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用于听觉障碍的细胞模型的最新进展。

Recent advancements in cell-based models for auditory disorders.

作者信息

Langlie Jake, Finberg Ariel, Bencie Nathalie B, Mittal Jeenu, Omidian Hossein, Omidi Yadollah, Mittal Rahul, Eshraghi Adrien A

机构信息

Department of Otolaryngology, Cochlear Implant and Hearing Research Laboratory, University of Miami Miller School of Medicine, Miami, Florida, USA.

Department of Pharmaceutical Sciences, College of Pharmacy, Nova Southeastern University, Fort Lauderdale, FL 33328, USA.

出版信息

Bioimpacts. 2022;12(2):155-169. doi: 10.34172/bi.2022.23900. Epub 2022 Feb 6.

Abstract

Cell-based models play an important role in understanding the pathophysiology and etiology of auditory disorders. For the auditory system, models have primarily focused on restoring inner and outer hair cells. However, they have largely underrepresented the surrounding structures and cells that support the function of the hair cells. In this article, we will review recent advancements in the evolution of cell-based models of auditory disorders in their progression towards three dimensional (3D) models and organoids that more closely mimic the pathophysiology . With the elucidation of the molecular targets and transcription factors required to generate diverse cell lines of the components of inner ear, research is starting to progress from two dimensional (2D) models to a greater 3D approach. Of note, the 3D models of the inner ear, including organoids, are relatively new and emerging in the field. As 3D models of the inner ear continue to evolve in complexity, their role in modeling disease will grow as they bridge the gap between cell culture and in vivo models. Using 3D cell models to understand the etiology and molecular mechanisms underlying auditory disorders holds great potential for developing more targeted and effective novel therapeutics.

摘要

基于细胞的模型在理解听觉障碍的病理生理学和病因学方面发挥着重要作用。对于听觉系统,模型主要集中在恢复内毛细胞和外毛细胞。然而,它们在很大程度上未充分体现支持毛细胞功能的周围结构和细胞。在本文中,我们将回顾听觉障碍基于细胞的模型在向更紧密模拟病理生理学的三维(3D)模型和类器官发展过程中的最新进展。随着内耳各组成部分多种细胞系生成所需分子靶点和转录因子的阐明,研究正开始从二维(2D)模型向更具三维性的方法推进。值得注意的是,包括类器官在内的内耳三维模型在该领域相对较新且正在兴起。随着内耳三维模型的复杂性不断发展,它们在疾病建模中的作用将不断增强,因为它们弥合了细胞培养和体内模型之间的差距。利用三维细胞模型来理解听觉障碍的病因和分子机制,对于开发更具针对性和有效性的新型疗法具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/558d/8905588/c4599c01f3a6/bi-12-155-g001.jpg

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