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A Hydrogel Model Incorporating 3D-Plotted Hydroxyapatite for Osteochondral Tissue Engineering

机译:结合3D绘制的羟基磷灰石用于骨软骨组织工程的水凝胶模型

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摘要

The concept of biphasic or multi-layered compound scaffolds has been explored within numerous studies in the context of cartilage and osteochondral regeneration. To date, no system has been identified that stands out in terms of superior chondrogenesis, osteogenesis or the formation of a zone of calcified cartilage (ZCC). Herein we present a 3D plotted scaffold, comprising an alginate and hydroxyapatite paste, cast within a photocrosslinkable hydrogel made of gelatin methacrylamide (GelMA), or GelMA with hyaluronic acid methacrylate (HAMA). We hypothesized that this combination of 3D plotting and hydrogel crosslinking would form a high fidelity, cell supporting structure that would allow localization of hydroxyapatite to the deepest regions of the structure whilst taking advantage of hydrogel photocrosslinking. We assessed this preliminary design in terms of chondrogenesis in culture with human articular chondrocytes, and verified whether the inclusion of hydroxyapatite in the form presented had any influence on the formation of the ZCC. Whilst the inclusion of HAMA resulted in a better chondrogenic outcome, the effect of HAP was limited. We overall demonstrated that formation of such compound structures is possible, providing a foundation for future work. The development of cohesive biphasic systems is highly relevant for current and future cartilage tissue engineering.
机译:在软骨和骨软骨再生的背景下的许多研究中已经探索了双相或多层复合支架的概念。迄今为止,尚未发现在软骨形成,成骨或钙化软骨(ZCC)区域形成方面突出的系统。本文中,我们提出了一种3D绘图支架,包括藻酸盐和羟基磷灰石糊剂,浇铸在由明胶甲基丙烯酰胺(GelMA)或GelMA与透明质酸甲基丙烯酸酯(HAMA)制成的可光交联水凝胶中。我们假设3D绘图和水凝胶交联的这种结合将形成高保真度的细胞支持结构,该结构将允许羟基磷灰石定位到结构的最深区域,同时利用水凝胶光交联。我们根据人类关节软骨细胞培养物中的软骨形成情况评估了该初步设计,并验证了所呈示形式的羟基磷灰石是否对ZCC的形成有影响。虽然包含HAMA可以产生更好的成软骨效果,但是HAP的作用是有限的。我们总体证明了这种复合结构的形成是可能的,为将来的工作奠定了基础。粘性双相系统的开发与当前和未来的软骨组织工程高度相关。

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