Journal of Peking University(Health Sciences) ›› 2017, Vol. 49 ›› Issue (3): 501-500. doi: 10.3969/j.issn.1671-167X.2017.03.021

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Morphological changes on cochlear hair cells of rats in simulated weightlessness and inboard noise

CHEN Na, WU Wei△, DING Rui-ying, HAN Hao-lun, WANG Hong-nan, LI Bao-wei, WANG Gang   

  1. (Department of OtolaryngologogyHead and Neck Surgery, the 306th Hospital of PLA, Beijing 100101, China)
  • Online:2017-06-18 Published:2017-06-18
  • Contact: WU Wei E-mail: entwuwei@126.com
  • Supported by:
    Supported by the Major project of 12 th Five-Year for PLA (AWS11J003)

Abstract: Objective: To observe the morphological changes on cochlear hair cells of rats in simulated weightlessness and inboard noise and to investigate the different changes in three turns of hair cells. Methods: Thirty-two healthy SD rats, all males, were randomly divided into four groups: control group, weightlessness group, noise group and weightlessness+noise groups (n=8). Then rats were exposed to -30° head down tilt as simulated weightlessness and inboard noise including steady-state noise which was (72±2) dB SPL and impulse noise up to 160 dB SPL in spaceship environment. The control group was kept in normal condition for 8 weeks. Bilateral auditory brainstem response (ABR) thresholds were tested before and after exposure respectively, and immunofluorescence staining and scanning electron microscopy (SEMs) of basilar membrane were applied after exposure. Results: ABR threshold shifts of each group were higher after exposure. There was difference between ABRs of the experiment groups before and after exposure (P<0.05). IF showed that the inner hair cells (IHCs) missing was the main damage in the basal turn of weightlessness group, the hair cells in the middle turn were swell and in the top turn, the hair cells were not clear. In noise group, the main loss happened in the outer hair cells (OHCs) of the outermost layer. In weightlessness+noise group, the nuclear missing in the basal turn was apparent, and mainly happened at the outermost layer. Meanwhile, the missing of hair cells in the middle turn and top turn was seen at the innermost layer. SEM showed that the cilia in the basal turn of weightlessness group were serious lodging, and occasional absence. Furthermore, the basal cilia in noise group became lodged and absent, and the other two turns were seriously missing. And in weightlessness+noise group, the cilia missing in the basal turn was apparently seen. The damage degree of the four groups: weightlessness+noise group>noise group>weightlessness group>control group and the damage degree of the four turns of hair cells: basal turn>mid turn>top turn. Conclusion: The rats exposed to the above environment for 2 weeks displayed obvious changes in cochlea morphology, and the weightlessness+noise group had the most obvious damage.

Key words: Weightlessness simulation, Cochlea, Hair cells, anditory, inner, Hair cells, anditory, outer, Microscopy, electron, scanning

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