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Published on: December 27, 2013
Nanoformulated Eudragit lopinavir and preliminary release of its loaded suppositories
Lebogang Katata-Seru1, Babatunde Moses Ojo1, Omotunde Okubanjo2
1Department of Chemistry, Faculty of Natural and Agricultural Sciences, North-West University, Mmabatho, Mafikeng, 2735, South Africa.
Insights
Developing new pediatric HIV treatments is crucial. Lopinavir nanoparticles in PEG suppositories show promise as an alternative rectal delivery system, improving bioavailability over oral methods.
Area of Science:
- Pharmaceutical Sciences
- Nanotechnology
- Pediatric HIV Treatment
Background:
- Novel pediatric formulations are essential for achieving UNAIDS 90-90-90 targets.
- Current antiretroviral availability for children (53%) lags behind pregnant women (80%), highlighting the need for child-friendly delivery systems.
- Lopinavir (LPV), a first-line HIV drug, has poor oral bioavailability due to low solubility and bitter taste.
Purpose of the Study:
- To fabricate and characterize Eudragit RSPO-LPV nanoparticles loaded into suppositories.
- To evaluate the potential of these rectal suppositories as an alternative delivery system for pediatric HIV treatment.
- To improve lopinavir bioavailability and overcome challenges associated with oral administration.
Main Methods:
- Nanoparticles were prepared using the nanoprecipitation method.
- Lopinavir-loaded nanoparticles were compounded into suppositories using fattibase and polyethylene glycol (PEG) bases via melt fusion.
- Characterization included particle size, entrapment efficiency (EE), zeta potential, polydispersity index (PDI), FTIR, SEM, PXRD, and TGA.
- In vitro drug release studies were conducted and analyzed using HPLC.
Main Results:
- Prepared nanoparticles exhibited spherical morphology with an average size of 191 nm.
- High entrapment efficiency (79.0 ± 0.5%), suitable PDI (0.224), and positive zeta potential (25.87 ± 0.41 mV) were achieved.
- Surface analysis confirmed successful drug encapsulation without chemical interaction.
- In vitro release studies indicated superior drug release from PEG-based suppositories compared to fattibase.
Conclusions:
- Eudragit RSPO-LPV nanoparticles formulated into PEG suppositories demonstrate potential as an effective rectal delivery system.
- This rectal formulation may offer an improved alternative to oral administration for pediatric HIV treatment.
- Further investigation is warranted to validate the efficacy and safety of this novel formulation.
Abstract:
The development of novel paediatrics formulations is critical towards achieving the UNAIDS 90-90-90 targets. According to the latest UNAIDS reports, the availability of antiretrovirals (ARVs) for children has increased significantly, from 49% in 2015 to 53% in 2017. However, this percentage is considerably lower than the 80% for pregnant women that are currently on treatment. Therefore, there is still an urgent need for an alternative child-friendly delivery system. Lopinavir (LPV) is a protease inhibitor first-line HIV treatment drugs but suffers from low aqueous solubility, bitter state, short half-life leading to a limited dissolution and variable bioavailability upon oral administration. This work focused on the fabrication and characterization of a delivery system entailing Eudragit RSPO-LPV nanoparticles loaded suppositories in two different bases to improve the bioavailability and overcome the problem encountered through oral administration emanating from poor solubility. The prepared nanoparticles by nanoprecipitation method were characterized and compounded into suppositories in fattibase and polyethylene glycol (PEG) bases using a melt fusion method. The suppositories were stored at 5 and 25 °C, and were sampled at 0, 4, 8, 12 weeks. The samples were assessed by particle size, entrapment efficiency (EE), zeta potential and polydispersity index (PDI) variations. The preliminary in vitro release studies were analysed by HPLC. The nanoparticles have an average particle size of 191 nm with spherical morphology, entrapment efficiency, polydispersity index and zeta potential of 79.0 ± 0.5%, 0.224, and 25.87 ± 0.41 mV respectively. The surface analysis of the nanoparticles with FTIR, SEM, PXRD and TGA indicated that the drug was truly encapsulated without any interaction. The in vitro release studies showed that a better release was observed in suppositories formulated with PEG than the fattibase by having higher drug concentration released. Hence, this rectal formulation might serve as an alternative for paediatric HIV treatment upon further investigation.
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