功能高分子材料教育部重点实验室

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张新歌课题组 | ACS APPLIED MATERIALS & INTERFACES

发布人:功能高分子材料教育部重点实验室    发布时间:2018/05/25   浏览次数:

Near-Infrared Light-Activated Thermosensitive Liposomes as Efficient Agents for Photothermal and Antibiotic Synergistic Therapy of Bacterial Biofilm

Zhao, Y (Zhao, Yu)1 ] Dai, XM (Dai, Xiaomei)1 ] Wei, XS (Wei, Xiaosong)1 ] Yu, YJ (Yu, Yunjian)1 ] Chen, XL (Chen, Xuelei)1 ] Zhang, XE (Zhang, Xinge)1 ] Li, CX (Li, Chaoxing)1 ]

ACS APPLIED MATERIALS & INTERFACES, 2018, 10(17): 14426-14437

DOI: 10.1021/acsami.8b01327

  WOS:000431723400023

Abstract

Biofilm is closely related to chronic infections and is difficult to eradicate. Development of effective therapy strategies to control biofilm infection is still challenging. Aiming at biofilm architecture, we designed and prepared near infrared-activated thermosensitive liposomes with photo thermal and antibiotic synergistic therapy capacity to eliminate Pseudomonas aeruginosa biofilm. The liposomes with positive charge and small size aided to enter the biofilm microchannels and locally released antibiotics in infection site. The liposomes could remain stable at 37 degrees C and release about 80% antibiotics over 45 degrees C. The biofilm dispersion rate was up to 80%, which was a 7- to 8-fold rise compared to excess antibiotic alone, indicating that the localized antibiotic release and photothermal co-therapy improved the antimicrobial efficiency. In vivo drug-loaded liposomes in treating P. aeruginosa-induced abscess exhibited an outstanding therapeutic effect. Furthermore, photothermal treatment could stimulate the expression of bcl2-associated athanogene 3 to prevent normal tissue from thermal damage. The near-infrared-activated nanoparticle carriers had the tremendous therapeutic potential to dramatically enhance the efficacy of antibiotics through thermos-triggered drug release and photothermal therapy.