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首页> 外文期刊>Acta biomaterialia >Tunable hydrogel composite with two-step processing in combination with innovative hardware upgrade for cell-based three-dimensional bioprinting.
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Tunable hydrogel composite with two-step processing in combination with innovative hardware upgrade for cell-based three-dimensional bioprinting.

机译:可调整的水凝胶复合材料,经过两步处理,结合创新的硬件升级,可进行基于细胞的三维生物打印。

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摘要

Three-dimensional (3-D) bioprinting is the layer-by-layer deposition of biological material with the aim of achieving stable 3-D constructs for application in tissue engineering. It is a powerful tool for the spatially directed placement of multiple materials and/or cells within the 3-D sample. Encapsulated cells are protected by the bioink during the printing process. Very few materials are available that fulfill requirements for bioprinting as well as provide adequate properties for cell encapsulation during and after the printing process. A hydrogel composite including alginate and gelatin precursors was tuned with different concentrations of hydroxyapatite (HA) and characterized in terms of rheology, swelling behavior and mechanical properties to assess the versatility of the system. Instantaneous as well as long-term structural integrity of the printed hydrogel was achieved with a two-step mechanism combining the thermosensitive properties of gelatin with chemical crosslinking of alginate. Novel syringe tip heaters were developed for improved temperature control of the bioink to avoid clogging. Human mesenchymal stem cells mixed into the hydrogel precursor survived the printing process and showed high cell viability of 85% living cells after 3 days of subsequent in vitro culture. HA enabled the visualization of the printed structures with micro-computed tomography. The inclusion of HA also favors the use of the bioink for bone tissue engineering applications. By adding factors other than HA, the composite could be used as a bioink for applications in drug delivery, microsphere deposition or soft tissue engineering.
机译:三维(3-D)生物打印是生物材料的逐层沉积,目的是实现用于组织工程的稳定3-D结构。它是用于在3-D样本中对多种材料和/或单元进行空间定向放置的强大工具。封装的细胞在打印过程中受到生物墨水的保护。满足生物打印要求以及在打印过程中和之后为细胞封装提供足够性能的材料很少。包含藻酸盐和明胶前体的水凝胶复合材料用不同浓度的羟磷灰石(HA)进行了调谐,并根据流变学,溶胀行为和机械性能进行了表征,以评估系统的多功能性。通过将明胶的热敏特性与藻酸盐的化学交联相结合的两步机制,可以实现印刷水凝胶的瞬时以及长期结构完整性。开发了新型的针尖加热器,以改善生物墨水的温度控制以避免堵塞。混合到水凝胶前体中的人间充质干细胞在印刷过程中幸存下来,并在随后的体外培养3天后显示出85%活细胞的高细胞活力。 HA使用微型计算机断层扫描可以可视化打印的结构。 HA的加入还有利于将生物墨水用于骨组织工程应用。通过添加除HA以外的因素,该复合材料可用作生物墨水,用于药物输送,微球沉积或软组织工程。

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