Jury Michael, Matthiesen Isabelle, Rasti Boroojeni Fatemeh, Ludwig Saskia L, Civitelli Livia, Winkler Thomas E, Selegård Robert, Herland Anna, Aili Daniel
Laboratory of Molecular Materials, Division of Biophysics and Bioengineering, Department of Physics, Chemistry and Biology, Linköping University, Linköping, 581 83, Sweden.
Division of Micro and Nanosystems, KTH Royal Institute of Technology, Stockholm, 100 44, Sweden.
Adv Healthc Mater. 2022 Jun;11(11):e2102097. doi: 10.1002/adhm.202102097. Epub 2022 Feb 20.
Laminins (LNs) are key components in the extracellular matrix of neuronal tissues in the developing brain and neural stem cell niches. LN-presenting hydrogels can provide a biologically relevant matrix for the 3D culture of neurons toward development of advanced tissue models and cell-based therapies for the treatment of neurological disorders. Biologically derived hydrogels are rich in fragmented LN and are poorly defined concerning composition, which hampers clinical translation. Engineered hydrogels require elaborate and often cytotoxic chemistries for cross-linking and LN conjugation and provide limited possibilities to tailor the properties of the materials. Here a modular hydrogel system for neural 3D cell cultures, based on hyaluronan and poly(ethylene glycol), that is cross-linked and functionalized with human recombinant LN-521 using bioorthogonal copper-free click chemistry, is shown. Encapsulated human neuroblastoma cells demonstrate high viability and grow into spheroids. Long-term neuroepithelial stem cells (lt-NES) cultured in the hydrogels can undergo spontaneous differentiation to neural fate and demonstrate significantly higher viability than cells cultured without LN. The hydrogels further support the structural integrity of 3D bioprinted structures and maintain high viability of bioprinted and syringe extruded lt-NES, which can facilitate biofabrication and development of cell-based therapies.
层粘连蛋白(LNs)是发育中的大脑和神经干细胞龛中神经元组织细胞外基质的关键成分。呈现层粘连蛋白的水凝胶可为神经元的三维培养提供与生物学相关的基质,以促进先进组织模型的开发和用于治疗神经疾病的基于细胞的疗法。生物衍生的水凝胶富含片段化的层粘连蛋白,其组成定义不明确,这阻碍了临床转化。工程水凝胶需要复杂且通常具有细胞毒性的化学方法进行交联和层粘连蛋白偶联,并且在调整材料特性方面提供的可能性有限。本文展示了一种基于透明质酸和聚乙二醇的用于神经三维细胞培养的模块化水凝胶系统,该系统使用无铜生物正交点击化学与人重组LN-521进行交联和功能化。封装的人神经母细胞瘤细胞显示出高活力并生长成球体。在水凝胶中培养的长期神经上皮干细胞(lt-NES)可自发分化为神经命运,并且与未使用层粘连蛋白培养的细胞相比,显示出显著更高的活力。这些水凝胶进一步支持三维生物打印结构的结构完整性,并维持生物打印和注射器挤出的lt-NES的高活力,这可以促进生物制造和基于细胞的疗法的开发。