Effects of Electroacupuncture on Activity of GOT, GPT, LDH and Functional Recovery in the Motor Injury Rats by the 6-hydroxydopamine

6-hydroxydopamine에 의한 운동손상 흰 쥐에서 전침이 GOT, GPT, LDH 활성도 및 기능회복에 미치는 영향

  • Ha, Mi-Sook (Department of Physical Therapy, Masan University) ;
  • Rho, Min-Hee (Department of Physical Therapy, Pusan Catholic University)
  • 하미숙 (마산대학 물리치료과) ;
  • 노민희 (부산가톨릭대학교 물리치료학과)
  • Received : 2010.03.29
  • Accepted : 2010.05.23
  • Published : 2010.05.31

Abstract

Purpose : This study was investigated the effect of electroacupuncture stimulation on the change of blood biochemical components in the rat spinal cord injury(SCI) damaged by the 6-hydroxydopamine. Methods : SCI model rats were damaged in L1-L2 injected with 6-hydroxydopamine. The thirty Sprague-Dawley adult male rats were randomly divided into normal group, control group and electroacupuncture group. Experimental groups were applied as electroacupuncture(Es-160, ITO, Japan) for 15minutes during the low frequency(2 Hz) stimulation to zusanli. The enzyme concentration levels analysis of the hematological changes were measured of Glutamate Oxaloacetate Transaminase(GOT), Glutamate Pyruvate Transaminase(GPT), Lactate dehydrogenase(LDH) and motor function recovery change was evaluated by the rota-rod test. Results : This study were as follow : The concentration of GOT, LDH in experimental group was lower than control group(p<.05). The experimental group showed increase of motor function recovery more in compared to control group(p<.05). Conclusion : The results of this study showed that electroacupuncture to zusanli point have an effect on functional recovery after the 6-hydroxydopamine induced SCI in rats.

Keywords

References

  1. 김은영. 초음파와 수영이 신경근 손상 흰쥐의 혈청 CK 활성 변화에 미치는 영향. 대구대학교 재활과학대학원 석사학위논문. 2002.
  2. 김미영. 유산소 운동이 뇌성마비아의 혈장 LDH 동위원소와 CPK 농도에 미치는 영향. 단국대학교 스포츠과학대학원 석사학위논문. 2004.
  3. 박수경, 노민희, 김은영 등. 3-Acetypyridine에 의한 운동실조 흰 쥐에서 운동과 전침이 효소활성도에 미치는 영향. 한국스포츠리서치, 2007;18(6):1093-102.
  4. 백일훈. 운동과 저출력 레이저가 3-Acetypyridine에 의한 소뇌병변 흰쥐의 치유에 미치는 영향. 부산가톨릭대학교 보건과학대학원 석사학위논문. 2005.
  5. 설재욱, 신미숙, 최진봉. 전침요법을 병용한 척수손상 환자의 체험 1례. 한방재활의학과학회지. 2004; 14(4):117-27.
  6. 심대무, 최정기, 차상도 등. 흰쥐에서 척수손상 후 후지의 운동기능 회복을 위한 좌골신경의 전기자극 효과. 대한척추외과학회지. 1995;2(2), 151-60.
  7. 이재성, 이문영, 김민선 등. 흰쥐에서 척수손상 후 기능회복에 관여하는 전기자극의 작용기전. 대한재활희학회지, 1997;21:281-9.
  8. 조성채. 운동 후 CPK. LDH. Lipase. GOT. GPT 활성에 미치는 Ergogenic Aids의 효과, 木浦海洋大學校(論文集, 1997;5(2):41-62.
  9. Ashby P, Gandevia SC, Burke D et al. The neurophysiology of human spinal spasticity. In: Science and practice in Clinical Neurology. Cambridge University press, 1993.
  10. Basmajian JV, de Luca CJ. Muscles alive : Their functions revelead by electromyography. Baltimoe Williams & Wilkins. 1988.
  11. Brooks GA, Fahey TD. Exercise Physiology. Human Bioener getics and its application. 2nd ed. New York : Macmillian. 1985.
  12. Chen SC, Lai CH, Chan WP et al. Increases in bone mineral density after functional electrical stimulation cyclingexercises in spinal cord injured patients. Disabil Rehabi. 2005;27(22):1337-41. https://doi.org/10.1080/09638280500164032
  13. Follesn P, Gale K, Mocchetti I. Regional & temporal patterm of nerve growth factor and basi fibroblast growth factor mRNA in rat brain following electroconvulsive shock. Exper Beuro, 1994;127:37-44.
  14. Glinka Y, Gassen M, Youdim MB. Mechanism of 6-hydroxydopamine neurotoxicity. Neural Transm Suppl. 1997;50:55-66.
  15. Hamid S, Havek R. Role of electrical stimulation for rehabilitation and regeneration after spinal cord injury: an overview. J Eur Spine. 2008;17(9):1256-69. https://doi.org/10.1007/s00586-008-0729-3
  16. Houghton PE, Kincaid CB, Lovell M et al. Effect of electrical stimulation on chronic leg ulcer size and appearance. Phys Ther. 2003;83(1):17-28.
  17. John FD, David FA, Anthony SB et al. Special article a review of the future model spinal cord injury system through the prism of past achievements and current challenges. J Spinal Cord Med 2003;26:110.
  18. Kim JH, Min BI, Schmidt D et al. The difference between electroacupuncture only and electroacupuncture with manipulation on analigesia in rats. Neurosci Lett. 2000;279(3):149-52. https://doi.org/10.1016/S0304-3940(99)00994-5
  19. Lieber RL, Silva PD, Daniel DM. Equal effectiveness of electrical and volitional strength training for quadriceps femoris muscles after anterior cruciate ligament surgery. J Orthop Res. 1996;14(1):131-8. https://doi.org/10.1002/jor.1100140121
  20. Lundary-Kkamn. Neuroscience: Fundamentals for rehabilitation, W.B Saunders Cmpany. USA. 1998.
  21. Mysiw WJ, Jackson RD. Electrical stimulation, In: Braddom RL, Buschbacher RM, Dumitru D, Johnson EW, Matthews D, Sinaki M, editors. Physical medicine and rehabilitation, 2nd ed, Saunders, 2000.
  22. Olanow CW. Arationale for dopamine agonists as primary therapy for pankison's disease. Can. J. Neurol. Sci. 1992;19(1):108-12.
  23. Roberts D, Smith DJ. Biomechemical aspects of peripheral muscle fatigue, Are view Sports Med. 1989;7:125-38. https://doi.org/10.2165/00007256-198907020-00004
  24. Stilling D. A survey of the history of electrical stimulation for pain to 1900. Med Imstrum. 1975; 9(1):1-5.
  25. Taylor K, Fish DR, Mendel FC et al. Effect of electrically induced muscle contractions on posttrau-matic edema formation in frog hind limbs. Phys Ther. 1992;72(2):127-32.
  26. Veltink PH, Ladouceur M, SinkJaer T. Inhibition of the triceps surae stretch reflex by stimulation of the deep peroneal Nerve in persons with spastic stroke. Arch Phys Med Rdhabil. 2000;81:1016-24. https://doi.org/10.1053/apmr.2000.6303
  27. Yang C, Li B, Liu TS et al. Effect of electroacu-puncture on proliferation of astrocytes after spinal cord injury. Zhongguo Zhen Jiu. 2005;25(8): 569-72.
  28. Yuji T, Kenji O. Spinal cord injury in the rat. Prog Neurobio. 1998;56(3):341-58. https://doi.org/10.1016/S0301-0082(98)00049-5
  29. Zweifler RM. Management of acute stroke. J South Med. 2003;96(4):380-5. https://doi.org/10.1097/01.SMJ.0000063467.75456.7A
  30. Zygmunt LK. Neurotransmitter and medicines. Hanamedbook. 1996.