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Bioprinting Cellularized Constructs Using a Tissue-specific Hydrogel Bioink

机译:使用组织特异性水凝胶Bioink生物打印细胞化的构造。

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摘要

Bioprinting has emerged as a versatile biofabrication approach for creating tissue engineered organ constructs. These constructs have potential use as organ replacements for implantation in patients, and also, when created on a smaller size scale as model "organoids" that can be used in in vitro systems for drug and toxicology screening.Despite development of a wide variety of bioprinting devices, application of bioprinting technology can be limited by the availability of materials that both expedite bioprinting procedures and support cell viability and function by providing tissue-specific cues. Here we describe a versatile hyaluronic acid (HA) and gelatin-based hydrogel system comprised of a multi-crosslinker, 2-stage crosslinking protocol, which can provide tissue specific biochemical signals and mimic the mechanical properties of in vivo tissues. Biochemical factors are provided by incorporating tissue-derived extracellular matrix materials, which include potent growth factors. Tissue mechanical properties are controlled combinations of PEG-based crosslinkers with varying molecular weights, geometries (linear or multi-arm), and functional groups to yield extrudable bioinks and final construct shear stiffness values over a wide range (100 Pa to 20 kPa). Using these parameters, hydrogel bioinks were used to bioprint primary liver spheroids in a liver-specific bioink to create in vitro liver constructs with high cell viability and measurable functional albumin and urea output. This methodology provides a general framework that can be adapted for future customization of hydrogels for biofabrication of a wide range of tissue construct types.
机译:生物打印已经成为一种通用的生物制造方法,用于创建组织工程化的器官构造。这些构建体具有潜在的用途,可以替代患者的器官,也可以以较小的规模创建为模型“类器官”,可在体外系统中用于药物和毒理学筛查。尽管开发了多种生物印记设备,生物打印技术的应用可能会受到材料的限制,这些材料既可加快生物打印程序,又可通过提供组织特异性提示来支持细胞生存力和功能。在这里,我们描述了一种由多交联剂,两阶段交联规程组成的通用透明质酸(HA)和明胶基水凝胶系统,它可以提供组织特异性的生化信号并模拟体内组织的机械性能。通过掺入组织来源的细胞外基质材料(包括有效的生长因子)来提供生化因子。组织力学性能是具有可变分子量,几何形状(线性或多臂)和官能团的PEG基交联剂的受控组合,以产生可挤出的生物油墨,并在很宽的范围(100 Pa至20 kPa)内产生最终的构造剪切刚度值。使用这些参数,水凝胶生物墨水被用于生物打印肝脏特异性生物墨水中的主要肝脏球体,以创建具有高细胞活力和可测量功能性白蛋白和尿素输出的体外肝脏构建体。该方法学提供了一个通用框架,该框架可适用于将来水凝胶的定制化,以用于各种组织构造类型的生物制造。

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