Arkenberg Matthew R, Jafarkhani Mahboubeh, Lin Chien-Chi, Hashino Eri
Department of Otolaryngology-Head and Neck Surgery, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Weldon School of Biomedical Engineering, Purdue University, Indianapolis, IN 46202, USA.
Stem Cell Reports. 2025 Feb 11;20(2):102386. doi: 10.1016/j.stemcr.2024.12.001. Epub 2025 Jan 9.
The mechanical properties in the inner ear microenvironment play a key role in its patterning during embryonic development. To recapitulate inner ear development in vitro, three-dimensional tissue engineering strategies including the application of representative tissue models and scaffolds are of increasing interest. Human inner ear organoids are a promising model to recapitulate developmental processes; however, the current protocol requires Matrigel that contains ill-defined extracellular matrix components. Here, we implement an alternative, chemically defined, dynamic hydrogel to support the differentiation of human inner ear organoids. Specifically, thiol-norbornene and hydrazide-aldehyde click chemistries are used to fabricate inner ear organoid-laden, gelatin-based scaffolds. We identify optimal formulations to support hair cell development with comparable efficiency and fidelity to Matrigel-cultured organoids. These results suggest that the chemically defined hydrogel may serve as a viable alternative to Matrigel for inner ear tissue engineering.
内耳微环境中的力学特性在胚胎发育过程中对其模式形成起着关键作用。为了在体外重现内耳发育过程,包括应用代表性组织模型和支架在内的三维组织工程策略越来越受到关注。人类内耳类器官是重现发育过程的一个有前景的模型;然而,目前的方案需要含有成分不明确的细胞外基质的基质胶。在此,我们采用了一种替代的、化学成分明确的动态水凝胶来支持人类内耳类器官的分化。具体而言,巯基-降冰片烯和酰肼-醛点击化学用于制造负载内耳类器官的明胶基支架。我们确定了支持毛细胞发育的最佳配方,其效率和保真度与基质胶培养的类器官相当。这些结果表明,化学成分明确的水凝胶可作为基质胶用于内耳组织工程的可行替代物。