Department of Clinical Sciences, Faculty of Veterinary Medicine, Urmia University, Nazloo Road, Urmia, Iran.
J Trauma Acute Care Surg. 2012 Feb;72(2):390-6. doi: 10.1097/ta.0b013e31821181dd.
Despite presence of various nerve coaptation materials and techniques, achievement of desired functional peripheral nerve regeneration is still inadequate. Effects of transplantation of uncultured and uncharacterized stromal vascular fraction (SVF) from omental adipose tissue on peripheral nerve regeneration were studied using a rat sciatic nerve transection model.
A 10-mm sciatic nerve defect was bridged using an inside-out vein graft (IOVG) filled with SVF. In control group, the vein was filled with phosphate-buffered saline alone. The regenerated nerve fibers were studied 4 weeks, 8 weeks, and 12 weeks after surgery. In sham-operated group, the sciatic nerve was only exposed and manipulated.
Functional study confirmed faster recovery of regenerated axons in IOVG/SVF than in IOVG group (p < 0.05). Gastrocnemius muscle mass in IOVG/SVF is found to be significantly more than that in IOVG group. Morphometric indices of the regenerated fibers showed that the number and diameter of the myelinated fibers were significantly higher in IOVG/SVF than in control group.In immunohistochemistry, location of reactions to S-100 in IOVG/SVF was clearly more positive than that in IOVG group.
SVF could be considered as a readily accessible source of stromal cells that improve functional recovery of sciatic nerve because of reduction in the interval from tissue collection until cell injection and simplicity of laboratory procedure, especially where atraumatic injury is dealt with.
尽管存在各种神经吻合材料和技术,但仍不能充分实现理想的周围神经再生功能。本研究使用大鼠坐骨神经横断模型,研究了未培养和未鉴定的大网膜脂肪组织基质血管部分(SVF)移植对周围神经再生的影响。
用 SVF 填充的外翻静脉移植物(IOVG)桥接 10mm 坐骨神经缺损。在对照组中,静脉仅用磷酸盐缓冲盐水填充。术后 4 周、8 周和 12 周研究再生神经纤维。在假手术组中,仅暴露和操作坐骨神经。
功能研究证实,IOVG/SVF 中再生轴突的恢复速度快于 IOVG 组(p < 0.05)。IOVG/SVF 中的比目鱼肌质量明显大于 IOVG 组。再生纤维的形态计量学指标表明,IOVG/SVF 中的有髓纤维数量和直径明显高于对照组。在免疫组化中,IOVG/SVF 中 S-100 反应的定位明显比 IOVG 组更阳性。
SVF 可被视为一种易于获得的基质细胞来源,可通过减少从组织采集到细胞注射的时间间隔以及实验室操作的简单性来改善坐骨神经的功能恢复,特别是在处理非创伤性损伤时。