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近红外吸收金纳米交叉结构有效靶向光热消融耐多药细菌及其生物膜。

Effective Targeted Photothermal Ablation of Multidrug Resistant Bacteria and Their Biofilms with NIR-Absorbing Gold Nanocrosses.

机构信息

Institute of Materials Research and Engineering, A*STAR, 2 Fusionopolis Way, Singapore, 138634, Singapore.

Department of Biomedical Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore, 117583, Singapore.

出版信息

Adv Healthc Mater. 2016 Aug;5(16):2122-30. doi: 10.1002/adhm.201600346. Epub 2016 Jun 23.

Abstract

With the rapid evolution of antibiotic resistance in bacteria, antibiotic-resistant bacteria (in particular, multidrug-resistant bacteria) and their biofilms have been becoming more and more difficult to be effectively treated with conventional antibiotics. As such, there is a great demand to develop a nonantibiotic approach in efficiently eliminating such bacteria. Here, multibranched gold nanocrosses with strong near-infrared absorption falling in the biological window, which heat up quickly under near-infrared-light irradiation are presented. The gold nanocrosses are conjugated to secondary and primary antibodies for targeting PcrV, a type III secretion protein, which is uniquely expressed on the bacteria superbug, Pseudomonas aeruginosa. The conjugated gold nanocrosses are capable of completely destroying P. aeruginosa and its biofilms upon near-infrared-light irradiation for 5 min with an 800 nm laser at a low power density of ≈3.0 W cm(-2) . No bacterial activity is detected after 48 h postirradiation, which indicates that the heat generated from the irradiated plasmonic gold nanocrosses attached to bacteria is effective in eliminating and preventing the re-growth of the bacteria. Overall, the conjugated gold nanocrosses allow targeted and effective photothermal ablation of multidrug-resistant bacteria and their biofilms in the localized region with reduced nonspecific damage to normal tissue.

摘要

随着细菌对抗生素耐药性的迅速演变,抗生素耐药菌(特别是多药耐药菌)及其生物膜越来越难以用常规抗生素有效治疗。因此,人们迫切需要开发一种非抗生素方法来有效地消除这些细菌。在这里,我们提出了一种具有强近红外吸收的多分支金纳米交叉结构,该结构在生物窗口内,在近红外光照射下迅速升温。金纳米交叉结构与针对 III 型分泌蛋白 PcrV 的二级和一级抗体连接,该蛋白仅在超级细菌铜绿假单胞菌上表达。共轭的金纳米交叉结构能够在近红外光照射下,用 800nm 激光在低功率密度 ≈3.0 W cm(-2) 下,在 5 分钟内完全破坏铜绿假单胞菌及其生物膜。照射后 48 小时后,没有检测到细菌活性,这表明附着在细菌上的等离子体金纳米交叉产生的热量在消除和防止细菌再次生长方面是有效的。总的来说,共轭的金纳米交叉结构允许在局部区域靶向和有效进行光热消融多药耐药菌及其生物膜,同时减少对正常组织的非特异性损伤。

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