Department of Engineering, Tissue Engineering Laboratory, Università Campus Bio-Medico di Roma, via Álvaro del Portillo 21, Rome, 00128, Italy.
J Biomed Mater Res A. 2017 Sep;105(9):2582-2588. doi: 10.1002/jbm.a.36117. Epub 2017 Jun 15.
Processing of hydrogels represents a main challenge for the prospective application of additive manufacturing (AM) to soft tissue engineering. Furthermore, direct manufacturing of tissue precursors with a cell density similar to native tissues has the potential to overcome the extensive in vitro culture required for conventional cell-seeded scaffolds seeking to fabricate constructs with tailored structural and functional properties. In this work, we present a simple AM methodology that exploits the thermoresponsive behavior of a block copolymer (Pluronic ) as a means to obtain good shape retention at physiological conditions and to induce cellular alignment. Pluronic/alginate blends have been investigated as a model system for the processing of C2C12 murine myoblast cell line. Interestingly, C2C12 cell model demonstrated cell alignment along the deposition direction, potentially representing a new avenue to tailor the resulting cell histoarchitecture during AM process. Furthermore, the fabricated constructs exhibited high cell viability, as well as a significantly improved expression of myogenic genes vs. conventional 2D cultures. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2582-2588, 2017.
水凝胶的加工是将增材制造(AM)应用于软组织工程的主要挑战。此外,直接制造具有类似于天然组织的细胞密度的组织前体有可能克服传统细胞接种支架所需的广泛体外培养,这些支架旨在制造具有定制结构和功能特性的构建体。在这项工作中,我们提出了一种简单的 AM 方法,该方法利用嵌段共聚物(Pluronic)的温敏行为作为在生理条件下获得良好形状保留和诱导细胞取向的手段。Pluronic/藻酸盐共混物已被用作 C2C12 鼠成肌细胞系加工的模型系统进行研究。有趣的是,C2C12 细胞模型表现出沿沉积方向的细胞取向,这可能代表了在 AM 过程中定制所得细胞组织形态的新途径。此外,所制造的构建体表现出高细胞活力,以及与传统 2D 培养相比,肌生成基因的表达显著提高。©2017 Wiley Periodicals,Inc. J Biomed Mater Res Part A:105A:2582-2588,2017。