Biomimetic Metal-Organic Framework Gated Nanoplatform for Sonodynamic Therapy against Extensively Drug Resistant Bacterial Lung Infection.
Jianling HuangXiuwen HongSixi ChenYucong HeLixu XieFenglin GaoChenghua ZhuXiao JinHaihao YanYongxia YeMingyue ShaoXingran DuGanzhu FengPublished in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2024)
Novel antimicrobial strategies are urgently needed to treat extensively drug-resistant (XDR) bacterial infections due to the high mortality rate and lack of effective therapeutic agents. Herein, nanoengineered human umbilical cord mesenchymal stem cells (hUC-MSCs), named PMZMU, are designed as a sonosensitizer for synergistic sonodynamic-nano-antimicrobial therapy against gram-negative XDR bacteria. PMZMU is composed of a bacterial targeting peptide (UBI 29-41 ) modified hUC-MSCs membrane (MSCm), a sonosensitizer meso-tetra(4-car-boxyphenyl) porphine doped mesoporous organo-silica nanoparticle and an acidity-responsive metal-organic framework ZIF-8. This innovative formulation enables efficient loading of polymyxin B, reduces off-target drug release, increases circulation and targeting efficacy, and generates reactive oxygen species upon ultrasound irradiation. PMZMU exhibits remarkable in vitro inhibitory activity against four XDR bacteria: Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa (PA), and Escherichia coli. Taking advantage of the bacterial targeting ability of UBI 29-41 and the inflammatory chemotaxis of hUC-MSC, PMZMU can be precisely delivered to lung infection sites thereby augmenting polymyxin B concentration. PMZMU-mediated sonodynamic therapy significantly reduces bacterial burden, relieves inflammatory damage by promoting the polarization of macrophages toward M 2 phenotype, and improves survival rates without introducing adverse events. Overall, this study offers promising strategies for treating deep-tissue XDR bacterial infections, and guides the design and optimization of biomimetic nanomedicine.
Keyphrases
- drug resistant
- multidrug resistant
- acinetobacter baumannii
- gram negative
- klebsiella pneumoniae
- mesenchymal stem cells
- metal organic framework
- umbilical cord
- cancer therapy
- escherichia coli
- drug release
- drug delivery
- pseudomonas aeruginosa
- oxidative stress
- reactive oxygen species
- staphylococcus aureus
- bone marrow
- cardiovascular disease
- cystic fibrosis
- stem cells
- quantum dots
- radiation therapy
- cell therapy
- risk factors
- photodynamic therapy
- endothelial cells
- computed tomography
- smoking cessation
- radiation induced
- replacement therapy
- iron oxide