Suppr超能文献

鉴定一系列可保护毛细胞 MET 通道免受氨基糖苷类耳毒性的阻滞剂。

Identification of a series of hair-cell MET channel blockers that protect against aminoglycoside-induced ototoxicity.

机构信息

Sussex Neuroscience and.

Sussex Drug Discovery Centre, School of Life Sciences, and.

出版信息

JCI Insight. 2021 Apr 8;6(7):145704. doi: 10.1172/jci.insight.145704.

Abstract

To identify small molecules that shield mammalian sensory hair cells from the ototoxic side effects of aminoglycoside antibiotics, 10,240 compounds were initially screened in zebrafish larvae, selecting for those that protected lateral-line hair cells against neomycin and gentamicin. When the 64 hits from this screen were retested in mouse cochlear cultures, 8 protected outer hair cells (OHCs) from gentamicin in vitro without causing hair-bundle damage. These 8 hits shared structural features and blocked, to varying degrees, the OHC's mechano-electrical transducer (MET) channel, a route of aminoglycoside entry into hair cells. Further characterization of one of the strongest MET channel blockers, UoS-7692, revealed it additionally protected against kanamycin and tobramycin and did not abrogate the bactericidal activity of gentamicin. UoS-7692 behaved, like the aminoglycosides, as a permeant blocker of the MET channel; significantly reduced gentamicin-Texas red loading into OHCs; and preserved lateral-line function in neomycin-treated zebrafish. Transtympanic injection of UoS-7692 protected mouse OHCs from furosemide/kanamycin exposure in vivo and partially preserved hearing. The results confirmed the hair-cell MET channel as a viable target for the identification of compounds that protect the cochlea from aminoglycosides and provide a series of hit compounds that will inform the design of future otoprotectants.

摘要

为了鉴定能够保护哺乳动物感觉毛细胞免受氨基糖苷类抗生素耳毒性副作用的小分子,我们最初在斑马鱼幼虫中筛选了 10240 种化合物,选择那些能够保护侧线毛细胞免受新霉素和庆大霉素损伤的化合物。当对该筛选的 64 个命中化合物在小鼠耳蜗培养物中进行重新测试时,有 8 个化合物在体外保护外毛细胞(OHC)免受庆大霉素损伤,而不会导致毛束损伤。这 8 个命中化合物具有共同的结构特征,并在不同程度上阻断了 OHC 的机械-电换能器(MET)通道,这是氨基糖苷类进入毛细胞的途径。对最强的 MET 通道阻断剂之一 UoS-7692 的进一步表征表明,它还能抵抗卡那霉素和妥布霉素,并且不会消除庆大霉素的杀菌活性。UoS-7692 的行为与氨基糖苷类相似,是 MET 通道的可渗透阻断剂;显著减少庆大霉素-Texas 红进入 OHC 的负载;并在新霉素处理的斑马鱼中保留了侧线功能。经鼓室注射 UoS-7692 可保护小鼠 OHC 免受呋塞米/卡那霉素体内暴露的影响,并部分保留听力。这些结果证实毛细胞 MET 通道是鉴定能保护耳蜗免受氨基糖苷类药物损伤的化合物的可行靶点,并提供了一系列命中化合物,为未来的耳保护剂设计提供了信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a865/8133782/11d1e442f3f7/jciinsight-6-145704-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验