首页> 外国专利> Method for Killing and Tracing Bacteria by Coating Same with Self-Assembled Gold Nanoshell Layer and Producing Photothermal Decomposition and Cold Light by means of Laser

Method for Killing and Tracing Bacteria by Coating Same with Self-Assembled Gold Nanoshell Layer and Producing Photothermal Decomposition and Cold Light by means of Laser

机译:自组装金纳米壳层包被细菌并用激光产生光热分解和冷光杀灭细菌的方法

摘要

As an extremely simple and efficiency way to kill Gram-positive, -negative, -multidrug resistant bacteria, and in particular methicillin-resistant Staphylococcus aureus, gold nanoparticles were grown self-assembling to yield gold nanoshells on the surface of bacteria (bacteria coated with gold nanoshells or bacterial nanomaterials) by the solution contained gold ion but no adding reductant. The bacteria with gold nanoshells still kept their vitality and mobility for weeks. Due to gold with the high efficiently to convert absorbed radiation into heat for serving as photothermal therapeutic agents, enabled the bacteria coated with gold nanoshells acted as photothermal agents to kill bacteria efficiently. As a result, these bacterial nanomaterials showed impressive photothermolytic efficacy to reduce the viability of bacteria with laser irradiation and an excellent ability to emit photoluminescence after laser irradiation which was generated from the dead bacteria coated with bacterial nanomaterials. The stronger photoluminescence was emitted, the more bacteria were killed. Moreover, the photoluminescence which was able to sustain femtosecond laser exposure, keep luminescence emitted and prevent from photobleaching was still generated after being exposed for hours. It is very eligible to act as optical contrast agents. As a result, these nanomaterials were definitely able to serve as brand-new contrast agents or indicators to determine viability, track and localize bacteria in clinical applications.
机译:作为杀死革兰氏阳性,阴性,多药耐药细菌,特别是耐甲氧西林金黄色葡萄球菌的一种极其简单有效的方法,金纳米粒子可以自组装生长,从而在金纳米粒子上产生金纳米壳。该溶液在细菌表面(涂有金纳米壳或细菌纳米材料的细菌)的表面含有金离子,但未添加还原剂。带有金纳米壳的细菌可以保持生命力和迁移能力达数周之久。由于金具有将吸收的辐射转化为热的高效能,可以用作光热治疗剂,因此,涂有金纳米壳的细菌可以作为光热剂有效杀灭细菌。结果,这些细菌纳米材料显示出令人印象深刻的光热解功效,以降低细菌在激光辐照下的生存能力,并且具有优异的在激光辐照后发射光致发光的能力,该能力是由涂覆有细菌纳米材料的死细菌产生的。发出的光致发光越强,杀死的细菌越多。另外,曝光数小时后仍产生能够维持飞秒激光曝光,保持发光并防止光致漂白的光致发光。非常适合充当光学造影剂。结果,这些纳米材料绝对能够用作全新的造影剂或指示剂,以在临床应用中确定细菌的生存力,追踪和定位细菌。

著录项

  • 公开/公告号US2016059033A1

    专利类型

  • 公开/公告日2016-03-03

    原文格式PDF

  • 申请/专利权人 WEN-SHUO KUO;

    申请/专利号US201514851060

  • 发明设计人 WEN-SHUO KUO;

    申请日2015-09-11

  • 分类号A61N5/06;A61L2/04;

  • 国家 US

  • 入库时间 2022-08-21 14:34:38

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