Palazzolo Gemma, Broguiere Nicolas, Cenciarelli Orlando, Dermutz Harald, Zenobi-Wong Marcy
1 Cartilage Engineering+Regeneration , ETH Zürich, Zürich, Switzerland .
2 Laboratory of Biosensors and Bioelectronics , ETH Zürich, Zürich, Switzerland .
Tissue Eng Part A. 2015 Aug;21(15-16):2177-85. doi: 10.1089/ten.TEA.2014.0518. Epub 2015 May 29.
Neuron development and function are exquisitely sensitive to the mechanical properties of their surroundings. Three-dimensional (3D) cultures are therefore being explored as they better mimic the features of the native extracellular matrix. Limitations of existing 3D culture models include poorly defined composition, rapid degradation, and suboptimal biocompatibility. Here we show that ionically cross-linked ultrasoft hydrogels made from unmodified alginate can potently promote neuritogenesis. Alginate hydrogels were characterized mechanically and a remarkable range of stiffness (10-4000 Pa) could be produced by varying the macromer content (0.1-0.4% w/v) and CaCl2 concentration. Dissociated rat embryonic cortical neurons encapsulated within the softest of the hydrogels (0.1% w/v, 10 mM CaCl2) showed excellent viability, extensive formation of axons and dendrites, and long-term activity as determined by calcium imaging. In conclusion, alginate is an off-the-shelf, easy to handle, and inexpensive material, which can be used to make ultrasoft hydrogels for the formation of stable and functional 3D neuronal networks. This 3D culture system could have important applications in neuropharmacology, toxicology, and regenerative medicine.
神经元的发育和功能对其周围环境的力学特性极为敏感。因此,人们正在探索三维(3D)培养方式,因为它们能更好地模拟天然细胞外基质的特征。现有3D培养模型的局限性包括成分定义不明确、快速降解以及生物相容性欠佳。在此,我们表明由未改性藻酸盐制成的离子交联超软水凝胶能够有力地促进神经突生长。对藻酸盐水凝胶进行了力学表征,通过改变大分子单体含量(0.1 - 0.4% w/v)和氯化钙浓度,可以产生显著范围的硬度(10 - 4000 Pa)。封装在最软的水凝胶(0.1% w/v,10 mM氯化钙)中的解离大鼠胚胎皮质神经元表现出优异的活力、广泛的轴突和树突形成以及通过钙成像确定的长期活性。总之,藻酸盐是一种现成的、易于处理且价格低廉的材料,可用于制造超软水凝胶以形成稳定且功能正常的3D神经元网络。这种3D培养系统可能在神经药理学、毒理学和再生医学中具有重要应用。