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首页> 外文期刊>Food Control >A nano-carrier platform for the targeted delivery of nature-inspired antimicrobials using Engineered Water Nanostructures for food safety applications
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A nano-carrier platform for the targeted delivery of nature-inspired antimicrobials using Engineered Water Nanostructures for food safety applications

机译:用于使用工程化水纳米结构用于食品安全应用的靶向抗微生物剂的纳米载体平台

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摘要

Despite the progress in the area of food safety, foodborne diseases still represent a massive challenge to the public health systems worldwide, mainly due to the substantial inefficiencies across the farm-to-fork continuum. Here, we report the development of a nano-carrier platform, for the targeted and precise delivery of antimicrobials for the inactivation of microorganisms on surfaces using Engineered Water Nanostructures (EWNS). An aqueous suspension of an active ingredient (AI) was used to synthesize iEWNS, with the 'i' denoting the AI used in their synthesis, using a combined electrospray and ionization process. The iEWNS possess unique, active ingredient-dependent physicochemical properties: i) they are engineered to have a tunable size in the nanoscale; ii) they have excessive electric surface charge, and iii) they contain both the reactive oxygen species (ROS) formed due to the ionization of deionized (DI) water, and the AI used in their synthesis. Their charge can be used in combination with an electric field to target them onto a surface of interest. In this approach, a number of nature-inspired antimicrobials, such as H2O2, lysozyme, citric acid, and their combination, were used to synthesize a variety of iEWNS-based nano-sanitizers. It was demonstrated through foodborne-pathogen-inactivation experiments that due to the targeted and precise delivery, and synergistic effects of AI and ROS incorporated in the iEWNS structure, a pico-to nanogram-level dose of the AI delivered to the surface using this nano-carrier platform is capable of achieving 5-log reductions in minutes of exposure time. This aerosol-based, yet 'dry' intervention approach using iEWNS nano-carrier platform offers advantages over current 'wet' techniques that are prevalent commercially, which require grams of the AI to achieve similar inactivation, leading to increased chemical risks and chemical waste byproducts. Such a targeted nano-carrier approach has the potential to revolutionize the delivery of antimicrobials for sterilization in the food industry.
机译:尽管食品安全领域进展,但食源性疾病仍然对全球公共卫生系统造成了巨大挑战,主要是由于农场到叉连续体中的实质性低效率。在这里,我们报告了纳米载体平台的开发,用于使用工程化水纳米结构(EWNS)在表面上灭活的抗微生物的靶向和精确递送。使用组合电喷雾和电离过程,使用活性成分(AI)的水性悬浮液合成IeWNS,其中表示其合成中使用的AI。 IEWNS具有独特的活性成分依赖性物理化学性质:i)它们被设计成在纳米级中具有可调谐尺寸; II)它们具有过多的电气表面电荷,并且III)它们含有由于去离子(DI)水的电离而形成的反应性氧物质(ROS),以及其合成中使用的AI。它们的电荷可以与电场组合使用,以将它们靶向到感兴趣的表面上。在这种方法中,使用许多自然启发的抗微生物剂,例如H 2 O 2,溶菌酶,柠檬酸及其组合,用于合成各种基于IEWNS的纳米消毒剂。通过食源性 - 病原体灭活实验证明,由于靶向和精确的递送,以及Iewns结构中的AI和RO的协同作用,使用该纳米将AI的AI的微微至纳米图级剂量呈现给表面 - 载波平台能够在曝光时间几分钟内实现5个逻辑减少。这种基于气溶胶的尚未“干”的干预方法使用Iewns纳米载体平台提供优于当前的“湿”技术,这些技术在商业上普遍存在,需要克的AI来实现类似的失活,导致化学风险和化学废物副产品增加。这种靶向纳米载体方法有可能彻底改变食品工业中灭菌的抗微生物的递送。

著录项

  • 来源
    《Food Control》 |2019年第2019期|共10页
  • 作者单位

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Electron Microscopy Facil Harvard Med Sch Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

    Harvard Univ Harvard TH Chan Sch Publ Hlth Dept Environm Hlth Ctr Nanotechnol &

    Nanotoxicol Boston MA 02115 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业;
  • 关键词

    Nano-carrier; Nanotechnology; Engineered Water Nanostructures; Food safety; Nature-inspired antimicrobials;

    机译:纳米载体;纳米技术;工程水纳米结构;食品安全;自然启发抗菌剂;

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