical Engineering, Southeast University, Nanjing, 210096, China.
Insights
This study developed a nanolipid delivery system for Guanfu base A (GFA) to treat arrhythmia. The new system, GFASN, shows improved heart targeting and efficacy compared to the original GFA·HCl solution.
Area of Science:
- Cardiovascular Pharmacology
- Nanomedicine
- Drug Delivery Systems
Background:
- Guanfu base A hydrochloride (GFA·HCl) is approved for arrhythmia treatment but suffers from poor targeting and absorption.
- These limitations hinder its clinical effectiveness and patient outcomes.
Purpose of the Study:
- To develop a nanolipid-based Guanfu base A (GFA) delivery system (GFASN) to overcome the limitations of GFA·HCl.
- To evaluate the efficacy, safety, and pharmacokinetic properties of GFASN for arrhythmia treatment.
Main Methods:
- GFASN with a core/shell structure was prepared using a high-pressure homogenate emulsification method.
- Morphology, stability, safety (biocompatibility), anti-arrhythmic efficacy in rats, and pharmacokinetic/targeting properties in mice were assessed.
Main Results:
- GFASN exhibited favorable morphology and stability (220-260 nm) post-lyophilization/rehydration.
- GFASN demonstrated superior efficacy in alleviating arrhythmia in rats, particularly ventricular ectopia and tachycardia, compared to GFA·HCl.
- Nanolipids enhanced GFA's blood circulation time and heart specificity in mice.
Conclusions:
- GFASN represents a promising nanolipid delivery system for Guanfu base A.
- This nanocarrier system offers improved therapeutic potential for cardiovascular diseases, specifically arrhythmias.
Abstract:
Guanfu base A·HCl (GFA·HCl) solution, approved by the China Food and Drug Administration (CFDA) in 2005, has been used in the treatment of arrhythmia. However, the poor targeting and absorption of GFA·HCl have severely affected its clinical application. In this study, a nanolipid-based, Guanfu base A (GFA) delivery system was designed to improve the deficiency of GFA·HCl and realize better clinical effect. The GFA-loaded solid nanolipids (GFASN) with a core/shell structure, composed of Poloxamer 188, lecithin, and medium-chain fatty acid, were prepared using a high-pressure homogenate emulsification method. Results showed that GFASN possessed well morphology and stability during the process of lyophilization and rehydration at 220-260 nm. Safety evaluation revealed that ear vein injection of GFASN (14 mg/kg) were safe enough and of good biocompatibility. More importantly, GFASN can better alleviate the arrhythmia of rats, especially in ventricular ectopia and ventricular tachycardia, than GFA·HCl solution. Pharmacokinetic behaviors and targeting evaluation in mice demonstrated that nanolipids can help GFA achieve longer circulation time in blood and better heart specificity. Collectively, these promising findings suggested that this kind of nanolipids was an ideal delivery carrier for GFA in the treatment of cardiovascular disease.
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