National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, China.
J Mater Sci Mater Med. 2017 Aug 22;28(10):150. doi: 10.1007/s10856-017-5955-y.
As the seed cells, the immune properties of the mesenchymal stem cells are important for the tissue engineering restoring effect. But the in vivo research model is lacking. In the study, based on a dialyzer pocket model, changes in immunological properties and the differentiation of seeded mesenchymal stem cells (MSCs) in collagen hydrogel were studied in muscle and articular cavity implantation, respectively. The results showed that collagen hydrogel can induce MSCs to form cartilage tissue, followed by alteration of immunological properties. In muscle implantation, relatively low expression of major histocompatibility complex (MHC) molecules and low level of one-way mixed lymphocyte reactions (MLR) on the seeded MSCs were observed, but only a little cartilage tissue formed. In articular cavity implantation, more cartilage tissue formed, but higher MHC expressions and MLR level were found. Results indicated that the immunomodulation and the cartilage formation of the seeded MSCs will be impacted by the scaffold and the environment of the in vivo implanted site. The dialyzer pocket model can be used for the in vivo research for the MSC-based strategy of the tissue engineering, especially for the optimization of the immunomodulation.
作为种子细胞,间充质干细胞的免疫特性对于组织工程修复效果很重要。但体内研究模型缺乏。本研究基于透析器袋模型,分别在肌肉和关节腔植入中研究了胶原水凝胶中种植的间充质干细胞(MSCs)的免疫特性变化和分化。结果表明,胶原水凝胶可诱导 MSCs 形成软骨组织,随后改变免疫特性。在肌肉植入中,观察到种植的 MSCs 主要组织相容性复合体(MHC)分子表达水平较低,单向混合淋巴细胞反应(MLR)水平较低,但仅形成少量软骨组织。在关节腔植入中,形成了更多的软骨组织,但发现 MHC 表达和 MLR 水平更高。结果表明,支架和体内植入部位的环境会影响种植的 MSCs 的免疫调节和软骨形成。透析器袋模型可用于基于 MSC 的组织工程的体内研究,特别是用于免疫调节的优化。