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Photocontrol of Antibacterial Activity: Shifting from UV to Red Light Activation

机译:抗菌活性的光控:从紫外线到红光活化的转变

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摘要

The field of photopharmacology aims to introduce smart drugs that, through the incorporation of molecular photoswitches, allow for the remote spatial and temporal control of bioactivity by light. This concept could be particularly beneficial in the treatment of bacterial infections, by reducing the systemic and environmental side effects of antibiotics. A major concern in the realization of such light-responsive drugs is the wavelength of the light that is applied. Studies on the photocontrol of biologically active agents mostly rely on UV light, which is cytotoxic and poorly suited for tissue penetration. In our efforts to develop photoswitchable antibiotics, we introduce here antibacterial agents whose activity can be controlled by visible light, while getting into the therapeutic window. For that purpose, a UV-light-responsive core structure based on diaminopyrimidines with suitable antibacterial properties was identified. Subsequent modification of an azobenzene photoswitch moiety led to structures that allowed us to control their activity against Escherichia coli in both directions with light in the visible region. For the first time, full in situ photocontrol of antibacterial activity in the presence of bacteria was attained with green and violet light. Most remarkably, one of the diaminopyrimidines revealed an at least 8-fold difference in activity before and after irradiation with red light at 652 run, showcasing the effective "activation" of a biological agent otherwise inactive within the investigated concentration range, and doing so with red light in the therapeutic window.
机译:光药理学领域旨在引入智能药物,通过结合分子光开关,可以通过光对生物活性进行远程时空控制。通过减少抗生素的全身和环境副作用,该概念在治疗细菌感染中可能特别有益。实现这种光响应性药物的主要问题是所施加的光的波长。关于生物活性剂的光控制的研究主要依赖于紫外线,该紫外线具有细胞毒性,不适合组织穿透。在我们努力开发可光转换的抗生素的过程中,我们在此引入了抗菌剂,它们的活性可以被可见光控制,同时进入治疗窗口。为此,鉴定了基于具有合适抗菌特性的基于二氨基嘧啶的紫外线响应性核心结构。偶氮苯光开关部分的后续修饰导致结构得以允许我们在可见光区域的两个方向上控制它们对大肠杆菌的活性。第一次,用绿光和紫光获得了在细菌存在下的抗菌活性的完全原位光控。最引人注目的是,一种二氨基嘧啶在652nm处用红光照射前后显示出至少8倍的活性差异,显示出在所研究的浓度范围内无效的生物试剂的有效“活化”作用,治疗窗口中出现红灯。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第49期|17979-17986|共8页
  • 作者单位

    Centre for Systems Chemistry, Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

    Centre for Systems Chemistry, Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

    Molecular Microbiology, Groningen Biomolecular Sdences and Biotechnology Institute, Nijenborgh 7 9747 AG Groningen, The Netherlands;

    Centre for Systems Chemistry, Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands,Department of Radiology, University of Groningen, University Medical Centre Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands;

    Centre for Systems Chemistry, Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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