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用于高效生成毛细胞和模拟耳毒性反应的优化内耳类器官。

Optimized inner ear organoids for efficient hair cell generation and ototoxicity response modeling.

作者信息

Qin Xuanhe, Fu Liping, Li Chunying, Tan Xilin, Yin Xiaolei

机构信息

Institute for Regenerative Medicine, State Key Laboratory of Cardiology and Medical Innovation Center, Shanghai East Hospital, Frontier Science Center for Stem Cell Research, School of Life Sciences and Technology, Tongji University, Shanghai, 200092, China.

出版信息

Sci China Life Sci. 2025 May;68(5):1369-1383. doi: 10.1007/s11427-024-2803-1. Epub 2025 Jan 23.

Abstract

Hair cells in the mammalian cochlea are highly vulnerable to damage from drug toxicity, noise exposure, aging, and genetic mutations, with no capacity for regeneration. Progress in hair cell protection research has been limited by the scarcity of cochlear tissue and suitable in vitro models. Here, we present a novel one-step, self-organizing inner ear organoid system optimized with small molecules, which bypasses the need for multi-step expansion and forced differentiation protocols. This approach efficiently generates hair cells and supporting cells that recapitulate the molecular, cellular, and structural characteristics of the inner ear. Single-cell RNA sequencing revealed the diversity and fidelity of cell populations within the organoids. Utilizing this platform, we validated the protective effects of candidate compounds against hair cell damage, highlighting its potential as a powerful tool for drug discovery and mechanistic studies of hair cell protection.

摘要

哺乳动物耳蜗中的毛细胞极易受到药物毒性、噪声暴露、衰老和基因突变的损害,且没有再生能力。毛细胞保护研究的进展一直受到耳蜗组织稀缺和合适体外模型缺乏的限制。在此,我们展示了一种经小分子优化的新型一步法自组织内耳类器官系统,该系统无需多步扩增和强制分化方案。这种方法能高效生成模拟内耳分子、细胞和结构特征的毛细胞和支持细胞。单细胞RNA测序揭示了类器官内细胞群体的多样性和保真度。利用该平台,我们验证了候选化合物对毛细胞损伤的保护作用,突出了其作为药物发现和毛细胞保护机制研究有力工具的潜力。

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