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羊膜衍生多通道水凝胶在神经组织修复中的应用。

Amniotic Membrane-Derived Multichannel Hydrogels for Neural Tissue Repair.

机构信息

TEMA - Centre for Mechanical Technology and Automation, Department of Mechanical Engineering, University of Aveiro, Aveiro, 3810-193, Portugal.

CICECO - Department of Chemistry, University of Aveiro, Campus Universitario de Santiago, Aveiro, 3810-193, Portugal.

出版信息

Adv Healthc Mater. 2024 Oct;13(27):e2400522. doi: 10.1002/adhm.202400522. Epub 2024 Jul 11.

Abstract

In the pursuit of advancing neural tissue regeneration, biomaterial scaffolds have emerged as promising candidates, offering potential solutions for nerve disruptions. Among these scaffolds, multichannel hydrogels, characterized by meticulously designed micrometer-scale channels, stand out as instrumental tools for guiding axonal growth and facilitating cellular interactions. This study explores the innovative application of human amniotic membranes modified with methacryloyl domains (AMMA) in neural stem cell (NSC) culture. AMMA hydrogels, possessing a tailored softness resembling the physiological environment, are prepared in the format of multichannel scaffolds to simulate native-like microarchitecture of nerve tracts. Preliminary experiments on AMMA hydrogel films showcase their potential for neural applications, demonstrating robust adhesion, proliferation, and differentiation of NSCs without the need for additional coatings. Transitioning into the 3D realm, the multichannel architecture fosters intricate neuronal networks guiding neurite extension longitudinally. Furthermore, the presence of synaptic vesicles within the cellular arrays suggests the establishment of functional synaptic connections, underscoring the physiological relevance of the developed neuronal networks. This work contributes to the ongoing efforts to find ethical, clinically translatable, and functionally relevant approaches for regenerative neuroscience.

摘要

在追求神经组织再生的过程中,生物材料支架作为有前途的候选者出现,为神经损伤提供了潜在的解决方案。在这些支架中,多通道水凝胶以精心设计的微米级通道为特征,是引导轴突生长和促进细胞相互作用的重要工具。本研究探讨了经过甲基丙烯酰基修饰的人羊膜(AMMA)在神经干细胞(NSC)培养中的创新应用。AMMA 水凝胶具有类似于生理环境的柔软度,被制备成多通道支架的形式,以模拟神经束的天然微结构。AMMA 水凝胶薄膜的初步实验展示了它们在神经应用中的潜力,证明了 NSCs 的强大黏附、增殖和分化能力,而无需额外的涂层。进入 3D 领域,多通道结构促进了复杂的神经元网络,引导神经突纵向延伸。此外,细胞阵列内存在突触小泡表明功能性突触连接的建立,突出了所开发的神经元网络的生理相关性。这项工作为寻找伦理、临床可转化和功能相关的再生神经科学方法做出了贡献。

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