• Title/Summary/Keyword: Contusive Spinal Cord Injury

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The Effect of the Swimming Exercise on Motor Functional Recovery after Experimental Contusive Spinal Cord Injury in the Rats (척수손상 흰쥐에서 수영훈련이 운동기능 회복에 미치는 영향)

  • Kim, Young-Eok;Kim, Kyung-Yoon
    • The Journal of Korean Physical Therapy
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    • v.19 no.3
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    • pp.1-9
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    • 2007
  • Purpose: Previous studies have suggested that BDNF has a role in plasticity and survival following spinal cord injury and treadmill exercise increases BDNF levels in the normal brain and spinal cord. We attempted to determine whether swimming exercise improve motor function following experimental contusive spinal cord injury and whether motor outcome is associated with BDNF expression. Methods: Thirty six Sprague-Dawley rats (weight, 250 to 300 g) were divided into control (n=18) and experimental swimming group (n=18). Spinal cord injury was produced using NYU-spinal impactor at the eleven thoracic levels in both groups. Swimming exercise started $7^{th}$ day from SCI operation, lasted 5 min per day, 5 days a week for 4 weeks and then exercise times a day were increased in one number to each week. Motor functional recovery was determined by the Basso-Beattie-Bresnahan (BBB) locomotor rating scale, modified inclined board plane test, histological findings, H&E and BDNF expression observed at $1^{th}$, $3^{rd}$, $7^{th}$, $14^{th}$, $21^{st}$ and $28^{th}$day after injury. Results: 1. The BBB scores were higher in experimental group than control group at $14^{th}$, $21^{st}$ day (left hind limb) and at $21^{th}$ day (right hind limb) (p<0.05) after injury. 2. The inclined board plane test were significantly greater in experimental group than control group at $7^{th}$ day (p<0.05), $14^{th}$ and $28^{th}$ day (p<0.01) after injury. 3. The BDNF expression was severe revealed in experimental group than control group at $7^{th}$, $14^{th}$ and $28^{th}$ day after injury. Conclusion: This study suggests that swimming applied from the early phase after spinal cord injury be beneficial effects in motor functional recovery.

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Olig2-expressing Mesenchymal Stem Cells Enhance Functional Recovery after Contusive Spinal Cord Injury

  • Park, Hwan-Woo;Oh, Soonyi;Lee, Kyung Hee;Lee, Bae Hwan;Chang, Mi-Sook
    • International Journal of Stem Cells
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    • v.11 no.2
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    • pp.177-186
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    • 2018
  • Background and Objectives: Glial scarring and inflammation after spinal cord injury (SCI) interfere with neural regeneration and functional recovery due to the inhibitory microenvironment of the injured spinal cord. Stem cell transplantation can improve functional recovery in experimental models of SCI, but many obstacles to clinical application remain due to concerns regarding the effectiveness and safety of stem cell transplantation for SCI patients. In this study, we investigated the effects of transplantation of human mesenchymal stem cells (hMSCs) that were genetically modified to express Olig2 in a rat model of SCI. Methods: Bone marrow-derived hMSCs were genetically modified to express Olig2 and transplanted one week after the induction of contusive SCI in a rat model. Spinal cords were harvested 7 weeks after transplantation. Results: Transplantation of Olig2-expressing hMSCs significantly improved functional recovery in a rat model of contusive SCI model compared to the control hMSC-transplanted group. Transplantation of Olig2-expressing hMSCs also attenuated glial scar formation in spinal cord lesions. Immunohistochemical analysis showed that transplanted Olig2-expressing hMSCs were partially differentiated into Olig1-positive oligodendrocyte-like cells in spinal cords. Furthermore, NF-M-positive axons were more abundant in the Olig2-expressing hMSC-transplanted group than in the control hMSC-transplanted group. Conclusions: We suggest that Olig2-expressing hMSCs are a safe and optimal cell source for treating SCI.

Effects of Root of Scutellariae Radix against Inflammatory Response in the Spinal Cord Contusion Injury in Rats (척수압박손상 흰쥐의 척수조직 염증반응에 황금(黃芩)이 미치는 영향)

  • Yang, Kee-Young;Choi, Won-Ik;Shin, Jung-Won;Park, Seong-Ha;Kim, Seong-Joon;Lee, Jong-Soo;Sohn, Nak-Won
    • Journal of Korean Medicine Rehabilitation
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    • v.21 no.3
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    • pp.1-11
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    • 2011
  • Objectives : This study was performed to evaluate the effects of root of Scutellariae Radix(SR) water extract against inflammatory response in the spinal cord injury(SCI). Methods : SCI was induced by mechanical contusion following laminectomy of 10th thoracic vertebra in Sprague-Dawley rat. SR was orally given once a day for 7days after SCI. Myeloperoxidase(MPO) positive neutrophils infiltration was examined. Inducible nitric oxide synthase(iNOS) and tumor necrosis factor-${\alpha}$(TNF-${\alpha}$) expressions were observed with immunohistochemistry. Glial fibrillary acidic protein(GFAP) positive astrocytes were examined using immuno-fluorescence. Results : 1. SR reduced MPO-positive neutrophils infiltration in peri-damage regions of the contusive SCI-induced rats. 2. SR reduced iNOS positive cells in the white matter of the contusive SCI-induced rats. 3. SR reduced TNF-${\alpha}$ positive cells in the gray and white matter of the contusive SCI-induced rats. 4. SR reduced cell number and size of astrocytes in peri-damage regions of the contusive SCI-induced rats. Conclusions : These results suggest that SR plays an inhibitory role against inflammatory response in the SCI.

Analgesic Effects of Transcranial Direct Current Stimulation on Central Neuropathic Pain in Spinal Cord Contusive Rat Model

  • Kim, Kyung-Yoon;Sim, Ki-Chol;Kim, Hyun-Seung;Choi, Wan-Suk;Kim, Gi-Do
    • International Journal of Contents
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    • v.8 no.1
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    • pp.74-81
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    • 2012
  • The aim is to investigate the analgesic effect of transcranial direct current stimulation(tDCS) on central neuropathic pain(CNP) in spinal cord contusive rat model. Twenty Sprague-Dawley rats($250{\pm}50$ g, male) were used. Thoracic spinal cord(T10) was contused using New York University(NYU) spinal cord impactor. The animals were randomly assigned to two groups; GroupI: Non-treatment after SCI induction(n=10), GroupII: application of tDCS(0.1 mA, 20 min/time, 2 times/day, 5 days/6week) after SCI induction(n=10). Assess the effect of tDCS using the Basso Beattie Bresnahan(BBB) locomotor rating scales, Touch $test^{TM}$ sensory evaluator(TTSE), Plantar test$^{\circledR}$after contusion at the $2^{nd}$, $3^{rd}$, $4^{th}$, $5^{th}$, $6^{th}$ week and the immunohistochemistric response of c-fos in the thalamus, cerebral cortex after contusion at the $3^{rd}$, $6^{th}$ week after SCI. The scores of BBB scales were significantly different from $3^{rd}$week. TTSE were different significantly over time, but there were no differences at each evaluation times on between-measure time effects. Plantar test were different significantly over time and there were difference at the $4^{th}$, $6^{th}$ week after SCI on between-measure time effects. Also, immunohistochemistric response of c-fos was reduced significantly from $3^{rd}$, $6^{th}$ week after SCI in tDCS group compared with control group in thalamus and cortex. These results identified that tDCS of non-invasive therapeutic method may have beneficial analgesic effect on CNP after SCI with behavioral test and immunohistochemical test.

Epigenetic Regulation in the Brain after Spinal Cord Injury : A Comparative Study

  • Park, Bit-Na-Ri;Kim, Seok Won;Cho, Sung-Rae;Lee, Ji Yong;Lee, Young-Hee;Kim, Sung-Hoon
    • Journal of Korean Neurosurgical Society
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    • v.53 no.6
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    • pp.337-341
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    • 2013
  • Objective : After spinal cord injury (SCI), functional and structural reorganization occurs at multiple levels of brain including motor cortex. However, the underlying mechanism still remains unclear. The current study was performed to investigate the alterations in the expression of the main regulators of neuronal development, survival and death, in the brain following thoracic contusive SCI in a mouse model. Methods : Eight-week-old female imprinting control region mice (n=60; 30-35 g) were used in this study. We analyzed the expression levels of regulators such as brain-derived neurotrophic factor (BDNF), glial cell line-derived neurotrophic factor (GDNF), nerve growth factor (NGF) and histone deacetylase (HDAC) 1 in the brain following thoracic contusive SCI. Results : The expression of BDNF levels were elevated significantly compared with control group at 2 weeks after injury (p<0.05). The expression of NGF levels were elevated at 2, 4 weeks compared with control group, but these difference were not significant (p>0.05). The GDNF levels were elevated at 2 week compared with control group, but these differences were not significant (p>0.05). The difference of HDAC1 levels were not significant at 2, 4 and 8 weeks compared with control group (p>0.05). Conclusion : These results demonstrate that the upregulation of BDNF may play on important role in brain reorganization after SCI.

Long-term Follow-up of Cutaneous Hypersensitivity in Rats with a Spinal Cord Contusion

  • Jung, Ji-In;Kim, June-Sun;Hong, Seung-Kil;Yoon, Young-Wook
    • The Korean Journal of Physiology and Pharmacology
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    • v.12 no.6
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    • pp.299-306
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    • 2008
  • Sometimes, spinal cord injury (SCI) results in various chronic neuropathic pain syndromes that occur diffusely below the level of the injury. It has been reported that behavioral signs of neuropathic pain are expressed in the animal models of contusive SCI. However, the observation period is relatively short considering the natural course of pain in human SCI patients. Therefore, this study was undertaken to examine the time course of mechanical and cold allodynia in the hindpaw after a spinal cord contusion in rats for a long period of time (30 weeks). The hindpaw withdrawal threshold to mechanical stimulation was applied to the plantar surface of the hindpaw, and the withdrawal frequency to the application of acetone was measured before and after a spinal contusion. The spinal cord contusion was produced by dropping a 10 g weight from a 6.25 and 12.5 mm height using a NYU impactor. After the injury, rats showed a decreased withdrawal threshold to von Frey stimulation, indicating the development of mechanical allodynia which persisted for 30 weeks. The withdrawal threshold between the two experimental groups was similar. The response frequencies to acetone increased after the SCI, but they were developed slowly. Cold allodynia persisted for 30 weeks in 12.5 mm group. The sham animals did not show any significant behavioral changes. These results provide behavioral evidence to indicate that the below-level pain was well developed and maintained in the contusion model for a long time, suggesting a model suitable for pain research, especially in the late stage of SCI or for long term effects of analgesic intervention.

Effects of Scutellariae Radix on Locomotor Dysfunction of Contusive Spinal Cord Injury Induced Rats (황금(黃芩)이 척수압박손상 흰쥐의 운동기능장애에 미치는 영향)

  • Kim, Eun-Seok;Kim, Pyung-Soo;Kim, Bum-Hoi;Shin, Jung-Won;Kim, Seong-Joon;Sohn, Nak-Won
    • Journal of Acupuncture Research
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    • v.28 no.3
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    • pp.33-42
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    • 2011
  • Objectives : This study was performed to evaluate the effects of Scutellariae radix (SR) water extract on locomotor dysfunction induced by spinal cord injury (SCI) in rats. Methods : SCI was induced mechanical contusion following laminectomy of 10 th thoracic vertebra in Sprague-Dawley rats. SR was orally given once a day for 7 days after SCI. Neurological behavior was examined with the Basso-Beattie-Bresnahan locomotor rating scale. Tissue damage and nerve fiber degeneration were examined with cresyl violet and luxol fast blue (LFB) histochemistry. Using immunohistochemistry, cellular damages to neurons and nerve fibers were examined MAP-2. Results : 1. SR significantly ameliorated the locomotor dysfunction of the SCI-induced rats. 2. SR significantly reduced the number of motor neurons in the ventral horn of the SCI-induced rat spinal cord. 3. SR attenuated the reduction of nerve fiber shirnakage and degeneration of the SCI-induced rat spinal cord. 4. SR attenuated the reduction of MAP-2 positive cells in the peri-lesion of the SCI-induced rat spinal cord. Conclusions : These results suggest that SR improves the locomotor dysfunction of SCI by reducing degeneration of nerve fibers and motor neuron shrinkage in the ventral horn.

Effects of Hwangryunhaedok-tang(Huanglianjiedu-tang) on Locomotor Dysfunction of Contusive Spinal Cord Injury-induced Rats (황련해독탕(黃連解毒湯)이 척수 압박손상 흰쥐의 운동기능 장애에 미치는 영향)

  • Seong, Ju-Won;Kim, Ki-Yuk;Bahn, Hyo-Jung;Shin, Jung-Won;Kang, Hee;Kim, Seong-Joon;Sohn, Nak-Won
    • Journal of Korean Medicine Rehabilitation
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    • v.20 no.4
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    • pp.1-15
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    • 2010
  • Objectives : This study was performed to evaluate the effects of Hwangryunhaedok-tang(Huanglianjiedu-tang HHT) water extract on locomotor dysfunction induced by spinal cord injury(SCI) in rats. Methods : SCI was induced by mechanical contusion following laminectomy of 10th thoracic vertebra in Sprague-Dawley rats. HHT was orally given once a day for 14 days after SCI. Neurological behavior was examined with the Basso-Beattie-Bresnahan locomotor rating scale. Tissue damage and nerve fiber degeneration were examined with cresyl violet and luxol fast blue staining. Using immunohistochemisty, cellular damage to neurons and nerve fibers were examined against Bax and MAP-2. As inflammatory response markers, iNOS and COX-2 expressions were also examined. Results : 1. HHT ameliorated the locomotor dysfunction of the SCI-induced rats. 2. HHT attenuated the reduction of motor neurons in the ventral horn of the SCI-induced rat spinal cord. 3. HHT significantly reduced the number of Bax positive cells in the peri-lesion of the SCI-induced rat spinal cord. 4. HHT attenuated the reduction of MAP-2 positive cells in the peri-lesion of the SCI-induced rat spinal cord. 5. HHT significantly reduced the number of iNOS and COX-2 positive cells in the peri-lesion of the SCI-induced rat spinal cord. Conclusions : These results suggest that HHT improves the locomotor dysfunction of SCI by protecting motor neurons from cell death through anti-inflammatory effect.

The Effect of Human Adipose Tissue Derived Mesenchymal Stem Cells and Growth Hormone on the Recovery of Neurological Deficits due to Experimental Spinal Cord Injury in Rat (최근 척수손상 백서에서 인체지방조직유래 중간엽 줄기세포 이식 및 성장호르몬의 투여가 신경회복에 미치는 영향)

  • Lee, Keun Cheol;Moon, In Sun;Heo, Jung;Kwon, Yong Seok;Kim, Seok Kwun;Son, Hee Dong
    • Archives of Plastic Surgery
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    • v.35 no.1
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    • pp.13-19
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    • 2008
  • Purpose: Human adipose tissue-derived mesenchymal stem cells(hATSCs) can be differentiated into multiple mesenchymal lineages, including bone, cartilage, and muscle. And growth hormone play important roles in the normal growth and development of the CNS. In this study, we explored whether the transplanted hATSCs and growth hormones could improve functional recoveries from rats with contusive spinal cord injury. Methods: We divided 30 female rats, which were subjected to a weight driven implant spinal cord injury, into 3 groups with 10 rats each; Group A as a control group, group B with hATSCs transplantation on injured region, and group C with hATSCs transplantation and GH administration for 7 days. Then, we researched their neurologic functional recoveries before and 2, 4, and 8 weeks after transplantation using Basso-Beattie-Bresnahan (BBB) locomotor rating scale. And we checked Y-chromosome positive cells by FISH(Fluorescent in situ hybridization) to identify the survival of transplanted mesenchymal stem cells. Results: After 4 weeks of transplantation, the group B and group C showed significant improvement of neurologic function on BBB locomotor rating scale in comparison with the group A(Group A: $13.1{\pm}0.58$, Group B: $14.6{\pm}0.69$, Group C: $14.9{\pm}0.56$). Moreover, the group C displayed meaningful recovery of neurologic function after 8 weeks in comparison with group B (Group B: $15.7{\pm}0.63$, Group C: $16.5{\pm}1.14$). The group A, the control one, improved for 5 weeks after injury, and had no more recovery. On the other hand, Group B and C showed the improvement of neurologic function continuously for 9 weeks after injury. Conclusion: In this study, we found out that hATSCs transplantation have an effect on neurologic functional recovery of spinal cord injured rat and GH injection seems to bring the synergistic results on this good tendency.