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In vivo analysis of noise dependent activation of white blood cells and microvascular dysfunction in mice.

  • J Eckrich
  • , Y Ruan
  • , S Jiang
  • , K Frenis
  • , Giovanny Rodriguez Blanco
  • , AP Maas
  • , MTB Jimenez
  • , M Kuntic
  • , M Oelze
  • , O Hahad
  • , H Li
  • , S Steven
  • , S Strieth
  • , A von Kriegsheim
  • , T Münzel
  • , A Daiber
  • , A Gericke
  • , BP Ernst

    Research output: Contribution to journalResearch article

    5 Citations (Web of Science)

    Abstract

    This article contains supporting information on data collection for the research article entitled "Aircraft noise exposure drives the activation of white blood cells and induces microvascular dysfunction in mice" by Eckrich et al. We found that noise-induced stress triggered microvascular dysfunction via involvement of innate immune-derived reactive oxygen species. In this article, we present the instrumentation of mice with dorsal skinfold chambers for in vivo microscopic imaging of blood flow, interaction of leukocytes with the vascular wall (also by fluorescent labelling of blood cells) and vessel diameter. In addition, we explain the preparation of cerebral arterioles for measurement of vascular reactivity in vitro.•visualization of noise-dependent effects in dorsal skinfold chamber.•in vivo microscopy of noise-dependent activation of white blood cells.•analysis of noise-dependent microvascular dysfunction in dorsal skinfold chamber and cannulated cerebral arterioles.

    Original languageEnglish
    Article number101540
    Pages (from-to)101540
    Number of pages12
    JournalMethodsX
    Volume8
    DOIs
    Publication statusPublished - 2021

    Branches of science

    • 302 Clinical Medicine

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