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使用天然水凝胶支架保存 3D 生物打印结构中的间充质基质细胞的关键质量属性。

Preservation of critical quality attributes of mesenchymal stromal cells in 3D bioprinted structures by using natural hydrogel scaffolds.

机构信息

Banc de Sang i Teixits, Edifici Dr. Frederic Duran i Jordà, Barcelona, Spain.

Musculoskeletal Tissue Engineering Group, Vall d'Hebron Research Institute (VHIR), Universitat Autònoma de Barcelona, Barcelona, Spain.

出版信息

Biotechnol Bioeng. 2023 Sep;120(9):2717-2724. doi: 10.1002/bit.28381. Epub 2023 Mar 23.

Abstract

Three dimensional (3D) bioprinting is an emerging technology that enables complex spatial modeling of cell-based tissue engineering products, whose therapeutic potential in regenerative medicine is enormous. However, its success largely depends on the definition of a bioprintable zone, which is specific for each combination of cell-loaded hydrogels (or bioinks) and scaffolds, matching the mechanical and biological characteristics of the target tissue to be repaired. Therefore proper adjustment of the bioink formulation requires a compromise between: (i) the maintenance of cellular critical quality attributes (CQA) within a defined range of specifications to cell component, and (ii) the mechanical characteristics of the printed tissue to biofabricate. Herein, we investigated the advantages of using natural hydrogel-based bioinks to preserve the most relevant CQA in bone tissue regeneration applications, particularly focusing on cell viability and osteogenic potential of multipotent mesenchymal stromal cells (MSCs) displaying tripotency in vitro, and a phenotypic profile of 99.9% CD105 /CD45, 10.3% HLA-DR, 100.0% CD90, and 99.2% CD73 /CD31 expression. Remarkably, hyaluronic acid, fibrin, and gelatin allowed for optimal recovery of viable cells, while preserving MSC's proliferation capacity and osteogenic potency in vitro. This was achieved by providing a 3D structure with a compression module below 8.8 ± 0.5 kPa, given that higher values resulted in cell loss by mechanical stress. Beyond the biocompatibility of naturally occurring polymers, our results highlight the enhanced protection on CQA exerted by bioinks of natural origin (preferably HA, gelatin, and fibrin) on MSC, bone marrow during the 3D bioprinting process, reducing shear stress and offering structural support for proliferation and osteogenic differentiation.

摘要

三维(3D)生物打印是一种新兴技术,能够对基于细胞的组织工程产品进行复杂的空间建模,其在再生医学中的治疗潜力巨大。然而,其成功在很大程度上取决于生物可打印区域的定义,该区域针对每个细胞负载水凝胶(或生物墨水)和支架的组合是特定的,与要修复的目标组织的机械和生物学特性相匹配。因此,适当调整生物墨水配方需要在以下两者之间进行权衡:(i)在细胞成分的规定范围内维持细胞关键质量属性(CQA),以及(ii)打印组织的机械特性以生物制造。在这里,我们研究了使用天然水凝胶基生物墨水来保留骨组织再生应用中最相关的 CQA 的优势,特别是侧重于体外显示三潜能的多能间充质基质细胞(MSC)的细胞活力和成骨潜能,以及 99.9%CD105/CD45、10.3%HLA-DR、100.0%CD90 和 99.2%CD73/CD31 表达的表型特征。值得注意的是,透明质酸、纤维蛋白和明胶允许最佳回收存活细胞,同时保持 MSC 的体外增殖能力和成骨能力。这是通过提供压缩模块低于 8.8±0.5kPa 的 3D 结构来实现的,因为更高的值会导致细胞因机械应力而丢失。除了天然存在的聚合物的生物相容性外,我们的结果还强调了天然来源的生物墨水(最好是 HA、明胶和纤维蛋白)对 MSC 和骨髓中 CQA 的增强保护作用,减少了剪切应力并为增殖和成骨分化提供了结构支持。

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