Related Experiment Video
Updated: Dec 12, 2025

A High-throughput Compatible Assay to Evaluate Drug Efficacy against Macrophage Passaged Mycobacterium tuberculosis
Published on: March 24, 2017
Optimal Design, Characterization and Preliminary Safety Evaluation of an Edible Orodispersible Formulation for
Nyaradzo Matawo1, Oluwatoyin A Adeleke1, James Wesley-Smith2
1Division of Pharmaceutical Sciences, School of Pharmacy, Sefako Makgatho Health Science University, Pretoria 0208, South Africa.
Insights
A new edible film containing pyrazinamide was developed for treating pediatric tuberculosis (TB). This orodispersible formulation offers a stable, palatable, and rapidly disintegrating option to improve drug delivery for children with TB.
Area of Science:
- Pharmaceutical Sciences
- Pediatric Medicine
- Drug Delivery Systems
Background:
- Tuberculosis (TB) poses a global health crisis, particularly in children, due to a lack of suitable pediatric drug formulations.
- Existing treatments often present challenges in administration and adherence for young patients.
Purpose of the Study:
- To develop and optimize an edible orodispersible film formulation containing pyrazinamide for pediatric tuberculosis treatment.
- To evaluate the physicochemical properties, stability, and preliminary performance of the developed formulation.
Main Methods:
- Utilized aqueous-particulate blending and solvent casting techniques.
- Employed a Box-Behnken experimental design for optimization.
- Assessed mechanical properties, disintegration time, drug release kinetics, and physicochemical stability.
Main Results:
- The optimized formulation was robust, flexible, and disintegrated rapidly (under 60 seconds).
- Pyrazinamide release followed anomalous diffusion, matrix disintegration, and erosion.
- The film exhibited good physicochemical stability, uniform drug distribution, and was cytobiocompatible and palatable.
Conclusions:
- An optimal edible pyrazinamide orodispersible film was successfully designed for pediatric TB pharmacotherapy.
- This formulation has the potential to enhance treatment adherence and efficacy in children, especially those under five.
- Further clinical evaluation is warranted to confirm its therapeutic benefits.
Abstract:
The severity of tuberculosis (TB) in children is considered a global crisis compounded by the scarcity of pharmaceutical formulations suitable for pediatric use. The purpose of this study was to optimally develop and evaluate a pyrazinamide containing edible orodispersible film formulation potentially suitable for use in pediatrics actively infected with TB. The formulation was prepared employing aqueous-particulate blending and solvent casting methods facilitated by a high performance Box Behnken experimental design template. The optimized orodispersible formulation was mechanically robust, flexible, easy to handle, exhibited rapid disintegration with initial matrix collapse occurring under 60 s (0.58 ± 0.05 min ≡ 34.98 ± 3.00 s) and pyrazinamide release was controlled by anomalous diffusion coupled with matrix disintegration and erosion mechanisms. It was microporous in nature, light weight (57.5 ± 0.5 mg) with an average diameter of 10.5 mm and uniformly distributed pyrazinamide load of 101.13 ± 2.03 %/. The formulation was physicochemically stable with no evidence of destructive drug-excipient interactions founded on outcomes of characterization and environmental stability investigations. Preliminary inquiries revealed that the orodispersible formulation was cytobiocompatible, palatable and remained intact under specific storage conditions. Summarily, an edible pyrazinamide containing orodispersible film formulation was optimally designed to potentially improve TB pharmacotherapy in children, particularly the under 5 year olds.
Related Concept Videos
Pulmonary Tuberculosis V
Latent tuberculosis infection occurs when TB bacteria are present in a person's body, but are not causing illness or symptoms. It is not contagious, and preventive treatment is crucial to avoid the...
Pharmacokinetics in Pediatric Patients: Drug Excretion
Dosage Regimens: Designs and Approaches
Biopharmaceutical Factors Influencing Drug Product Design: Overview
Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption
Pharmaceutical Alternatives: Polymorphic Form-Related and Particle Size-Related Therapeutic Nonequivalence

