Precise Photothermal Treatment of Methicillin-Resistant <i>S. aureus</i> Infection via Phage Lysin-Cell Binding Domain-Modified Gold Nanosheets
Точная фототермическая терапия инфекции, вызванной метициллинрезистентным S. aureus, с использованием золота в виде нанопластинок, модифицированных доменом связывания с клеткой фонового лизина фага
2023-01-25
SCID: 54.1/2c3vfuh7
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Au@PEG–CBDzgold nanosheetsmethicillin-resistant Staphylococcus aureusphage lysin cell-binding domainphotothermal treatment
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Abstract (AI)
The increasing spread of antibiotic resistance in bacterial pathogens poses a huge threat to global human health. Precise targeting of bacterial pathogens while avoiding collateral damage to healthy tissues has become the overriding goal for bacterial infection treatment. Inspired by the host specificity of bacteriophages, a biomimetic intelligent platform was designed for highly precise photothermal treatment herein. As proof-of-concept, the lysin cell-binding domain (CBD) from a newly discovered virulent methicillin-resistant S. aureus (MRSA) phage Z was applied to the functionalization of gold nanosheets. Our results demonstrated that the bionanocomposite gold particles (Au@PEG–CBDz) could be effectively delivered directly to MRSA and kill them effectively under near infrared irradiation in vitro, while displaying good in vivo biocompatibility. This work is the first to report the combination of phage lysin navigatory function with photothermal effect-induced bactericidal activity from Au nanosheets, providing a novel therapeutic mode for the precision treatment of antibiotic-resistant bacterial infections.
Key Findings
1
Au@PEG–CBDz bionanocomposite particles bind effectively to MRSA and kill them under near-infrared photothermal irradiation in vitro.
2
Au@PEG–CBDz shows good in vivo biocompatibility according to the reported experiments.
3
Developed a biomimetic platform that functionalizes gold nanosheets with a phage lysin cell-binding domain (CBD) to achieve precise targeting of MRSA.
4
The CBD used derives from a newly discovered virulent MRSA phage Z and provides host-specific targeting to minimize collateral damage to healthy tissues.
5
This is the first reported combination of phage lysin navigatory function with gold nanosheet–mediated photothermal bactericidal activity, offering a novel precision therapy for antibiotic-resistant infections.
Research Object
Phage lysin cell-binding domain-functionalized gold nanosheets (Au@PEG–CBDz) used to target methicillin-resistant Staphylococcus aureus (MRSA)
Research Subject
Precise photothermal bactericidal efficacy and targeting specificity of the functionalized gold nanosheets against MRSA under near-infrared irradiation, including delivery to bacteria, in vitro killing, and in vivo biocompatibility
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2023-01-25
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