The Keck Center for Tissue Engineering, Department of Bioengineering, University of Utah, Salt Lake City, UT 84112, USA.
Biomaterials. 2012 Feb;33(5):1323-35. doi: 10.1016/j.biomaterials.2011.10.034. Epub 2011 Nov 17.
Planar substrates with patterned ligands were used to induce astrocyte alignment whereas substrates with uniform fields of ligand were used to produce random cell orientation. DRG neurons plated on top of oriented astrocyte monolayers exhibited directional outgrowth along aligned astrocytes, demonstrating that purely biological cues provided by the oriented astrocytes were sufficient to provide guidance cues. Antibody blocking studies demonstrated that astrocyte associated FN played a major mechanistic role in directing engineered neurite extension. Our results show that nanometer level surface cues are sufficient to direct nerve outgrowth through an intervening organized astrocyte cell layer. In other studies, we showed that patterned ligands were able to transmit organization cues through multiple cell layers to control the overall alignment of an astrocyte tissue construct, demonstrating how natural scar tissue may develop in situ into potent barriers. In such constructs the spatial organization of astrocyte derived FN maintained its organizational anisotropy throughout the thickness of multilayered astrocyte constructs. These in vitro studies suggest possible roles for such constructs as bridging substrates for neuroregenerative applications.
具有图案化配体的平面基底被用于诱导星形胶质细胞取向排列,而具有均匀配体场的基底则被用于产生随机的细胞取向。在定向星形胶质细胞单层上培养的 DRG 神经元表现出沿定向星形胶质细胞的定向生长,这表明仅仅由定向星形胶质细胞提供的纯生物学线索就足以提供导向线索。抗体阻断研究表明,星形胶质细胞相关的 FN 在指导工程化神经突延伸中起着主要的机械作用。我们的结果表明,纳米级表面线索足以通过中间的组织化星形胶质细胞层来引导神经突的生长。在其他研究中,我们表明,图案化配体能够通过多个细胞层传递组织线索,从而控制星形胶质细胞组织构建体的整体排列,展示了天然瘢痕组织如何在体内发展成为有效的屏障。在这种构建体中,星形胶质细胞衍生的 FN 的空间组织在多层星形胶质细胞构建体的整个厚度上保持其组织各向异性。这些体外研究表明,这种构建体可能作为神经再生应用的桥接基底发挥作用。