4.5 Article

Impact of noise exposure on the circadian clock in the auditory system

期刊

JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA
卷 146, 期 5, 页码 3960-3966

出版社

ACOUSTICAL SOC AMER AMER INST PHYSICS
DOI: 10.1121/1.5132290

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资金

  1. Communication Disorders of the National Institutes of Health [R21DC013172, 1R56DC016415-01]
  2. Swedish Medical Research Council [K2014-99X-22478-01-3]
  3. Karolinska Institutet
  4. Tysta Skolan
  5. Horselforskningsfonden
  6. Magnus Bergvalls
  7. EU [722046]
  8. Office of the Assistant Secretary of Defense for Health Affairs through the Neurosensory and Rehabilitation [W81XWH-16-1-0032]

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Circadian rhythms control the timing of all bodily functions, and misalignment in the rhythms can cause various diseases. Moreover, circadian rhythms are highly conserved and are regulated by a transcriptional-translational feedback loop of circadian genes that has a periodicity of approximately 24 h. The cochlea and the inferior colliculus (IC) have been shown to possess an autonomous and self-sustained circadian system as demonstrated by recording, in real time, the bioluminescence from PERIOD2::LUCIFERASE (PER2::LUC) mice. The cochlea and IC both express the core clock genes, Per1, Per2, Bmal1, and Rev-Erb alpha, where RNA abundance is rhythmically distributed with a 24 h cycle. Noise exposure alters clock gene expression in the cochlea and the IC after noise stimulation, although in different ways. These findings highlight the importance of circadian responses in the cochlea and the IC and emphasize the importance of circadian mechanisms for understanding the differences in central and peripheral auditory function and the subsequent molecular changes that occur after daytime (inactive phase) or nighttime (active phase) noise trauma. (C) 2019 Acoustical Society of America.

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