Key Laboratory of Biorheological Science and Technology (Chongqing University), Ministry of Education, Bioengineering College, Chongqing University, Chongqing, China.
Mechanobiology and Regenerative Medicine Laboratory, Bioengineering College, Chongqing University, Chongqing, China.
J Tissue Eng Regen Med. 2019 Apr;13(4):625-636. doi: 10.1002/term.2823. Epub 2019 Mar 19.
The treatment of lengthy peripheral nerve defect is challenging in the field of nerve regeneration. Our previous studies have shown that low-intensity pulsed ultrasound (LIPUS) could promote the proliferation, cell viability, and neural differentiation of induced pluripotent stem cells-derived neural crest stem cells (iPSCs-NCSCs) and improve the regeneration of damaged peripheral nerve. In this study, the mechanical signal transduction pathway of LIPUS promoting iPSCs-NCSCs proliferation and differentiation was further explored, and the effects of LIPUS combined with iPSCs-NCSCs, perfluorotributylamine (PFTBA), and growth differentiation factor 5 (GDF5) on the repair of peripheral nerve injury were evaluated. Results showed LIPUS may regulate the proliferation and differentiation of iPSCs-NCSCs through FAK-ERK1/2 signal pathway. PFTBA could supply sufficient oxygen to promote the viability of iPSCs-NCSCs under 5% hypoxia culture condition and provide a favourable microenvironment for nerve regeneration. The addition of GDF5 could promote the neural differentiation of iPSCs-NCSCs in vitro. LIPUS treatment of allogeneic decellularized nerve conduit containing iPSCs-NCSCs, PFTBA, and GDF5 has very good effect on the repair of sciatic nerve injury. Taken together, these results provide functional evidence that LIPUS might be a useful tool to explore alternative approaches in the field of nerve regeneration.
在神经再生领域,治疗长段周围神经缺损是一项具有挑战性的任务。我们之前的研究表明,低强度脉冲超声(LIPUS)可以促进诱导多能干细胞源性神经嵴干细胞(iPSCs-NCSCs)的增殖、细胞活力和神经分化,并改善受损周围神经的再生。在这项研究中,进一步探讨了 LIPUS 促进 iPSCs-NCSCs 增殖和分化的力学信号转导途径,并评估了 LIPUS 联合 iPSCs-NCSCs、全氟三丁胺(PFTBA)和生长分化因子 5(GDF5)对周围神经损伤修复的影响。结果表明,LIPUS 可能通过 FAK-ERK1/2 信号通路调节 iPSCs-NCSCs 的增殖和分化。PFTBA 可以在 5%低氧培养条件下为 iPSCs-NCSCs 提供足够的氧气,以提高其活力,并为神经再生提供有利的微环境。添加 GDF5 可以促进 iPSCs-NCSCs 的体外神经分化。LIPUS 处理含有 iPSCs-NCSCs、PFTBA 和 GDF5 的同种异体去细胞神经导管对坐骨神经损伤的修复具有非常好的效果。综上所述,这些结果为 LIPUS 可能成为神经再生领域探索替代方法的有用工具提供了功能证据。