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Effects of transplantation of microencapsulated rabbit sciatic nerve on nuclear factor-kappa B expression after spinal cord injury in rats
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作者 Xiaolian Wang Jianmin Ma Hui Chen Deming Liu 《Neural Regeneration Research》 SCIE CAS CSCD 2009年第3期213-217,共5页
BACKGROUND: It has been reported that nuclear factor-kappa B (NF- κB), activated after spinal cord injury in rats, plays a key role in inflammatory responses in the central nervous system. OBJECTIVE: To investiga... BACKGROUND: It has been reported that nuclear factor-kappa B (NF- κB), activated after spinal cord injury in rats, plays a key role in inflammatory responses in the central nervous system. OBJECTIVE: To investigate the effects of transplantation of microencapsulated rabbit sciatic nerve on NF- κB expression and motor function after spinal cord injury in rats, and to compare the results with the transplantation of rabbit sciatic nerve alone. DESIGN, TIME AND SETTING: This completely randomized, controlled study was performed at the Department of Neurobiology, Medical College of Nanchang University between December 2007 and July 2008. MATERIALS: A rabbit anti-NF- κB P65 monoclonal antibody was made by the Santa Cruz Company, USA and a streptavidin peroxidase immunohistochemical kit was provided by the Sequoia Company, China. METHODS: Eight rabbits were used to prepare a sciatic nerve cell suspension that was divided into two parts: one stored for transplantation, and the other mixed with a 1.5% sodium alginate solution. One hundred and twenty adult Sprague Dawley rats weighing 220-250 g were randomly divided into four groups: the microencapsulated cell group (n = 36), the non-encapsulated cell group (n = 36), the saline group (n = 36) and the sham operation group (n = 12). The first three groups underwent a right hemisection injury of the spinal cord at the T10 level, into which was transplanted a gelatin sponge soaked with 10 μL of a microencapsulated nerve tissue/cell suspension (microencapsulated cell group), a tissue/cell suspension (non-encapsulated cell group) or physiological saline (saline group). In the sham operation group the vertebrae were exposed, but the spinal cord was not injured, and no implantation was given. MAIN OUTCOME MEASURES: Pathological changes were detected using hematoxylin-eosin staining; NF- κB expression was quantified using immunohistochemical staining; motor function was assessed using the Basso, Beattie and Bresnahan (BBB) scale. RESULTS: Spinal cord injuries, such as neuronal death and inflammatory cell infiltration, were found in the microencapsulated cell group, the non-encapsulated cell group and the saline group. However, the damage in the microencapsulated cell group was milder than in the non-encapsulated cell or saline groups. NF- κB expression in the microencapsulated cell group, the non-encapsulated cell group and the saline group was increased after spinal cord injury; it reached a peak after 24 hours, gradually decreased after 3 days, and was close to normal levels after 7 days. NF- κB expression in the microencapsulated cell group was significantly lower than in the saline group and the non-encapsulated cell group (P 〈 0.05). With time, the motor function of the animals in each group improved to a certain extent, but did not reach normal levels. There were no significant differences in BBB scores between the different groups on post-operative day 3; however, the BBB scores for the microencapsulated cell group and the non-encapsulated cell group were significantly higher than the saline group on post-operative day 7 (P 〈 0.05). In addition, the motor function recovered better in the microencapsulated cell group than in the non-encapsulated cell group (P 〈 0.05). CONCLUSION: The transplantation of microencapsulated rabbit sciatic nerve can inhibit NF- κB expression and inflammatory reactions and promote recovery of motor function after spinal cord injury in rats. The effects of microencapsulated cell transplantation are superior to those of transplantation of cells alone. 展开更多
关键词 microcaosule: soinal cord iniurv transolantation: nuclear factor-kappa B
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壳聚糖对大鼠脊髓损伤后小胶质细胞/巨噬细胞的影响 被引量:3
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作者 张雪娇 杨朝阳 李晓光 《中国康复理论与实践》 CSCD 2009年第4期321-323,共3页
目的观察应用壳聚糖治疗大鼠胸髓完全横断损伤后,损伤区及其周围小胶质细胞/巨噬细胞的变化情况。方法35只成年雌性Wistar大鼠随机分成假手术组(n=5)、单纯损伤组(n=15)、壳聚糖治疗组(n=15)。分别于术后1d、3d、7d、2周和4周通过免疫... 目的观察应用壳聚糖治疗大鼠胸髓完全横断损伤后,损伤区及其周围小胶质细胞/巨噬细胞的变化情况。方法35只成年雌性Wistar大鼠随机分成假手术组(n=5)、单纯损伤组(n=15)、壳聚糖治疗组(n=15)。分别于术后1d、3d、7d、2周和4周通过免疫组织化学方法,检测小胶质细胞/巨噬细胞的变化情况。结果单纯损伤后小胶质细胞/巨噬细胞在1d时即活化增殖,3d时达高峰,之后迅速减少;应用壳聚糖治疗后,7d达高峰,2~4周时仍有OX42阳性小胶质细胞/巨噬细胞存在。结论壳聚糖可更长时间地募集小胶质细胞/巨噬细胞到损伤区及其周围脊髓组织。 展开更多
关键词 脊髓损伤 壳聚糖 小胶质细胞/巨噬细胞
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盆底肌电刺激治疗脊髓损伤后神经源性膀胱的疗效观察 被引量:65
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作者 毕霞 王雪强 +1 位作者 孙丹 戴敏辉 《中国康复医学杂志》 CAS CSCD 北大核心 2011年第3期206-209,共4页
目的:探讨盆底肌电刺激(PES)对脊髓损伤(SCI)后膀胱功能障碍的疗效。方法:60例完全性SCI患者随机分为常规治疗组和PES组,每组30例。常规治疗组采用间歇导尿、激发排尿技术或Crede手压法、Valsalva屏气法;PES组采用PES联合常规康复治疗... 目的:探讨盆底肌电刺激(PES)对脊髓损伤(SCI)后膀胱功能障碍的疗效。方法:60例完全性SCI患者随机分为常规治疗组和PES组,每组30例。常规治疗组采用间歇导尿、激发排尿技术或Crede手压法、Valsalva屏气法;PES组采用PES联合常规康复治疗。治疗前、治疗后分别评定患者日排尿次数、平均膀胱容量、最大排尿量、残余尿量、生存质量评分和国际下尿路症状(LUTS)评分等。结果:2个月的疗程结束后,两组患者日排尿次数减少、平均膀胱容量增加、最大排尿量、残余尿量减少,排尿症状有显著改善(P<0.05),生存质量评分和国际LUTS症状评分差异有显著性意义(P<0.05),PES组明显优于常规治疗组(P<0.05)。结论:PES联合常规膀胱功能训练对治疗SCI患者神经源性膀胱的疗效优于常规的膀胱功能训练。 展开更多
关键词 盆底肌电刺激 脊髓损伤 神经源性膀胱
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