Related Experiment Video
Updated: Apr 21, 2026

Self-Nanoemulsification of Healthy Oils to Enhance the Solubility of Lipophilic Drugs
Published on: July 27, 2022
Assessment of simvastatin niosomes for pediatric transdermal drug delivery
Ahmed S Zidan1,2, Khaled M Hosny1,3, Osama A A Ahmed1,4
1a Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy , King Abdulaziz University , Jeddah , KSA .
Insights
Transdermal simvastatin niosomal gels offer a promising approach to manage childhood dyslipidemia, significantly improving drug bioavailability and hypolipidemic activity in pediatric patients.
Area of Science:
- Pharmaceutics
- Nanotechnology
- Pediatric Medicine
Background:
- Childhood dyslipidemia is a growing concern, increasing the risk of adult cardiovascular disease.
- Accurate dosing for pediatric patients is challenging, necessitating novel drug delivery systems.
Purpose of the Study:
- To prepare and characterize transdermal niosomal gels of simvastatin for pediatric use.
- To evaluate the hypolipidemic efficacy and bioavailability of the transdermal system.
Main Methods:
- Twelve simvastatin niosomal gel formulations were prepared and screened.
- Niosomal characteristics, drug release, and surface properties were analyzed.
- Hypolipidemic activity and bioavailability were assessed in a rat model.
Main Results:
- Nano-sized niosomes (0.31 μm) showed optimal simvastatin release (8.5% entrapment capacity).
- Transdermal administration significantly reduced cholesterol and triglycerides, while increasing HDL levels.
- Simvastatin bioavailability was enhanced 3.35-fold (F3) and 2.9-fold (F10) compared to oral suspension.
Conclusions:
- Transdermal simvastatin niosomes demonstrate enhanced bioavailability and hypolipidemic effects.
- This formulation presents a promising option for pediatric antihyperlipidemic treatment.
Abstract:
The prevalence of childhood dyslipidemia increases and is considered as an important risk factor for the incidence of cardiovascular disease in the adulthood. To improve dosing accuracy and facilitate the determination of dosing regimens in function of the body weight, the proposed study aims at preparing transdermal niosomal gels of simvastatin as possible transdermal drug delivery system for pediatric applications. Twelve formulations were prepared to screen the influence of formulation and processing variables on critical niosomal characteristics. Nano-sized niosomes with 0.31 μm number-weighted size displayed highest simvastatin release rate with 8.5% entrapment capacity. The niosomal surface coverage by negative charges was calculated according to Langmuir isotherm with n = 0.42 to suggest that the surface association was site-independent, probably producing surface rearrangements. Hypolipidemic activities after transdermal administration of niosomal gels to rats showed significant reduction in cholesterol and triglyceride levels while increasing plasma high-density lipoproteins concentration. Bioavailability estimation in rats revealed an augmentation in simvastatin bioavailability by 3.35 and 2.9 folds from formulation F3 and F10, respectively, compared with oral drug suspension. Hence, this transdermal simvastatin niosomes not only exhibited remarkable potential to enhance its bioavailability and hypolipidemic activity but also considered a promising pediatric antihyperlipidemic formulation.
Related Concept Videos
Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption
Transdermal Drug Delivery Systems
Pharmacokinetics in Pediatric Patients: Drug Distribution
Pharmacokinetics in Pediatric Patients: Drug Metabolism
Modified-Release Drug Delivery Systems: Overview
Modified-Release Drug Delivery Systems: Bioavailability

