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Puerarin-loaded PEG-PE micelles with enhanced anti-apoptotic effect and better pharmacokinetic profile.
- Source :
-
Drug delivery [Drug Deliv] 2018 Nov; Vol. 25 (1), pp. 827-837. - Publication Year :
- 2018
-
Abstract
- Puerarin (PUE) is the most abundant isoflavonoid in kudzu root. It is widely used as a therapeutic agent for the treatment of cardiovascular diseases. However, the short elimination half-life, poor-bioavailability, and acute intravascular hemolysis of PUE are the main obstacles to its widespread clinical applications. Whereas PEG-PE micelles possess the ability to release medicine slowly, enhance the cellular uptake of drugs and improve their biocompatibility. Therefore, it was aim to fabricate puerarin-loaded PEG-PE (PUE@PEG-PE) micelles to improve the pharmaceutical properties of drugs. It can be observed from the TEM images that PUE@PEG-PE micelles appeared obvious core-shell structure and remained well-dispersed without aggregation and adhesion. PUE was successfully embedded in the core of PEG-PE micelles, which was confirmed by FT-IR and <superscript>1</superscript> H NMR spectra. In vitro studies showed that PUE@PEG-PE micelles exhibited a sustained release behavior in pH 7.4 PBS buffer and decreased hemolysis rate of PUE. Compared with PUE, PUE@PEG-PE micelles showed a 3.2-fold increase in the half-life of PUE and a 1.58-fold increase in bioavailability. In addition, the PUE@PEG-PE micelles exerted enhanced protective effect against isoprenaline-induced H9c2 cells apoptosis compared with PUE, as evident by decreased percentage of Hoechst-positive cells, Caspase 3 activity, Bax expression, and increased Bcl-2 expression. Notably, the PEG-PE micelles exhibited favorable cellular uptake efficiency on H9c2 cells, and this may account for their enhanced anti-apoptotic effect of the incorporated drug. Altogether, the PUE@PEG-PE micelles were not only able to control the drug release but also offered promise to enhance the pharmacokinetic and pharmacodynamic potential of PUE.
- Subjects :
- Absorption, Physiological
Animals
Cardiotonic Agents administration & dosage
Cardiotonic Agents metabolism
Cardiotonic Agents pharmacokinetics
Cardiotonic Agents pharmacology
Cell Line
Drug Carriers metabolism
Drug Carriers pharmacokinetics
Drug Carriers pharmacology
Drug Compounding
Drug Liberation
Half-Life
Hemolysis drug effects
Humans
Injections, Intravenous
Isoflavones metabolism
Isoflavones pharmacokinetics
Isoflavones pharmacology
Male
Micelles
Microscopy, Electron, Transmission
Myocytes, Cardiac drug effects
Nanoparticles ultrastructure
Particle Size
Phosphatidylethanolamines pharmacology
Polyethylene Glycols pharmacology
Rats, Sprague-Dawley
Surface Properties
Vasodilator Agents metabolism
Vasodilator Agents pharmacokinetics
Vasodilator Agents pharmacology
Apoptosis drug effects
Drug Carriers administration & dosage
Isoflavones administration & dosage
Nanoparticles chemistry
Phosphatidylethanolamines chemistry
Polyethylene Glycols chemistry
Vasodilator Agents administration & dosage
Subjects
Details
- Language :
- English
- ISSN :
- 1521-0464
- Volume :
- 25
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Drug delivery
- Publication Type :
- Academic Journal
- Accession number :
- 29587545
- Full Text :
- https://doi.org/10.1080/10717544.2018.1455763