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Published on: March 30, 2017
An aerosol nanocomposite microparticle formulation using rifampicin-cyclodextrin inclusion complexes for the
Matthew T Freeman1, Jie Shen2, Samantha A Meenach3
1University of Rhode Island, College of Engineering, Department of Chemical Engineering, Kingston, RI 02881, USA.
Abstract:
Rifampicin (RIF) is commonly used in the treatment of tuberculosis (TB), a bacterium that currently infects one fourth of the world's population. Despite the effectiveness of RIF in treating TB, current RIF treatment regimens require frequent and prolonged dosing, leading to decreased patient compliance and, ultimately, increased mortality rates. This project aims to provide an alternative to oral RIF by means of an inhalable spray-dried formulation. TB uses alveolar macrophages to hide and replicate until the cells rupture, further spreading the bacteria. Therefore, delivering RIF directly to the lungs can increase the drug concentration at the site of infection while reducing off-site side effects. Cyclodextrin (CD) was used to create a RIF-CD inclusion complex to increase RIF solubility and biodegradable RIF-loaded NP (RIF NP) were developed to provide sustained release of RIF. RIF NP and RIF-CD inclusion complex were spray dried to form a dry powder nanocomposite microparticles (nCmP) formulation (RIF-CD nCmP). RIF-CD nCmP displayed appropriate aerosol dispersion characteristics for effective deposition in the alveolar region of the lungs (4.0 µm) with a fine particle fraction of 89 %. The nCmP provided both a burst release of RIF due to the RIF-CD complex and pH-sensitive release of RIF due to the RIF NP incorporated into the formulation. RIF-CD nCmP did not adversely affect lung epithelial cell viability and RIF NP were able to effectively redisperse from the nCmP after spray drying. These results suggest that RIF-CD nCmP can successfully deliver RIF to the site of TB infection while providing both immediate and sustained release of RIF. Overall, the RIF-CD nCmP formulation has the potential to improve the efficacy for the treatment of TB.
Insights
This study developed an inhalable spray-dried formulation of rifampicin (RIF) to improve tuberculosis (TB) treatment. The novel nanocomposite microparticles offer direct lung delivery for enhanced efficacy and patient compliance.
Area of Science:
- Pharmaceutical Sciences
- Drug Delivery Systems
- Infectious Diseases
Background:
- Tuberculosis (TB) treatment relies on rifampicin (RIF), but current oral regimens suffer from poor patient compliance due to frequent dosing.
- Direct delivery of RIF to the lungs, where Mycobacterium tuberculosis resides in alveolar macrophages, can increase drug concentration and reduce systemic side effects.
Purpose of the Study:
- To develop and characterize an inhalable spray-dried formulation of RIF for improved TB treatment.
- To create a nanocomposite microparticle (nCmP) formulation combining RIF-cyclodextrin (CD) inclusion complexes and RIF-loaded nanoparticles (RIF NP) for controlled release.
Main Methods:
- RIF-CD inclusion complexes and RIF NP were synthesized and spray-dried into nCmP.
- Aerosol dispersion characteristics, including particle size and fine particle fraction, were evaluated.
- In vitro drug release profiles (burst and pH-sensitive) and lung epithelial cell viability were assessed.
Main Results:
- The RIF-CD nCmP formulation exhibited optimal aerosol properties for alveolar deposition (4.0 µm, 89% fine particle fraction).
- The formulation demonstrated both an initial burst release from the RIF-CD complex and sustained, pH-sensitive release from RIF NP.
- The nCmP formulation was non-toxic to lung epithelial cells, and RIF NP showed effective redispersion.
Conclusions:
- The RIF-CD nCmP formulation provides an effective strategy for direct pulmonary delivery of RIF.
- This novel formulation enables both immediate and sustained RIF release, potentially improving TB treatment efficacy and patient compliance.
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