Eradication of planktonic bacteria by shape-tailored gold nanoparticle photothermia†

IF 5.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Zhendong Peng, Laurent Royon, Yun Luo, Philippe Decorse, Sarra Gam Derouich, Michaël Bosco, Christine Gravier-Pelletier, Romain Briandet, John S. Lomas, Claire Mangeney and Miryana Hémadi
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Abstract

Bacterial antimicrobial resistance (AMR) has emerged as a global challenge, exacerbated by the formation of biofilms. To address this issue, the bactericidal effect of gold nanoparticle photothermia has been explored. Gold nanoparticles with different morphologies: spherical (AuNSP), rods (AuNRO), stars (AuNST), and flower-shaped (AuNFL) were synthesised and characterised. Scanning and transmission electron microscopy images confirm the morphologies and give dimensions for the different types of nanoparticles in good agreement with those from dynamic light scattering measurements. Their photothermal capacities under irradiation at 808 and 1064 nm were assessed. The specific absorption rates were determined, and light-to-heat conversion efficiencies evaluated in the heating and cooling phases. Phothermally induced localized hyperthermia significantly increased the mortality rate of planktonic Escherichia coli in the stationary phase, approaching 100% for AuNRO, AuNST, and AuNFL, while AuNSP was ineffective. This demonstrates that bactericidal efficacy is highly dependent on nanoparticle morphology. These findings highlight the potential of shape-tailored gold nanoparticles for developing effective antibacterial treatments.

Abstract Image

通过形状定制的金纳米粒子光热技术消灭浮游细菌†。
细菌的抗菌药耐药性(AMR)已成为一项全球性挑战,生物膜的形成更加剧了这一问题。为解决这一问题,人们探索了金纳米粒子光热的杀菌效果。研究人员合成并鉴定了不同形态的金纳米粒子:球形(AuNSP)、棒形(AuNRO)、星形(AuNST)和花形(AuNFL)。扫描和透射电子显微镜图像证实了这些形态,并给出了不同类型纳米粒子的尺寸,与动态光散射测量结果十分吻合。评估了它们在 808 和 1064 纳米波长照射下的光热能力。测定了比吸收率,并评估了加热和冷却阶段的光热转换效率。光热诱导的局部高热显著提高了静止期浮游大肠杆菌的死亡率,AuNRO、AuNST 和 AuNFL 的死亡率接近 100%,而 AuNSP 则无效。这表明杀菌效果与纳米粒子的形态有很大关系。这些发现凸显了形状定制金纳米粒子在开发有效抗菌疗法方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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