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Plasmon-induced oxidative stress and macromolecular damage in pathogenic bacteria

机译:致血管生成细菌的氧化胁迫和大分子损伤

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The inactivation mechanism of bacterial growth by Photodynamic Antibacterial Chemotherapy (PACT) employing gold nanoparticles and gold core/silver shell aspartame stabilized bimetallic nanoparticles was studied. Reactive oxygen species were detected and quantified, using fluorescent probes, in the first 4 h of PACT treatment on a reference strain ( Staphylococcus aureus ATCC 29213) and two clinical isolates (an extended-spectrum β-lactamase-producing Escherichia coli and Pseudomonas aeruginosa ). At the same time, damage of essential molecules such as proteins and lipids was found by spectrometric techniques and TEM images analysis. Overall, these results suggest that the oxidative stress caused by the photothermal effect of plasmon excitation leads to irreversible macromolecular damage and therefore to bacterial death. No signals of resistance to PACT with AuNP was found after a total of 31 passages of S. aureus treated with lower doses of the photosensitizer. All this facts support this therapy as a promising antibacterial alternative to antibiotic-resistant microbes.
机译:研究了采用金纳米颗粒和金芯/银壳稳定的双金属纳米粒子的光动力抗菌化疗(PACT)的细菌生长的灭活机制。使用荧光探针在参考菌株(金黄色葡萄球菌ATCC 29213)和两种临床分离株(延长光谱β-内酰胺酶的大肠杆菌和假单胞菌Aeruginosa)中,使用荧光探针检测和定量反应性氧物质。 。同时,通过光谱技术和TEM图像分析发现了蛋白质和脂质等必需分子的损害。总的来说,这些结果表明,由等离子体激发的光热效应引起的氧化应激导致不可逆的大分子损伤,因此对细菌死亡。在用较低剂量的光敏剂处理的S.UUREUS的总共31段后,没有发现与AUNP的抗性的阻力的信号。所有这些事实都支持这种疗法作为抗生素微生物的有前途的抗菌替代品。

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