Liu Haichun, Yang Kaiyun, Xin Tao, Wu Wenliang, Chen Yunzhen
Department of Orthopaedic and Trauma Surgery, Shandong University Qilu Hospital, P. R. China.
Artif Cells Blood Substit Immobil Biotechnol. 2012 Oct;40(5):331-7. doi: 10.3109/10731199.2012.659350. Epub 2012 Mar 2.
Spinal cord injury (SCI) is one of the most serious disorders in clinics, and the high disability rate and functional deficits are common issues in patients. Transplantation of bone-marrow-derived mesenchymal stromal cells (BMSCs) into the injured spinal cord is emerging as a novel method in the therapeutics of SCI; however, its application is limited by the poor survival rate of the transplanted cells and low differentiation rate into neurons. Our laboratory recently reported that electrical stimulation (ES) dramatically improves the survival rate of transplanted BMSCs and increases spinal cord functions in animals with spinal cord injury. In this paper, we asked whether implanted electro-acupuncture (iEA) can advance the beneficial effects from the ES treatment in animals with spinal cord injury. We showed that BMSCs transplantation alone resulted in significant functional recovery in animals. Interestingly, iEA with BMSCs treatment induced a significantly higher functional improvement in locomotor functions and SSEP compared to the BMSCs treatment alone. Additionally, we used molecular biology techniques and showed that BMSCs transplantation with iEA treatment significantly increased the number of surviving BMSCs compared to the BMSCs alone group. In conclusion, our experiment showed that the approach of coupling iEA electric stimulation and BMSCs transplantation remarkably promotes functional improvements in animals with spinal cord injury and holds promising potential to treat spinal cord injury in humans.
脊髓损伤(SCI)是临床上最严重的疾病之一,高致残率和功能缺陷是患者常见的问题。将骨髓间充质基质细胞(BMSCs)移植到受损脊髓中正在成为脊髓损伤治疗的一种新方法;然而,其应用受到移植细胞存活率低和向神经元分化率低的限制。我们实验室最近报道,电刺激(ES)可显著提高移植BMSCs的存活率,并增强脊髓损伤动物的脊髓功能。在本文中,我们探讨了植入式电针(iEA)是否能增强脊髓损伤动物电刺激治疗的有益效果。我们发现,单独进行BMSCs移植可使动物的功能显著恢复。有趣的是,与单独进行BMSCs治疗相比,iEA联合BMSCs治疗在运动功能和体感诱发电位(SSEP)方面诱导了更高的功能改善。此外,我们运用分子生物学技术发现,与单独的BMSCs组相比,iEA联合BMSCs移植治疗显著增加了存活BMSCs的数量。总之,我们的实验表明,iEA电刺激与BMSCs移植相结合的方法能显著促进脊髓损伤动物的功能改善,在治疗人类脊髓损伤方面具有广阔的应用前景。