4.6 Article

Spatial and Age-Dependent Hair Cell Generation in the Postnatal Mammalian Utricle

期刊

MOLECULAR NEUROBIOLOGY
卷 53, 期 3, 页码 1601-1612

出版社

HUMANA PRESS INC
DOI: 10.1007/s12035-015-9119-0

关键词

Atoh1; Hair cell; Vestibule; Utricle; Regeneration; Proliferation

资金

  1. National Institutes of Health (NIH)-National Institute on Deafness and Other Communication Disorders [R01 DC05213]
  2. National Natural Science Foundation of China [81271084]
  3. Natural Science Foundation of China [81420108010, 81400460]

向作者/读者索取更多资源

Loss of vestibular hair cells is a common cause of balance disorders. Current treatment options for bilateral vestibular dysfunction are limited. During development, atonal homolog 1 (Atoh1) is sufficient and necessary for the formation of hair cells and provides a promising gene target to induce hair cell generation in the mammals. In this study, we used a transgenic mouse line to test the age and cell type specificity of hair cell induction in the postnatal utricle in mice. We found that forced Atoh1 expression in vivo can induce hair cell formation in the utricle from postnatal days 1 to 21, while the efficacy of hair cell induction is progressively reduced as the animals become older. In the utricle, the induction of hair cells occurs both within the sensory region and in cells in the transitional epithelium next to the sensory region. Within the sensory epithelium, the central region, known as the striola, is most subjective to the induction of hair cell formation. Furthermore, forced Atoh1 expression can promote proliferation in an age-dependent manner that mirrors the progressively reduced efficacy of hair cell induction in the postnatal utricle. These results suggest that targeting both cell proliferation and Atoh1 in the utricle striolar region may be explored to induce hair cell regeneration in mammals. The study also demonstrates the usefulness of the animal model that provides an in vivo Atoh1 induction model for vestibular regeneration studies.

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