Scalzone Annachiara, Cerqueni Giorgia, Bonifacio Maria A, Pistillo Michele, Cometa Stefania, Belmonte Monica Mattioli, Wang Xiao N, Dalgarno Kenny, Ferreira Ana M, De Giglio Elvira, Gentile Piergiorgio
School of Engineering, Newcastle University, Newcastle upon Tyne, United Kingdom.
Department of Clinical and Molecular Sciences (DISCLIMO), Università Politecnica delle Marche, Ancona, Italy.
Mater Today Bio. 2022 May 13;14:100287. doi: 10.1016/j.mtbio.2022.100287. eCollection 2022 Mar.
Hydrogel-based bioinks are the main formulations used for Articular Cartilage (AC) regeneration due to their similarity to chondral tissue in terms of morphological and mechanical properties. However, the main challenge is to design and formulate bioinks able to allow reproducible additive manufacturing and fulfil the biological needs for the required tissue. In our work, we investigated an innovative Manuka honey (MH)-loaded photocurable gellan gum methacrylated (GGMA) bioink, encapsulating mesenchymal stem cells differentiated in chondrocytes (MSCs-C), to generate 3D bioprinted construct for AC studies. We demonstrated the beneficial effect of MH incorporation on the bioink printability, leading to the obtainment of a more homogenous filament extrusion and therefore a better printing resolution. Also, GGMA-MH formulation showed higher viscoelastic properties, presenting complex modulus G∗ values of ∼1042 Pa, compared to ∼730 Pa of GGMA. Finally, MH-enriched bioink induced a higher expression of chondrogenic markers (14-fold), (3-fold) and (4-fold) and AC ECM main element production (proteoglycans and collagen).
基于水凝胶的生物墨水是用于关节软骨(AC)再生的主要配方,因为它们在形态和力学性能方面与软骨组织相似。然而,主要挑战在于设计和配制能够实现可重复增材制造并满足所需组织生物学需求的生物墨水。在我们的工作中,我们研究了一种创新的负载麦卢卡蜂蜜(MH)的光固化甲基丙烯酸酯化结冷胶(GGMA)生物墨水,其包裹了分化为软骨细胞的间充质干细胞(MSCs-C),以生成用于AC研究的3D生物打印构建体。我们证明了加入MH对生物墨水可打印性的有益影响,从而获得了更均匀的细丝挤出,进而提高了打印分辨率。此外,GGMA-MH配方显示出更高的粘弹性,其复数模量G∗值约为1042 Pa,而GGMA的约为730 Pa。最后,富含MH的生物墨水诱导了软骨生成标志物(14倍)、(3倍)和(4倍)以及AC细胞外基质主要成分(蛋白聚糖和胶原蛋白)的更高表达。