Department of Otolaryngology, Head and Neck Surgery, University of Kansas School of Medicine, Kansas city, KS, USA.
Gene Ther. 2011 Sep;18(9):884-90. doi: 10.1038/gt.2011.33. Epub 2011 Apr 7.
Loss of balance is often due to loss of vestibular hair cells. In mammals, regeneration of functional hair cells in the mature sensory epithelium is limited; therefore, loss of sensory cells can lead to debilitating balance problems. Delivery of the transcription factor atonal (atoh1) after aminoglycoside ototoxicity has previously been shown to induce the transdifferentiation of supporting cells into new hair cells and restore function. A problem with mouse aminoglycoside models is that the partial loss of hair cells seen in human disease is difficult to establish consistently. To more closely mirror human clinical balance dysfunction, we have used systemic application of 3,3'-iminodipropionitrile (IDPN), a vestibulotoxic nitrile compound known to cause vestibular hair cell loss, to induce a consistent partial loss of vestibular hair cells. To determine if balance function could be restored, we delivered atoh1 using a new adenovirus vector, based on Ad28. The Ad28 adenovector is based on a human serotype with a low seroprevalence that appears to target gene delivery to vestibular supporting cells. To further provide cell type selectivity of gene delivery, we expressed atoh1 using the supporting cell-specific glial fibrillary acid protein promoter. Delivery of this vector to IDPN-damaged vestibular organs resulted in a significant recovery of vestibular hair cells and restoration of balance, as measured by time on rotarod compared with untreated controls.
平衡失调通常是由于前庭毛细胞的丧失所致。在哺乳动物中,成熟感觉上皮中功能性毛细胞的再生受到限制;因此,感觉细胞的丧失会导致衰弱的平衡问题。先前已经表明,在氨基糖苷类耳毒性后递送转录因子 atonal(atoh1)可以诱导支持细胞向新毛细胞的转分化并恢复功能。鼠氨基糖苷类模型的一个问题是,难以一致地建立与人疾病中所见的毛细胞部分丧失相一致的模型。为了更接近地模拟人类临床平衡功能障碍,我们使用全身应用 3,3'-亚氨基二丙腈(IDPN),一种已知引起前庭毛细胞丧失的前庭毒性腈化合物,来诱导前庭毛细胞的一致部分丧失。为了确定平衡功能是否可以恢复,我们使用基于 Ad28 的新型腺病毒载体来递送 atoh1。Ad28 腺病毒载体基于一种血清型较低的血清流行率,似乎可以将基因传递靶向前庭支持细胞。为了进一步提供基因传递的细胞类型选择性,我们使用支持细胞特异性的神经胶质原纤维酸性蛋白启动子来表达 atoh1。与未处理的对照组相比,将该载体递送到 IDPN 损伤的前庭器官中,导致前庭毛细胞的显著恢复和平衡的恢复,如旋转棒上的时间所测量。