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Hybrid Tissue Engineering Scaffolds by Combination of Three-Dimensional Printing and Cell Photoencapsulation

机译:三维打印与细胞光囊化相结合的混合组织工程支架。

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摘要

Three-dimensional (3D) printing offers versatile possibilities for adapting the structural parameters of tissue engineering scaffolds. However, it is also essential to develop procedures allowing efficient cell seeding independent of scaffold geometry and pore size. The aim of this study was to establish a method for seeding the scaffolds using photopolymerizable cell-laden hydrogels. The latter facilitates convenient preparation, and handling of cell suspension, while distributing the hydrogel precursor throughout the pores, before it is cross-linked with light. In addition, encapsulation of living cells within hydrogels can produce constructs with high initial cell loading and intimate cell-matrix contact, similar to that of the natural extra-cellular matrix (ECM). Three dimensional scaffolds were produced from poly(lactic) acid (PLA) by means of fused deposition modeling. A solution of methacrylamide-modified gelatin (Gel-MOD) in cell culture medium containing photoinitiator Li-TPO-L was used as a hydrogel precursor. Being an enzymatically degradable derivative of natural collagen, gelatin-based matrices are biomimetic and potentially support the process of cell-induced remodeling. Preosteoblast cells MC3T3-E1 at a density of 10 × 106 cells per 1 mL were used for testing the seeding procedure and cell proliferation studies. Obtained results indicate that produced constructs support cell survival and proliferation over extended duration of our experiment. The established two-step approach for scaffold seeding with the cells is simple, rapid, and is shown to be highly reproducible. Furthermore, it enables precise control of the initial cell density, while yielding their uniform distribution throughout the scaffold. Such hybrid tissue engineering constructs merge the advantages of rigid 3D printed constructs with the soft hydrogel matrix, potentially mimicking the process of ECM remodeling.
机译:三维(3D)打印为适应组织工程支架的结构参数提供了多种可能性。然而,开发能够独立于支架几何形状和孔径而进行有效细胞接种的程序也至关重要。这项研究的目的是建立一种使用可光聚合的载有细胞的水凝胶为支架植入种子的方法。后者有助于方便的制备和细胞悬浮液的处理,同时在将水凝胶前体与光交联之前将其分布在整个孔中。另外,将活细胞包裹在水凝胶中可以产生具有高初始细胞负荷和紧密的细胞-基质接触的构建体,类似于天然细胞外基质(ECM)。通过熔融沉积建模,由聚乳酸(PLA)生产了三维支架。甲基丙烯酰胺改性的明胶(Gel-MOD)在含有光引发剂Li-TPO-L的细胞培养基中的溶液用作水凝胶前体。作为天然胶原蛋白的可酶降解衍生物,基于明胶的基质具有仿生性,并可能支持细胞诱导的重塑过程。用成骨细胞MC3T3-E1以每1µmL 10×10 6 个细胞的密度测试接种过程和细胞增殖研究。所得结果表明,所产生的构建体在我们实验的延长时间内支持细胞存活和增殖。已建立的两步法用于支架植入细胞的方法简单,快速,并且显示出高度可重复性。此外,它能够精确控制初始细胞密度,同时产生它们在整个支架中的均匀分布。这样的混合组织工程构建体将刚性3D打印构建体的优势与软水凝胶基质融合在一起,有可能模仿ECM重塑的过程。

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