Effect of different gentamicin dose on the plasticity of the ribbon synapses in cochlear inner hair cells of C57BL/6J mice.

Liping Chen, Siqing Xiong, Yi Liu, Xiuli Shang
Author Information
  1. Liping Chen: Department of Neurology, The Ji'an Central People's Hospital, Ji'an City Jiangxi Province 343000, China.

Abstract

Faithful information transfer at the hair cell afferent synapse requires synaptic transmission to be both reliable and temporally precise. The release of neurotransmitter must exhibit both rapid on and off kinetics to accurately follow acoustic stimuli with a periodicity of 1 ms or less. To ensure such remarkable temporal fidelity, the cochlear hair cell afferent synapse undoubtedly relies on unique cellular and molecular specializations. To study effects of different doses of gentamicin on the changes of synaptic ribbons of cochlear inner hair cells (IHCs) in mice, the availability of genetic information, transgenic and knock-out animals make the C57BL/6J mouse a primary model in biomedical research. Aminoglycoside ototoxicity, however, has rarely been studied in mature mice because they are considered highly resistant to the drugs. This study presents models for gentamicin ototoxicity in adult C57BL/6J mouse strains. Five-week-old mice were injected intraperitoneally once daily with 50-300 mg gentamicin base/kg body weight for 7 days. Higher doses of gentamicin appear to be associated with earlier hearing damage in C57BL/6J mice, although not necessarily with more severe damage. At 200 mg/kg, gentamicin appears to induce significant hearing damage while not significantly affect the animal's general condition. Therefore, 200 mg/kg may be an ideal dose for ototoxicity modeling in C57BL/6J mice using gentamicin. In the early period of different dose of gentamicin effect, when the number of hair cells had not changed, the number changes of IHC ribbon synapses had taken place. Through the number of ribbon synapses changing, IHCs increased or decreased connections with spiral ganglion nerves (SGNs). The ribbon synapses played a compensatory role for gentamicin ototoxicity, while this effect was not sufficient to maintain the normal threshold of hearing.

References

  1. J Acoust Soc Am. 2007 Jan;121(1):EL29-34 [PMID: 17297823]
  2. Clin Microbiol Rev. 2003 Jul;16(3):430-50 [PMID: 12857776]
  3. Nat Rev Genet. 2008 Apr;9(4):277-90 [PMID: 18283275]
  4. Nat Neurosci. 2009 Apr;12(4):444-53 [PMID: 19270686]
  5. Audiol Neurootol. 2003 Jan-Feb;8(1):38-48 [PMID: 12566691]
  6. Eur Arch Otorhinolaryngol. 1997;254(1):9-14 [PMID: 9115709]
  7. Curr Opin Otolaryngol Head Neck Surg. 2007 Oct;15(5):352-7 [PMID: 17823553]
  8. Lab Anim. 2010 Apr;44(2):124-31 [PMID: 19858169]
  9. Audiology. 2001 Nov-Dec;40(6):313-21 [PMID: 11781044]
  10. Audiol Neurootol. 2000 Jan-Feb;5(1):3-22 [PMID: 10686428]
  11. J Neurosci. 2008 Jul 23;28(30):7670-8 [PMID: 18650343]
  12. Neurobiol Aging. 2004 Sep;25(8):1085-93 [PMID: 15212833]
  13. J Otolaryngol Head Neck Surg. 2008 Oct;37(5):664-7 [PMID: 19128673]
  14. Hear Res. 2002 Jul;169(1-2):47-55 [PMID: 12121739]
  15. Comput Methods Programs Biomed. 2008 Jan;89(1):76-82 [PMID: 18093692]
  16. Hear Res. 2001 Aug;158(1-2):165-78 [PMID: 11506949]
  17. Cell Tissue Res. 2006 Nov;326(2):379-91 [PMID: 16865347]
  18. Acta Otolaryngol Suppl. 2004 Mar;(551):69-74 [PMID: 15078083]
  19. Micron. 2008 Oct;39(7):967-75 [PMID: 18037303]
  20. Cell. 2006 Oct 20;127(2):277-89 [PMID: 17055430]
  21. Microsc Res Tech. 1996 Dec 15;35(6):472-87 [PMID: 9016450]
  22. Drug Chem Toxicol. 2008;31(1):11-25 [PMID: 18161505]
  23. Cell Tissue Res. 1997 Feb;287(3):435-46 [PMID: 9027298]
  24. J Chem Neuroanat. 2010 Dec;40(4):286-92 [PMID: 20727965]
  25. J Cell Biol. 2005 Feb 28;168(5):825-36 [PMID: 15728193]
  26. Audiol Neurootol. 2009;14(4):254-66 [PMID: 19151550]
  27. Biophys J. 2000 Nov;79(5):2572-82 [PMID: 11053131]
  28. Acta Otorrinolaringol Esp. 2006 Nov;57(9):383-7 [PMID: 17184005]
  29. J Neurosci. 2008 Aug 6;28(32):7954-67 [PMID: 18685021]
  30. J Comp Neurol. 2009 Feb 20;512(6):814-24 [PMID: 19067356]
  31. Eur J Neurosci. 2004 Mar;19(6):1559-71 [PMID: 15066152]

MeSH Term

Animals
Disease Progression
Dose-Response Relationship, Drug
Gentamicins
Hair Cells, Auditory, Inner
Hearing Loss
Mice
Mice, Inbred C57BL
Neuronal Plasticity
Synapses
Time Factors

Chemicals

Gentamicins

Word Cloud

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