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将锌/硅双离子与3D打印的甲基丙烯酰化明胶水凝胶相结合可促进毛囊再生。

Integrating zinc/silicon dual ions with 3D-printed GelMA hydrogel promotes hair follicle regeneration.

作者信息

Zhang Fanliang, Zhang Zhaowenbin, Duan Xianlan, Song Wei, Li Zhao, Yao Bin, Kong Yi, Huang Xing, Fu Xiaobing, Chang Jiang, Huang Sha

机构信息

Research Center for Tissue Repair and Regeneration Affiliated to the Medical Innovation Research Department, PLA General Hospital, Beijing, 100853, China.

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang 325000, China.

出版信息

Int J Bioprint. 2023 Mar 8;9(3):703. doi: 10.18063/ijb.703. eCollection 2023.

Abstract

The regeneration of hair follicles lost from injury or disease represents a major challenge in cutaneous regenerative medicine. In this study, we investigated the synergetic effects between zinc and silicon ions on dermal cells and screened the optimal concentration of ions for medical applications. We integrated zinc/silicon dual ions into gelatin methacryloyl (GelMA) to bioprint a scaffold and determined that its mechanical properties are suitable for biological treatment. Then, the scaffold was employed to treat mouse excisional model in order to promote hair follicle regeneration. Our findings showed that GelMA-zinc/silicon-printed hydrogel can significantly activate hair follicle stem cells and enhance neovascularization. The beneficial effects of the scaffold were further confirmed by the growth of hairs in the center of wounds and the improvement in perfusion recovery. Taken together, the present study is the first to combine GelMA with zinc/silicon dual ions to bioprint for treating excisional wound, and this approach may regulate hair follicle regeneration not only directly by impacting stem cells but also indirectly through promoting angiogenesis.

摘要

因损伤或疾病而丧失的毛囊再生是皮肤再生医学中的一项重大挑战。在本研究中,我们研究了锌离子和硅离子对真皮细胞的协同作用,并筛选出了适用于医学应用的离子最佳浓度。我们将锌/硅双离子整合到甲基丙烯酰化明胶(GelMA)中以生物打印出一种支架,并确定其机械性能适合生物治疗。然后,使用该支架治疗小鼠切除模型以促进毛囊再生。我们的研究结果表明,GelMA-锌/硅打印水凝胶可显著激活毛囊干细胞并增强新血管形成。伤口中央毛发的生长以及灌注恢复的改善进一步证实了该支架的有益效果。综上所述,本研究首次将GelMA与锌/硅双离子结合用于生物打印以治疗切除伤口,并且这种方法不仅可以通过影响干细胞直接调节毛囊再生,还可以通过促进血管生成间接调节毛囊再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d582/10236330/14f6215aa43c/IJB-9-3-703-g001.jpg

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