Zebrafish larvae are useful for identifying chemicals against lateral line (LL) hair cell (HC) damage and this type of chemical screen mainly focuses on searching for protectors against cell death. To expand the candidate pool of HC protectors, a self-built acoustic escape response (AER)-detecting system was developed to apply both low-frequency near-field sound transmission and AER image acquisition/processing modules. The device quickly confirmed the changed LL HC functions caused by most known ototoxins, protectors, and neural transmission modifiers, or knockdown of LL HC-expressing genes. With ten devices wired in tandem, five 'hit' chemicals were identified from 124 cyclin-dependent kinase inhibitors to partially restore cisplatin-damaged AER in less than a day. AS2863619, ribociclib, and SU9516 among the hits, protected the HCs in the mouse cochlea. Therefore, using free-swimming larval zebrafish, the self-made AER-detecting device can efficiently identify compounds that are protective against HC damage, including cell death and loss-of-function.
A Novel Functional Method of Protector Screening for Zebrafish Lateral Line Hair Cells via the Acoustic Escape Response.
通过声学逃逸反应筛选斑马鱼侧线毛细胞保护因子的新型功能方法
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作者:Zheng Ling, Shen Qiaosen, Zhao Tong, Liu Qingsong, Huang Zihao, Zhao Feng, Zhang Mengqian, Song Yongdong, Zhang Daogong, Liu Dong, Chen Fangyi
| 期刊: | Neuroscience Bulletin | 影响因子: | 5.800 |
| 时间: | 2025 | 起止号: | 2025 Sep;41(9):1537-1552 |
| doi: | 10.1007/s12264-025-01406-3 | 研究方向: | 细胞生物学 |
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