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Nano- and micro-based inhaled drug delivery systems for targeting alveolar macrophages
Wing-Hin Lee1, Ching-Yee Loo, Daniela Traini
1Woolcock Institute of Medical Research, Sydney Medical School, Respiratory Technology, The Discipline of Pharmacology , Sydney, 2006 , Australia w.lee@sydney.edu.au.
Introduction:
Macrophages are the most versatile cells in the hematopoietic system and are strategically distributed in tissues to fight pathogens or other foreign particles. In the lung, however, for intracellular infections such as tuberculosis, pneumonia and aspergillosis, bacteria and fungi utilize the alveolar macrophage as a breeding ground. This has become a challenge for the treatment of these infections, as most drugs do not effectively reach the macrophages at therapeutic levels. Alveolar macrophages also play an important role to initiative adaptive immunity toward combating inflammation and cancer in the lung.
Areas Covered:
This review focuses on the development of micro- and nanotechnology-based drug delivery systems to target alveolar macrophages in association with intracellular infections, cancer and lung inflammation. Aspects of nanoparticle and micron-sized particle engineering through exploitation of particles' physicochemical characteristics such as particle size, surface charge and geometry of particles are discussed. In addition, the application of nanocarriers such as liposomes, polymeric nanoparticles and dendrimers are covered with respect to macrophage targeting.
Expert Opinion:
Drug delivery targeted to alveolar macrophages in the lung is becoming a reality thanks to micro- and nanotechnology breakthrough. The literature review shows that regulation of physicochemical parameters of particles could be a recipe to enhance macrophage targeting and uptake. However, there is still a need to identify more target-specific receptors in order to facilitate drug targeting. Besides that, the toxicity of nanocarriers arising from prolonged residence in the lung should be taken into consideration during formulation.
Insights
Micro- and nanotechnology enable targeted drug delivery to lung alveolar macrophages for treating infections and cancer. Optimizing particle properties enhances uptake, but further research is needed for specific targeting and safety.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Pharmacology
Background:
- Alveolar macrophages are crucial for lung immunity but are exploited by pathogens in infections like tuberculosis.
- Intracellular lung infections and cancers pose treatment challenges due to poor drug penetration into macrophages.
- Alveolar macrophages initiate adaptive immunity against lung inflammation and cancer.
Purpose of the Study:
- To review micro- and nanotechnology-based drug delivery systems for targeting alveolar macrophages.
- To discuss nanoparticle and micron-sized particle engineering for macrophage targeting.
- To cover nanocarriers like liposomes, polymeric nanoparticles, and dendrimers for macrophage delivery.
Main Methods:
- Literature review of micro- and nanotechnology-based drug delivery systems.
- Analysis of particle physicochemical characteristics (size, charge, geometry) for macrophage targeting.
- Evaluation of nanocarrier applications (liposomes, polymeric nanoparticles, dendrimers) for lung delivery.
Main Results:
- Micro- and nanotechnology offer promising solutions for alveolar macrophage-targeted drug delivery.
- Physicochemical properties of particles can be modulated to enhance macrophage targeting and uptake.
- Various nanocarriers show potential for delivering therapeutics to lung macrophages.
Conclusions:
- Targeted drug delivery to alveolar macrophages is advancing with micro- and nanotechnology.
- Optimizing particle characteristics is key for improving macrophage targeting and uptake.
- Further research should focus on identifying specific macrophage receptors and assessing nanocarrier toxicity for safe and effective lung drug delivery.
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