4.8 Review

Innate Immunity Provides Biomarkers of Health for Teleosts Exposed to Nanoparticles

Journal

FRONTIERS IN IMMUNOLOGY
Volume 9, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2018.03074

Keywords

innate immunity system; nanoparticles; teleosts; oxidative stress; leukocytes

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Funding

  1. CONICYT-Chile postdoctoral fellowship (Becas Chile) [74170029]
  2. National Fund for Innovation in Science and Technology (FINCyT/Innovate-Peru) scholarship
  3. Department of Biological Sciences at the University of Alberta
  4. NSERC (Canada) [RGPIN-2018-05768]

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In recent years, the unique properties of nanoparticles have fostered novel applications in various fields such as biology, pharmaceuticals, agriculture, and others. Unfortunately, their rapid integration into daily life has also led to environmental concerns due to uncontrolled release of nanoparticles into the aquatic environment. Despite increasing awareness of nanoparticle bioaccumulation in the aquatic environment, much remains to be learned about their impact on aquatic organisms and how to best monitor these effects. Herein, we provide the first review of innate immunity as an emerging tool to assess the health of fish following nanoparticle exposure. Fish are widely used as sentinels for aquatic ecosystem pollution and innate immune parameters offer sensitive and reliable tools that can be harnessed for evaluation of contamination events. The most frequent biomarkers highlighted in literature to date include, but are not limited to, parameters associated with leukocyte dynamics, oxidative stress, and cytokine production. Taken together, innate immunity offers finite and sensitive biomarkers for assessment of the impact of nanoparticles on fish health.

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