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一种用于组织工程应用的源自鲟鱼软骨细胞外基质的生物活性生物墨水。

A sturgeon cartilage extracellular matrix-derived bioactive bioink for tissue engineering applications.

作者信息

Meng Xiaolin, Zhou Zheng, Chen Xin, Ren Feng, Zhu Wenxiang, Zhu Shuai, Liu Hairong

机构信息

College of Materials Science and Engineering, Hunan University, Changsha 410082, PR China.

College of Biology, Hunan University, Changsha 410082, PR China.

出版信息

Int J Bioprint. 2023 Jun 6;9(5):768. doi: 10.18063/ijb.768. eCollection 2023.

Abstract

Three-dimensional (3D) bioprinting provides a promising strategy for tissue and organ engineering, and extracellular matrix (ECM)-derived bioinks greatly facilitate its applications in these areas. Decellularized sturgeon cartilage ECM (dSC-ECM)-derived bioinks for cartilage tissue engineering were fabricated with methacrylate-modified dSC-ECM (dSC-ECMMA) and sericin methacrylate (SerMA), which optimizedthe mechanical properties of their solidified hydrogels.dSC-ECM induces chondrocytes to form cell clusters and subsequently reduces their proliferation, but the proliferation of encapsulated chondrocytes was normal in solidified dSC-ECM-5 bioink samples, which contain 5 mg/mL dSC-ECMMA. Hence, this bioink was selected for further investigation. Lyophilized dSC-ECM-5 hydrogels showed connected pore microstructure, which is suitable for cell migration and nutrients transportation. ThisdSC-ECM-5 bioink exhibited high fidelity and good printability by testing via a 3D bioprinting system, and the chondrocytes loaded in printed hydrogel products were viable and able to grow, following incubation, in the cell culture medium. Solidified dSC-ECM-5 and SerMA bioinks loaded with chondrocytes were subcutaneously implanted into nude mice for 4 weeks to test the suitability of the bioink for cartilage tissue engineering. Compared to the SerMA bioink, the dSC-ECM-5 bioink significantly enhanced cartilage tissue regeneration and maturation , suggesting the potential of this bioink to be applied in cartilage tissue engineering in the future.

摘要

三维(3D)生物打印为组织和器官工程提供了一种很有前景的策略,而细胞外基质(ECM)衍生的生物墨水极大地促进了其在这些领域的应用。采用甲基丙烯酸酯改性的去细胞鲟鱼软骨ECM(dSC-ECMMA)和甲基丙烯酸丝胶蛋白(SerMA)制备了用于软骨组织工程的去细胞鲟鱼软骨ECM(dSC-ECM)衍生生物墨水,优化了其固化水凝胶的力学性能。dSC-ECM诱导软骨细胞形成细胞团簇并随后降低其增殖,但在含有5mg/mL dSC-ECMMA的固化dSC-ECM-5生物墨水样品中,封装的软骨细胞增殖正常。因此,选择这种生物墨水进行进一步研究。冻干的dSC-ECM-5水凝胶呈现出连通的孔隙微观结构,适合细胞迁移和营养物质运输。通过3D生物打印系统测试表明,这种dSC-ECM-5生物墨水具有高保真度和良好的可打印性,并且加载在打印水凝胶产品中的软骨细胞在细胞培养基中孵育后具有活力且能够生长。将加载有软骨细胞的固化dSC-ECM-5和SerMA生物墨水皮下植入裸鼠体内4周,以测试该生物墨水对软骨组织工程的适用性。与SerMA生物墨水相比,dSC-ECM-5生物墨水显著增强了软骨组织的再生和成熟,表明这种生物墨水在未来软骨组织工程中的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f6d/10339411/340e7bff60a1/IJB-9-5-768-g001.jpg

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