1,328
Views
29
CrossRef citations to date
0
Altmetric
Research Article

Antinociceptive effects of matrine on neuropathic pain induced by chronic constriction injury

, , , , , , , , & show all
Pages 844-850 | Received 04 Dec 2012, Accepted 14 Jan 2013, Published online: 29 Apr 2013

References

  • Atta-Ur-Rahman A, Choudhary MI, Parvez K, et al. (2000). Quinolizidine alkaloids from Sophora alopecuroides. J Nat Prod 63:190–2
  • Ai J, Gao HH, He SZ, et al. (2001). Effects of matrine, artemisinin, tetrandrine on cytosolic [Ca2+]i in guinea pig ventricular myocytes. Acta Pharmacol Sin 22:512–5
  • Bennett GJ, Xie YK. (1988). A peripheral mononeuropathy in rat that produces disorders of pain sensation like those seen in man. Pain 33:87–107
  • Carlton SM, Du J, Tan HY, et al. (2009). Peripheral and central sensitization in remote spinal cord regions contribute to central neuropathic pain after spinal cord injury. Pain 147:265–76
  • Cheng H, Xia B, Zhang L, et al. (2006). Matrine improves 2,4,6-trinitrobenzene sulfonic acid-induced colitis in mice. Pharmacol Res 53:202–8
  • Chaplan SR, Bach FW, Pogrel JW, et al. (1994). Quantitative assessment of tactile allodynia in the rat paw. J Neurosci Methods 53:55–63
  • De Vry J, Kuhl E, Franken-Kunkel P, Eckel G. (2004). Pharmacological characterization of the chronic constriction injury model of neuropathic pain. Eur J Pharmacol 491:137–48
  • Dowdall T, Robinson I, Meert FT. (2005). Comparison of five different rat models of peripheral nerve injury. Pharmacol Biochem Behav 80:93–108
  • Gunduz O, Oltulu C, Guven R, et al. (2011). Pharmacological and behavioral characterization of the saphenous chronic constriction injury model of neuropathic pain in rats. Neurol Sci 32:1135–42
  • Hu ZL, Zhang JP, Qian DH, et al. (1996). Effects of matrine on mouse splenocyte proliferation and release of interleukin-1 and -6 from peritoneal macrophages in vitro. Zhongguo Yaoli Xuebao 17:259–61
  • Hervera A, Negrete R, Leánez S, et al. (2010). The role of nitric oxide in the local antiallodynic and antihyperalgesic effects and expression of δ-opioid and cannabinoid-2 receptors during neuropathic pain in mice. J Pharmacol Exp Ther 334:887–96
  • Hofmann HA, De Vry J, Siegling A, et al. (2003). Pharmacological sensitivity and gene expression analysis of the tibial nerve injury model of neuropathic pain. Eur J Pharmacol 470:17–25
  • Honda K, Casadesus G, Petersen RB, et al. (2004). Oxidative stress and redox-active iron in Alzheimer’s disease. Ann N Y Acad Sci 1012:179–82
  • Jasmin L, Kohan L, Franssen M, et al. (1998). The cold plate as a test of nociceptive behaviors: Description and application to the study of chronic neuropathic and inflammatory pain models. Pain 75:367–82
  • Jain V, Jaggi AS, Singh N. (2009). Ameliorative potential of rosiglitazone in tibial and sural nerve transection-induced painful neuropathy in rats. Pharmacol Res 59:385–92
  • Kamei J, Xiao P, Ohsawa M, et al. (1997). Antinociceptive effects of (+)-matrine in mice. Eur J Pharmacol 337:223–6
  • Kayser V, Farré A, Hamona M, Bourgoin S. (2003). Effects of the novel analgesic, cizolirtine, in a rat model of neuropathic pain. Pain 104:169–77
  • Kim SH, Chung JM. (1992). An experimental model for peripheral neuropathy produced by segmental spinal nerve ligation in the rat. Pain 50:355–63
  • Long Y, Lin XT, Zeng KL, Zhang L. (2004). Efficacy of intramuscular matrine in the treatment of chronic hepatitis B. Hepatobiliary Pancreat Dis Int 3, 69–72
  • Liu J, Zhu M, Shi R, Yang M. (2003). Radix Sophorae flavescentis for chronic hepatitis B: A systematic review of randomized trials. Am J Chin Med 31:337–54
  • Liu XY, Ruan LM, Mao WW, et al. (2010). Preparation of RGD-modified long circulating liposome loading matrine, and its in vitro anti-cancer effects. Int J Med Sci 7:197–208
  • Lee BH, Won R, Baik EJ, et al. (2000). An animal model of neuropathic pain employing injury to the sciatic nerve branches. Neuroreport 11:657–61
  • Muthuraman A, Ramesh M, Sood S. (2010). Development of animal model for vasculatic neuropathy: Induction by ischemic-reperfusion in the rat femoral artery. J Neurosci Methods 86:215–21
  • Muthuraman A, Jaggi AS, Singh N, Singh D. (2008a). Ameliorative effects of amiloride and pralidoxime in chronic constriction injury and vincristine-induced painful neuropathy in rats. Eur J Pharmacol 587:104–11
  • Muthuraman A, Diwan V, Jaggi AS, et al. (2008b). Ameliorative effects of Ocimum sanctum in sciatic nerve transection induced neuropathy in rats. J Ethnopharmacol 120:56–62
  • Muthuraman A, Sood S. (2010). Pharmacological evaluation of tacrolimus (FK-506) on ischemia reperfusion induced vasculatic neuropathic pain in rats. J Brachial Plex Peripher Nerve Inj 5:13–23
  • Pei RJ, Xiao L, Fan XP, Liu XJ. (1998). The effects of matrine on mouse immune functions. Haixia Yaoxue 10:7–8
  • Seltzer Z, Dubner R, Shir Y. (1990). A novel behavioral model of neuropathic pain disorders produced in rats by partial sciatic nerve injury. Pain 43:205–18
  • Siau C, Bennett GJ. (2006). Dysregulation of neuronal calcium homeostasis in chemotherapy-evoked painful peripheral neuropathy. Anesth Analg 102:1485–90
  • Tanimoto-Mori S, Nakazato-Imasato E, Toide K, Kita Y. (2008). Pharmacologic investigation of the mechanisim underlying cold allodynia using a new cold plate procedure in rats with chronic constriction injuries. Behav Pharmacol 19:85–90
  • Wang XY, Liang L, Chang JL, et al. (2010). Toxicity of matrine in Kunming mice. Nan Fang Yi Ke Da Xue Xue Bao 30:2154–5
  • Woolf CJ, Mannion RJ. (1999). Neuropathic pain: Aetiology, symptoms, mechanisms, and management. Lancet 353:1959–64
  • Wall PD, Waxman SG, Basbaum AI. (1974). Ongoing activity in peripheral nerve: Injury discharge. Exp Neurol 45:576–89
  • Xu CQ, Dong DL, Du ZM, et al. (2004). Comparison of the anti-arrhythmic effects of matrine and berbamine with amiodarone and RP58866. Yaoxue Xuebao 39:691–4
  • Xin SM, Ma ZQ. (1998). Anti-diarrhea effect of matrine. Zhongchengyao 20:30–2
  • Xiao P, Kubo H, Ohsawa M, et al. (1999). Kappa-opioid receptor-mediated antinociceptive effects of stereoisomers and derivatives of (+)-matrine in mice. Planta Med 65:230–3
  • Yin LL, Zhu XZ. (2005). The involvement of central cholinergic system in (+)-matrine-induced antinociception in mice. Pharmacol Biochem Behav 80:419–25
  • Young W. (1992). Role of calcium in central nervous system injuries. J Neurotrauma 9:9–25
  • Zhang MJ, Huang J. (2004). Recent research progress of anti-tumor mechanism matrine. Zhongguo Zhong Yao Za Zhi 29:115–8
  • Zhang JP, Zhang M, Zhou JP, et al. (2001a). Antifibrotic effects of matrine on in vitro and in vivo models of liver fibrosis in rats. Acta Pharmacol Sin 22:183–6
  • Zhang JP, Zhang M, Jin C, et al. (2001b). Matrine inhibits production and actions of fibrogenic cytokines released by mouse peritoneal macrophages. Acta Pharmacol Sin 22:765–8
  • Zhang BH, Wang NS, Li XJ, et al. (1990). Anti-arrhythmic effects of matrine. Zhongguo Yaoli Xuebao 11:253–7
  • Zhang S, Li H, Yang SJ. (2005). Comparison of analgesic effects between matrine and sophorid. J Jilin Univ 31:561–3

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.