Synchronous Sterilization and Macrophage Regulation for Treating Multidrug-Resistant Pseudomonas aeruginosa-Infected
Rui Chen1, Jinjie Wang1, Yuhang Wang1
1School of Materials Science and Engineering, Jilin Provincial Key Laboratory of Human Health Status Identification and Function Enhancement, Changchun University, Changchun 130022, China.
Abstract:
The emergence of multidrug-resistant bacteria and persistent inflammatory responses have exacerbated the therapeutic difficulty of bacteria-infected pneumonia. There is an urgent need to find new strategies for synchronous sterilization and inflammation regulation for pneumonia. Herein, we developed maleimide-modified and alantolactone (Ala)-loaded copper indium selenide nanoparticles (ACIS NPs) to achieve near-infrared II (NIR-II) light-triggered photodynamic immunotherapy for multidrug-resistant Pseudomonas aeruginosa-infected pneumonia. After intranasal administration, they can quickly penetrate the mucus layer and then target P. aeruginosa and attach to its biofilm, achieving bacterial inactivation and biofilm elimination under NIR-II light irradiation. Simultaneously, ACIS NPs can also release Ala at the lesion site. They can not only stimulate the maturation of phagolysosomes in macrophages to increase phagocytosis efficiency but also downregulate the expression of NF-κB to reduce inflammatory cytokines and relieve the inflammatory level, thus promoting the polarization of macrophages toward an anti-inflammatory phenotype. Both in vitro and in vivo experiments have demonstrated that ACIS NPs can accumulate in lung tissues for killing P. aeruginosa and regulating macrophages, exhibiting high therapeutic efficacy against bacteria-infected pneumonia. This study demonstrates the potential of ACIS NPs as an alternative to traditional antibiotics, offers hope against bacterial resistance and the inhibition of biofilm formation, regulates the disordered inflammatory environment of the body, and provides a new strategy for bacteria-infected pneumonia therapy.
Insights
New copper indium selenide nanoparticles (ACIS NPs) offer a novel treatment for multidrug-resistant bacterial pneumonia. These nanoparticles utilize near-infrared II light to eliminate bacteria and regulate inflammation, providing a promising alternative to antibiotics.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Immunology
Background:
- Multidrug-resistant bacteria and persistent inflammation complicate pneumonia treatment.
- Novel strategies are needed for simultaneous bacterial clearance and inflammation control in pneumonia.
Purpose of the Study:
- To develop maleimide-modified, alantolactone-loaded copper indium selenide nanoparticles (ACIS NPs).
- To investigate ACIS NPs for near-infrared II (NIR-II) light-triggered photodynamic immunotherapy against multidrug-resistant *Pseudomonas aeruginosa*-infected pneumonia.
Main Methods:
- Intranasal administration of ACIS NPs to target *P. aeruginosa* and its biofilm.
- NIR-II light irradiation for bacterial inactivation and biofilm elimination.
- Alantolactone (Ala) release to modulate macrophage phagocytosis and downregulate NF-κB signaling, reducing inflammation.
Main Results:
- ACIS NPs effectively penetrated mucus, targeted bacteria, and eliminated biofilms under NIR-II light.
- Released Ala enhanced macrophage phagocytosis and promoted an anti-inflammatory phenotype by reducing inflammatory cytokines.
- *In vitro* and *in vivo* studies confirmed ACIS NP accumulation in lung tissues, demonstrating efficacy in killing bacteria and regulating inflammation.
Conclusions:
- ACIS NPs show significant therapeutic potential for bacteria-infected pneumonia, offering an alternative to traditional antibiotics.
- This approach addresses bacterial resistance and biofilm formation while managing the inflammatory environment.
- ACIS NPs provide a novel strategy for treating complex pneumonia cases.
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