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Prospects of Inhaled Phage Therapy for Combatting Pulmonary Infections
Xiang Wang1, Zuozhou Xie1, Jinhong Zhao1
1Department of Pulmonary and Critical Care Medicine, The Second People's Hospital of Kunming, Kunming, China.
Abstract:
With respiratory infections accounting for significant morbidity and mortality, the issue of antibiotic resistance has added to the gravity of the situation. Treatment of pulmonary infections (bacterial pneumonia, cystic fibrosis-associated bacterial infections, tuberculosis) is more challenging with the involvement of multi-drug resistant bacterial strains, which act as etiological agents. Furthermore, with the dearth of new antibiotics available and old antibiotics losing efficacy, it is prudent to switch to non-antibiotic approaches to fight this battle. Phage therapy represents one such approach that has proven effective against a range of bacterial pathogens including drug resistant strains. Inhaled phage therapy encompasses the use of stable phage preparations given via aerosol delivery. This therapy can be used as an adjunct treatment option in both prophylactic and therapeutic modes. In the present review, we first highlight the role and action of phages against pulmonary pathogens, followed by delineating the different methods of delivery of inhaled phage therapy with evidence of success. The review aims to focus on recent advances and developments in improving the final success and outcome of pulmonary phage therapy. It details the use of electrospray for targeted delivery, advances in nebulization techniques, individualized controlled inhalation with software control, and liposome-encapsulated nebulized phages to take pulmonary phage delivery to the next level. The review expands knowledge on the pulmonary delivery of phages and the advances that have been made for improved outcomes in the treatment of respiratory infections.
Insights
Antibiotic resistance is a growing threat to respiratory infections. Phage therapy offers a promising non-antibiotic alternative, with inhaled delivery showing potential for treating pulmonary bacterial infections.
Area of Science:
- Microbiology
- Pulmonology
- Biotechnology
Background:
- Respiratory infections cause significant illness and death, exacerbated by antibiotic resistance.
- Multi-drug resistant bacteria complicate treatments for conditions like pneumonia, cystic fibrosis, and tuberculosis.
- New antibiotic development is slow, necessitating alternative therapeutic strategies.
Purpose of the Study:
- To review the efficacy of bacteriophage (phage) therapy against pulmonary pathogens.
- To explore advancements in inhaled phage therapy delivery methods for respiratory infections.
- To highlight innovations enhancing the success of pulmonary phage therapy.
Main Methods:
- Review of existing literature on phage therapy for respiratory infections.
- Analysis of various inhaled phage delivery systems, including electrospray and nebulization.
- Discussion of recent technological developments in phage administration.
Main Results:
- Phage therapy is effective against various bacterial pathogens, including drug-resistant strains.
- Inhaled phage therapy can be administered prophylactically or therapeutically via aerosol.
- Innovations like electrospray, advanced nebulization, and liposome encapsulation improve phage delivery.
Conclusions:
- Phage therapy is a viable alternative to antibiotics for respiratory infections.
- Advances in inhaled delivery systems are crucial for optimizing pulmonary phage therapy outcomes.
- Further research into targeted and enhanced phage delivery is essential for combating resistant pulmonary pathogens.
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