Department of Otolaryngology-Head and Neck Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Laryngoscope. 2010 Mar;120(3):576-81. doi: 10.1002/lary.20776.
OBJECTIVES/HYPOTHESIS: To investigate the potential of neurally induced bone marrow stromal cells (BMSCs) as transplants for replacement of spiral ganglion neurons.
BMSCs were harvested from the femurs and tibias of adult guinea pigs. BMSCs were cultured with neural induction media and formed spheres. The capacity of BMSC-derived spheres for neural differentiation was examined by immunocytochemistry in vitro. BMSC-derived spheres were injected into the modiolus of the intact cochleae or those locally damaged by ouabain, followed by histological and functional analyses.
In vitro analysis revealed a high capacity of BMSC-derived spheres for neural differentiation. After transplantation into the cochlear modiolus, the survival and neural differentiation of BMSC-derived spheres was observed in both the intact and damaged cochleae. In intact cochleae, transplants settled in various portions of the cochlea, including the cochlear modiolus, whereas in damaged cochleae, transplants were predominantly observed in the internal auditory meatus. Transplantation of BMSC-derived spheres resulted in no functional recovery of the cochlea or protection of host spiral ganglion neurons.
The present findings indicate that BMSC-derived spheres can be a source for replacement of spiral ganglion neurons, although further manipulations are required for functional recovery.
目的/假设:研究神经诱导骨髓基质细胞(BMSCs)作为螺旋神经节神经元替代物移植的潜力。
从成年豚鼠的股骨和胫骨中采集 BMSCs。BMSCs 用神经诱导培养基培养并形成球体。通过体外免疫细胞化学检测 BMSC 来源球体的神经分化能力。BMSC 来源的球体被注射到完整耳蜗的蜗轴或局部用哇巴因损伤的耳蜗中,然后进行组织学和功能分析。
体外分析显示 BMSC 来源球体具有很高的神经分化能力。移植到耳蜗蜗轴后,在完整和受损耳蜗中均观察到 BMSC 来源球体的存活和神经分化。在完整耳蜗中,移植体定位于耳蜗蜗轴的各个部位,而在受损耳蜗中,移植体主要观察到内听道。BMSC 来源球体的移植并未导致耳蜗功能恢复或宿主螺旋神经节神经元的保护。
本研究结果表明,BMSC 来源的球体可以作为螺旋神经节神经元替代物的来源,尽管需要进一步的操作才能恢复功能。