Hu Jie, Li Cai, Jin Shichang, Ye Yuchen, Fang Yuekun, Xu Panpan, Zhang Changchun
The First Affiliated Hospital of Bengbu Medical College, Bengbu, Anhui, China.
Key Laboratory of Tissue Transplantation in Anhui Province, Bengbu Medical College, Bengbu, Anhui, China.
Front Bioeng Biotechnol. 2022 Sep 27;10:950625. doi: 10.3389/fbioe.2022.950625. eCollection 2022.
Cell-based tissue engineering approaches have emerged as a realistic alternative for regenerative disc tissue repair. The multidirectional differentiation potential of bone marrow mesenchymal stem cells (BMSCs) to treat disc degeneration intervertebral disc degeneration has also become a viable option. We used 1% HAMA hydrogel as a carrier and co-encapsulated BMSCs and Salvianolic acid B (SalB) into the hydrogel to reduce the apoptosis of the transplanted cells. The protective effect of SalB on BMSCs was first verified using the CCK8 method, flow cytometry, and Western-Blotting, and the physical properties and biocompatibility of HAMA hydrogels were verified . The rat model was then established using the pinprick method and taken at 4 and 8 W, to examine the extent of disc degeneration by histology and immunohistochemistry, respectively. It was found that SalB could effectively reduce the apoptosis of BMSCs by activating the JAK2-STAT3 pathway. 1% HAMA hydrogels had larger pore size and better water retention, and the percentage of cell survival within the hydrogels was significantly higher after the addition of SalB to the HAMA hydrogels. In the setting, the HAMA + SalB + BMSCs group had a more pronounced delaying effect on the progression of disc degeneration compared to the other treatment groups. The method used in this study to encapsulate protective drugs with stem cells in a hydrogel for injection into the lesion has potential research value in the field of regenerative medicine.
基于细胞的组织工程方法已成为椎间盘组织再生修复的一种切实可行的替代方案。骨髓间充质干细胞(BMSCs)在治疗椎间盘退变方面的多向分化潜能也已成为一种可行的选择。我们使用1%的透明质酸甲酯(HAMA)水凝胶作为载体,将BMSCs和丹酚酸B(SalB)共包封于水凝胶中,以减少移植细胞的凋亡。首先采用CCK8法、流式细胞术和蛋白质免疫印迹法验证SalB对BMSCs的保护作用,并对HAMA水凝胶的物理性质和生物相容性进行验证。然后采用针刺法建立大鼠模型,并在4周和8周时取材,分别通过组织学和免疫组织化学检查椎间盘退变程度。结果发现,SalB可通过激活JAK2-STAT3信号通路有效减少BMSCs的凋亡。1%的HAMA水凝胶具有较大的孔径和较好的保水性,在HAMA水凝胶中添加SalB后,水凝胶内细胞的存活率显著提高。在此背景下,与其他治疗组相比,HAMA+SalB+BMSCs组对椎间盘退变进展的延缓作用更为明显。本研究中使用的将保护药物与干细胞共包封于水凝胶中注入病变部位的方法在再生医学领域具有潜在的研究价值。