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新型γ-分泌酶抑制剂介导的耳蜗培养模型中的毛细胞生成

Hair Cell Generation in Cochlear Culture Models Mediated by Novel γ-Secretase Inhibitors.

作者信息

Erni Silvia T, Gill John C, Palaferri Carlotta, Fernandes Gabriella, Buri Michelle, Lazarides Katherine, Grandgirard Denis, Edge Albert S B, Leib Stephen L, Roccio Marta

机构信息

Neuroinfection Laboratory, Institute for Infectious Diseases, University of Bern, Bern, Switzerland.

Cluster for Regenerative Neuroscience, Department for BioMedical Research (DBMR), University of Bern, Bern, Switzerland.

出版信息

Front Cell Dev Biol. 2021 Aug 13;9:710159. doi: 10.3389/fcell.2021.710159. eCollection 2021.

Abstract

Sensorineural hearing loss is prevalent within society affecting the quality of life of 460 million worldwide. In the majority of cases, this is due to insult or degeneration of mechanosensory hair cells in the cochlea. In adult mammals, hair cell loss is irreversible as sensory cells are not replaced spontaneously. Genetic inhibition of Notch signaling had been shown to induce hair cell formation by transdifferentiation of supporting cells in young postnatal rodents and provided an impetus for targeting Notch pathway with small molecule inhibitors for hearing restoration. Here, the oto-regenerative potential of different γ-secretase inhibitors (GSIs) was evaluated in complementary assay models, including cell lines, organotypic cultures of the organ of Corti and cochlear organoids to characterize two novel GSIs (CPD3 and CPD8). GSI-treatment induced hair cell gene expression in all these models and was effective in increasing hair cell numbers, in particular outer hair cells, both in baseline conditions and in response to ototoxic damage. Hair cells were generated from transdifferentiation of supporting cells. Similar findings were obtained in cochlear organoid cultures, used for the first time to probe regeneration following sisomicin-induced damage. Finally, effective absorption of a novel GSI through the round window membrane and hair cell induction was attained in a whole cochlea culture model and pharmacokinetic comparisons of transtympanic delivery of GSIs and different vehicle formulations were successfully conducted in guinea pigs. This preclinical evaluation of targeting Notch signaling with novel GSIs illustrates methods of characterization for hearing restoration molecules, enabling translation to more complex animal studies and clinical research.

摘要

感音神经性听力损失在社会中普遍存在,影响着全球4.6亿人的生活质量。在大多数情况下,这是由于耳蜗中的机械感觉毛细胞受到损伤或退化所致。在成年哺乳动物中,毛细胞损失是不可逆的,因为感觉细胞不会自发替换。已有研究表明,在出生后早期的啮齿动物中,通过抑制Notch信号通路可诱导支持细胞转分化形成毛细胞,这为用小分子抑制剂靶向Notch通路以恢复听力提供了动力。在此,在包括细胞系、柯蒂氏器的器官型培养物和耳蜗类器官在内的互补分析模型中评估了不同γ-分泌酶抑制剂(GSIs)的耳再生潜力,以表征两种新型GSIs(CPD3和CPD8)。GSI处理在所有这些模型中均诱导了毛细胞基因表达,并且在基线条件下以及对耳毒性损伤的反应中均有效地增加了毛细胞数量,尤其是外毛细胞数量。毛细胞是由支持细胞转分化产生的。在首次用于探测西索米星诱导损伤后的再生情况的耳蜗类器官培养物中也获得了类似的结果。最后,在全耳蜗培养模型中实现了一种新型GSI通过圆窗膜的有效吸收和毛细胞诱导,并在豚鼠中成功进行了GSIs经鼓膜给药与不同载体制剂的药代动力学比较。这种用新型GSIs靶向Notch信号通路的临床前评估说明了听力恢复分子的表征方法,有助于向更复杂的动物研究和临床研究转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0931/8414802/ceb2e1be919c/fcell-09-710159-g001.jpg

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