Publication Cover
Stress
The International Journal on the Biology of Stress
Volume 16, 2013 - Issue 5
377
Views
3
CrossRef citations to date
0
Altmetric
Research Article

Acute stress regulates nociception and inflammatory response induced by bee venom in rats: possible mechanisms

, , , , , , & show all
Pages 557-563 | Received 14 Nov 2012, Accepted 06 Apr 2013, Published online: 03 Jun 2013

References

  • Aloisi AM, Ceccarelli I, Lupo C. Behavioural and hormonal effects of restraint stress and formalin test in male and female rats. Brain Res Bull 1998;1:57–62
  • Amir S, Amit Z. Endogenous opioid ligands may mediate stress-induced changes in the affective properties of pain related behavior in rats. Life Sci 1978;23:1143–52
  • Amit Z, Galina ZH. Stress-induced analgesia: adaptive pain suppression. Physiol Rev 1986;66:1091–120
  • Bomholt SF, Harbuz MS, Blackburn-Munro G, Blackburn-Munro RE. Involvement and role of the hypothalamo-pituitary-adrenal (HPA) stress axis in animal models of chronic pain and inflammation. Stress 2004;7:1–14
  • Busch-Dienstfertig M, Stein C. Opioid receptors and opioid peptide-producing leukocytes in inflammatory pain – basic and therapeutic aspects. Brain Behav Immun 2010;24:683–94
  • Butler RK, Finn DP. Stress-induced analgesia. Prog Neurobiol 2009;88:184–202
  • Chen J, Chen HS. Pivotal role of capsaicin-sensitive primary afferents in development of both heat and mechanical hyperalgesia induced by intraplantar bee venom injection. Pain 2001;91:367–76
  • Chen HS, He X, Wang Y, Wen WW, You HJ, Arendt-Nielsen L. Roles of capsaicin-sensitive primary afferents in differential rat models of inflammatory pain: a systematic comparative study in conscious rats. Experimental Neurology 2007;204:244–51
  • Chen J, Lariviere WR. The nociceptive and anti-nociceptive effects of bee venom injection and therapy: a double-edged sword. Prog Neurobiol 2010;92:151–83
  • Chen HS, Lei J, He X, Qu F, Wang Y, Wen WW, You HJ, Arendt-Nielsen L. Peripheral involvement of PKA and PKC in subcutaneous bee venom-induced persistent nociception, mechanical hyperalgesia, and inflammation in rats. Pain 2008;135:31–6
  • Chen HS, Lei J, He X, Wang Y, Wen WW, Wei XZ, Graven-Nielsen T, et al. Pivotal involvement of neurogenic mechanism in subcutaneous bee venom induced inflammation and allodynia in unanesthetized conscious rats. Experimental Neurology 2006;200:386–91
  • Chen HS, Li MM, Shi J, Chen J. Supraspinal contribution to development of both tonic nociception and referred mirror hyperalgesia: a comparative study between formalin test and bee venom test in the rat. Anesthesiology 2003;98:1231–6
  • Chen HS, Qu F, He X, Kang SM, Liao D, Lu SJ. Differential roles of peripheral metabotropic glutamate receptors in bee venom-induced nociception and inflammation in conscious rats. J Pain 2010a;11:321–9
  • Chen HS, Qu F, He X, Wang Y, Wen WW. Chemical or surgical sympathectomy prevents mechanical hyperalgesia induced by intraplantar injection of bee venom in rats. Brain Research 2010b;1353:86–93
  • Christoph T, Grünweller A, Mika J, Schäfer MK, Wade EJ, Weihe E, Erdmann VA, et al. Silencing of vanilloid receptor TRPV1 by RNAi reduces neuropathic and visceral pain in vivo. Biochem Biophys Res Commun 2006;350:238–43
  • Cikler E, Ercan F, Cetinel S, Contuk G, Sener, G. The protective effects of melatonin against water avoidance stress-induced mast cell degranulation in dermis. Acta Histochem 2005;106:467–75
  • Fitzgerald M. Capsaicin and sensory neurones: a review. Pain 1983;15:109–30
  • Houston AJ, Wong JC, Ebenezer IS. A study on the involvement of GABAB receptor ligands in stress-induced antinociception in male mice. Meth Find Exp Clin Pharmacol 1997;19:167–71
  • Jänig W, Levine JD, Michaelis M. Interactions of sympathetic and primary afferent neurons following nerve injury and tissue trauma. Prog Brain Res 1996;113:161–84
  • Lafrance M, Roussy G, Belleville K, Maeno H, Beaudet N, Wada K, Sarret P. Involvement of NTS2 receptors in stress-induced analgesia. Neuroscience 2010;166:639–52
  • Lariviere WR, Chesler EJ, Li Z, Shang GW, Chen YN, Yu YQ, Lu ZM, et al. Correlations between edema and the immediate and prolonged painful consequences of inflammation: therapeutic implications? Sheng Li Xue Bao 2005;57:278–88
  • Lariviere WR, Melzack R. The bee venom test: a new tonic-pain test. Pain 1996;66:271–7
  • Lariviere WR, Melzack R. The bee venom test: comparisons with the formalin test with injection of different venoms. Pain 2000;84:111–12
  • Le Roy C, Laboureyras E, Gavello-Baudy S, Chateauraynaud J, Laulin JP, Simonnet G. Endogenous opioids released during non-nociceptive environmental stress induce latent pain sensitization via a NMDA-dependent process. J Pain 2011;12:1069–79
  • Li KC, Chen J. Differential roles of spinal protein kinases C and A in development of primary heat and mechanical hypersensitivity induced by subcutaneous bee venom chemical injury in the rat. Neurosignals 2003;12:292–301
  • Li KC, Zheng JH, Chen J. Involvement of spinal protein kinase C in induction and maintenance of both persistent spontaneous flinching reflex and contralateral heat hyperalgesia induced by subcutaneous bee venom in the conscious rat. Neurosci Lett 2000;285:103–6
  • Lin Q, Zou X, Fang L, Willis WD. Sympathetic modulation of acute cutaneous flare induced by intradermal injection of capsaicin in anesthetized rats. J Neurophysiol 2003;89:853–61
  • Machelska H. Targeting of opioid-producing leukocytes for pain control. Neuropeptides 2007;41:355–63
  • Peters EM, Kuhlmei A, Tobin DJ, Müller-Röver S, Klapp BF, Arck PC. Stress exposure modulates peptidergic innervation and degranulates mast cells in murine skin. Brain Behav Immun 2005;19:252–62
  • Porro CA, Carli G. Immobilization and restraint effects on pain reactions in animals. Pain 1988;32:289–307
  • Seo YJ, Kwon M-S, Shim E-J, Park S-H, Choi O-S, Suh H-W. Changes in pain behavior induced by formalin, substance P, glutamate and proinflammatory cytokines in immobilization-induced stress mouse model. Brain Res Bull 2006;71:279–86
  • Simone DA, Nolano M, Johnson T, Wendelschafer-Crabb G, Kennedy WR. Intradermal injection of capsaicin in humans produces degeneration and subsequent reinnervation of epidermal nerve fibers: correlation with sensory function. J Neurosci 1998;18:8947–59
  • Theoharides TC, Cochraned DE. Critical role of mast cells in inflammatory diseases and the effect of acute stress. J Neuroimmunol 2004;146:1–12
  • Wei H, Jyväsjärvi E, Niissalo S, Hukkanen M, Waris E, Konttinen YT, Pertovaara A. The influence of chemical sympathectomy on pain responsivity and alpha 2-adrenergic antinociception in neuropathic animals. Neuroscience 2002;114:655–68
  • Zimmermann M. Ethical guidelines for investigations of experimental pain in conscious animals. Pain 1983;16:109–10

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.