期刊文献+

温针腰神经根受压大鼠前列腺素E_2的水平 被引量:3

Warm needling regulates the prostaglandin E_2 in a rat model of lumbar nerve root compression
暂未订购
导出
摘要 背景:研究表明温针对降低大鼠腰神经根受压模型中前列腺素E2表达有重要意义。目的:探讨温针对大鼠腰神经根受压模型中前列腺素E2的调节作用,并与针刺和美洛昔康作对比。方法:60只SD大鼠随机等分为正常组、模型组、美洛昔康组、针刺组和温针组,后4组通过放置硅胶片建立大鼠腰神经根受压模型。美洛昔康组、针刺组、温针组大鼠分别在造模后予以3.75mg/kg美洛昔康灌胃、针刺和温针腰L5夹脊穴治疗14d。结果与结论:美洛昔康、针刺和温针都可以降低大鼠受压腰神经根组织中前列腺素E2的水平(P<0.01),温针较美洛昔康和针刺能更明显地降低前列腺素E2水平(P<0.01),提示温针可以有效地降低大鼠腰神经根受压模型中的前列腺素E2。 BACKGROUND:Studies have demonstrated that warm needling exerts an important role in prostaglandin E2 expression in a rat model of lumbar nerve root compression. OBJECTIVE:To explore the regulating effects of warm-needling on prostaglandin E2 expression of rat models of lumbar nerve root compression, and to compare the efficacy of acupuncture and meloxicam. METHODS:Sixty Sprague-Dawley rats were randomly divided into five groups. They were normal group, model group, meloxicam group, acupuncture group and warm needling group. Rats in the latter four groups were prepared for rat models of lumbar nerve root compression by placing silicone films. The rats in the normal group were not modeled and had no therapy. The rats in the model group were modeled but not treated. After modeling, the rats in the meloxicam, acupuncture and warm needling groups were subjected to intragastric administration of 3.75 mg/kg meloxicam, acupuncture and warm needling for 14 days, respectively. RESULTS AND CONCLUSION:Meloxicam, acupuncture, warm-needling all could reduce the content of prostaglandin E2 in rats with lumbar nerve root compression (P 0.01). Compared to meloxicam and acupuncture, warm needling could better reduce the content of prostaglandin E2 (P 0.01). The findings indicate that warm needling can effectively reduce the content of prostaglandin E2 in rats with lumbar nerve root compression.
出处 《中国组织工程研究》 CAS CSCD 2012年第37期6951-6955,共5页 Chinese Journal of Tissue Engineering Research
基金 上海市科学技术委员会资助课题(04419723):从细胞因子调控探讨温和灸对大鼠腰神经根受压模型的作用机制~~
  • 相关文献

参考文献16

  • 1胡有谷.腰椎间盘突出症[M]北京:人民卫生出版社,200446.
  • 2Mixter WJ,Barr JS. Rupture of the intervertebral disc with involvement of the spinal canal[J].New England Journal of Medicine,1934.210-215.
  • 3Murphy RW. Nerve roots and spinal nerves in degenerative disk disease[J].Clinical Orthopaedics and Related Research,1977,(129):46-60.
  • 4Naylor A,Happey F,Turner RL. Enzymic and immunological activity in the intervertebral disk[J].Orthopedic Clinics of North America,1975,(01):51-58.
  • 5Eyre DR,Matsui Y,Wu JJ. Col agen polymorphisms of the intervertebral disc[J].Biochemical Society Transactions,2002,(Pt 6):844-848.
  • 6中华人民共和国科学技术部.关于善待实验动物的指导性意见[Z],2006.
  • 7吴耀持,张彩红.针刺对腰神经根压迫症模型大鼠受损腰神经根超微结构及炎性介质的影响[J].上海针灸杂志,2003,22(9):32-34. 被引量:21
  • 8Roberts S,Caterson B,Menage J. Matrix metal oproteinases and aggrecanase:their role in disorders of the human intervertebral disc[J].Spine(Phila Pa 1976),2000,(23):3005-3013.
  • 9Ahsan R,Tajima N,Chosa E. Biochemical and morphological changes in herniated human intervertebral disc[J].Journal of Orthopaedic Science,2001,(06):510-518.
  • 10Saal JS,Franson RC,Dobrow R. High levels of inflammatory phospholipase A2 activity in lumbar disc herniations[J].Spine(Phila Pa 1976),1990,(07):674-678.

二级参考文献17

  • 1许愿忠,张建伟,王瑞,易西南,曾志成.大鼠坐骨神经压榨损伤后早期降钙素基因相关肽的变化[J].解剖学杂志,2005,28(2):178-181. 被引量:17
  • 2吴耀持,张峻峰.温针治疗老年颈椎病的疗效观察[J].上海针灸杂志,2006,25(12):24-24. 被引量:2
  • 3Priestley J V, Michael G J,Averill S, et al. Regulation of nociceptive neurons by nerve growth factor and flial cell line derived neurotrophic factor[J]. Can J Pharmacol,2002,80(5):495--505.
  • 4Yabuki S, Igarashi S, Kikuchi S. Application of nucleus pulposus to the nerve root simultaneously reduces blood flow in dorsal root ganglion and corresponding hind-paw in the rat[J]. Spine, 2000,25 (12) : 1 471 - 1 476.
  • 5Yabuki S, Kikuchi S, Olmarker K, et al. Acute effects of nucleus pulposus on blood flow and endoneurial fluid pressure in rat dorsal root ganglia[J]. Spine, 1998,23(23) : 2 517-- 2 523.
  • 6Sun RQ, Tu Y J, Lawand NB, et al. Calcitonin generelated peptide receptor activation produces PKA-and PKC-Dependent mechanical, hyperalgesia and central sensitization[J]. Neurophysiol, 2004,92 ( 5 ) : 2 859.
  • 7Bennett A D, Chastain K M, Hulsebosch C E. Allevia tion of mechanical and thermal allodynia by CGRP (8--37) in a rodent model of chronic central pain[J]. Pain, 2000,86( 1-- 2): 163-- 175.
  • 8Hashizume H, Kawakami M, Nishi H, et al. Histochemical demonstration of nitric oxide in herniated lumbar discs: a clinical and animal model study[J]. Spine, 1997,22(10):1 080--1 084.
  • 9Liu G Z, Ishihara H, Osada R, et al. Nitric oxide mediates the change of proteoglycan synthesis in the human lumbar intervertebral disc in response to hydrostatic pressure[J]. Spine, 2001,26(2) :134-141.
  • 10Meller S T, Cummings C P, Traub R J, et al. The role of nitric oxide in the development and maintemance of the hyperalgesia by intraplantar injection of carra-geenan in the rat[J]. Neuroscience, 1994, 60 (2):367--374.

共引文献51

同被引文献66

引证文献3

二级引证文献68

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部