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A General Strategy for Extrusion Bioprinting of Bio-Macromolecular Bioinks through Alginate-Templated Dual-Stage Crosslinking

机译:通过藻酸盐模板双阶段交联的生物大分子生物墨水挤压生物打印的一般策略。

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摘要

The recently developed 3D bioprinting technology has greatly improved the ability to generate biomimetic tissues that are structurally and functionally relevant to their human counterparts. The selection of proper biomaterials as the bioinks is a key step toward successful bioprinting. For example, viscosity of a bioink is an important rheological parameter to determine the flexibility in deposition of free-standing structures and the maintenance of architectural integrity following bioprinting. This requirement, however, has greatly limited the selection of bioinks, especially for those naturally derived due to their commonly low mechanical properties. Here the generalization of a mechanism for extrusion bioprinting of bio-macromolecular components, mainly focusing on collagen and its derivatives including gelatin and gelatin methacryloyl, is reported. Specifically, a templating strategy is adopted using a composite bioink containing both the desired bio-macromolecular component and a polysaccharide alginate. The physically crosslinkable alginate component serves as the temporal structural support to stabilize the shape of the construct during bioprinting; upon subsequent chemical or physical crosslinking of the bio-macromolecular component, alginate can be selectively removed to leave only the desired biomacromolecule. It is anticipated that this strategy is general, and can be readily expanded for use of a wide variety of other bio-macromolecular bioinks.
机译:最近开发的3D生物打印技术已大大提高了生成仿生组织的能力,这些仿生组织在结构和功能上与人类的对等组织有关。选择合适的生物材料作为生物墨水是成功进行生物印刷的关键一步。例如,生物墨水的粘度是确定流变参数的重要流变参数,该自由度决定了独立结构沉积的灵活性以及生物印刷后建筑完整性的维持。然而,该要求极大地限制了生物油墨的选择,特别是对于天然衍生的生物油墨,由于其通常较低的机械性能。此处报道了生物大分子组分的挤压生物印刷机制的一般化,主要集中于胶原蛋白及其衍生物,包括明胶和明胶甲基丙烯酰基。具体而言,采用包含所需生物大分子组分和藻酸多糖的复合生物墨水采用模板策略。所述可物理交联的藻酸盐组分用作临时结构支撑,以在生物印刷过程中稳定构建体的形状。在随后的生物大分子组分的化学或物理交联时,藻酸盐可被选择性地除去,仅留下所需的生物大分子。预期该策略是通用的,并且可以容易地扩展以用于多种其他生物大分子生物油墨。

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