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Effects of Mixture of Citri Peticulatae Viride Pericarpium and Lycii Radicis Cortex on the Change of HPA-Axis and Catecholamic System in the Forced Swimming Test

청피(靑皮)와 지골피(地骨皮) 복합제(複合劑)가 강제수영부하실험에서 CRF, c-Fos와 TH의 변화에 미치는 영향

  • Park, Soo-Hyun (Formulae Pharmacology Dept. School of Oriental Medical School, Kyungwon University) ;
  • Lee, Tae-Hee (Formulae Pharmacology Dept. School of Oriental Medical School, Kyungwon University)
  • 박수현 (경원대학교 한의과대학 방제학교실) ;
  • 이태희 (경원대학교 한의과대학 방제학교실)
  • Received : 2010.05.10
  • Accepted : 2010.06.22
  • Published : 2010.06.30

Abstract

Objectives : In this study the antidepressant effects of mixture of Citri Peticulatae Viride Pericarpium and Lycii Radicis Cortex on the change of HPA-Axis and Catecholamic system was investigated Methods : The forced swimming test(FST) was performed. The expression of corticotropin-releasing factor(CRF), c-Fos in the paraventricular nucleus(PVN), and tyrosine hydroxylase(TH) in the ventral tegmental area(VTA) and locus coeruleus(LC) was measured with immunohistochemical method and the concentration of seum adrenocorticotropic hormone(ACTH) was measured with ELISA method. And the experimental groups were divided into the extraction after mixing(A) and mixture after extraction(B). The effects of both group were compared. Results : The duration of immobility in the forced swimming test was significantly decreased in the A400 group(P<0.01). The expression of CRF in PVN were significantly reduced in the A100, A400, B100, B400groups(P<0.001). but the expression of c-fos in PVN weren't reduced in all groups. And the concentration of ACTH in Plasma were significantly reduced in the A 100 group(P<0.01). The expression of TH in LC were significantly reduced in the A 400, B 100 and B400 groups(P<0.05~P<0.01). Conclusion : Mixture of Citri Peticulatae Viride Pericarpium and Lycii Radicis Cortex has antidepressant effects. But the difference between mixing and extracting methods was not shown.

Keywords

References

  1. 대한신경정신의학회. 신경정신과학. 서울:하나의학사. 1998:361-386.
  2. Millan MJ. Multi-target strategies for the improved treatment of depressive states: Conceptual foundations and neuronal substrates, drug discovery and therapeutic application. Pharmacology & Therapeutics. 2006; 110:135-370. https://doi.org/10.1016/j.pharmthera.2005.11.006
  3. Sapolsky, R.M. L.M. Romero. and A.U. Munck. How do glucocorticoids influence stress responses? Integrating permissive, suppressive, stimulatory, and preparative actions. Endocr Rev, 2000;21(1):55-89. https://doi.org/10.1210/er.21.1.55
  4. Korte, S.M. et al. The Darwinian concept of stress: benefits of allostasis and costs of allostatic load and the trade-offs in health and disease. Neurosci Biobehav Rev, 2005;29(1): 33-38.
  5. de Kloet, E.R. M. Joels. and F. Holsboer. Stress and the brain: from adaptation to disease. Nat Rev Neurosci. 2005;6(6): 463-475. https://doi.org/10.1038/nrn1683
  6. 이새봄, 곽용도, 안홍을, 박상기. 우울증과 항우울제의 분자신경생물학. Molecular and Cellular Biology News. 2007;19(4):30.
  7. 조홍건 편저. 실용한방정신의학. 서울:유진문화사. 2002:184-190.
  8. Oliver, G. and Schaefer, E.A.. The physiological effects of the extracts of the suprarenal capsules, J. Physiol.18. 1985; 230-238.
  9. 전국한의과대학간계내과학교실. 간계내과학. 서울: 동양의학연구원. 1989: 30-38, 44-51.
  10. 대전대학교한의과대학병리학교실. 동의병리학. 서울. 1991:8-9.
  11. 조용국, 이태희. 시호억간탕이 스트레스로 인한 기억저하와 우울행동에 미치는 영향. 대한한의학방제학회지. 2007;15(2):147-160.
  12. 신길구. 신씨본초학. 서울:고문사. 1987: 497-498.
  13. 전국한의과대학 본초학교수 공편저. 본초학. 서울:영림사. 1994:237-238.
  14. 권용욱, 이태희. 청피가 강제수영부하에 따른 우울행동에 미치는 영향. 대한본초학회지. 2008; 23(4):59-70.
  15. 고동균, 이태희. 지골피가 스트레스로 인한 기억저하와 우울행동에 미치는 영향. 대한본초학회지. 2007;22:137-146.
  16. 박수현, 이태희. 청피가 FST에서 TH와 ACTH변화에 미치는 영향. 대한본초학회지. 2009: 24(1):141-150.
  17. 신재용 편저. 방약합편 해설. 서울:성보사. 1988:321.
  18. Porsolt RD, Bertin A, Jalfre M. Behavioral despair in rats : A new model sensitive to antidepressant treatments. European Journal of Pharmacology. 1978;47(4): 379-391. https://doi.org/10.1016/0014-2999(78)90118-8
  19. Paxinos G, Watson C. The Rat Brain in Stereotaxic Coordinates. Academic Press. New York. 1986.
  20. Arthur H Swiergiel, Yueping Zhou, Adrian J Dunn. Effects of chronic footshock, restraint and corticotropinreleasing factor on freezing, ultrasonic vocalization and forced swim behavior in rats. Behaviroal Brain Research. 2007;183:178-187. https://doi.org/10.1016/j.bbr.2007.06.006
  21. Malgorzata Lehner, Ewa Taracha, Anna Skorzewska, Danuta Turzynska. Expression of c-fos and CRF in the brains of rats differing in the strength of a fear response. Behavioral Brain Research. 2008;188:154-167. https://doi.org/10.1016/j.bbr.2007.10.033
  22. G. Garcia P., Tagliaferro A., Ferri A.M., Evangelista de Duffard, R. Duffard, A. Brusco. Study of Tyrosine Hydroxylase Immunoreactive Neurons in Neonate Rats Lactationally Exposed to 2, 4-Dichlorophenoxyacetic Acid. Neurotoxicology. 2004;25:951-957. https://doi.org/10.1016/j.neuro.2004.05.004
  23. 송병기. 한방부인과학. 서울:행림출판. 1986:182-193.
  24. 이천. 의학입문. 서울:한성사. 1994:409, 534.
  25. Tafet GE, Bernardini R. Psychoneuroendocrinological links between chronic stress and depression. Progress in Neuro-Psychopharmacology & Biological Psychiatry. 2003;27:893-903. https://doi.org/10.1016/S0278-5846(03)00162-3
  26. Chrousos GP, Loriaux DL, Gold PW. Mechanisms of physical and emotional stress. Plenum, New York. 1988;245.
  27. Chrousos GP. Gold PW. The concepts of stress and stress system disorders. JAMA. 1992;267:1244-1252. https://doi.org/10.1001/jama.267.9.1244
  28. Vazquez DM. Stress and the Developing Limbic-Hypothalamic-Adrenal axis. Psychoneuroendocrinnology. 1998;23(7):663-700. https://doi.org/10.1016/S0306-4530(98)00029-8
  29. 29. Herman JP, Cullinan WE. Neurocircuitry of stress: central control of the hypothalamo-pituitary-adrenocorticoal axis. Trends Neurosci. 1997; 20(2):78-84. https://doi.org/10.1016/S0166-2236(96)10069-2
  30. Tsigos C, Chrousos GP. Hypothalamic-pituitary-adrenal axis, neuroendocrine factors and stress. Journal of Psychosomatic Research. 2002 ;53:865-871. https://doi.org/10.1016/S0022-3999(02)00429-4
  31. Nestler EJ, McMahon A, Sabban EL, Tallman JF, Duman RS. Chronic antidepressant administration decreases the expression of tyrosine hydroxylase in the rat locus coeruleus. Proc Natl Acad Sci USA. 1990; 87:7522-7526. https://doi.org/10.1073/pnas.87.19.7522
  32. Doucet JP, Squinto SP, Bazan NG. Fos-jun and the primary genomic response in the nervous system. Mol Neurobiol. 1990; 4:27-55. https://doi.org/10.1007/BF02935584
  33. Muchimapura S, Fulford AJ, Mason R, Marsden CA. Isolation rearing in the rat disrupts the hippocampal response to stress. Neuroscience 2002; 112:697-705. https://doi.org/10.1016/S0306-4522(02)00107-0
  34. Bullitt E. Expression of c-fos-like protein as a marker for neuronal activity following noxious stimulation in the rat. J Comp Neurol. 1990; 296:517-530. https://doi.org/10.1002/cne.902960402
  35. Melia KR, Ryabinin AE, Schroeder R, Bloom FE, Wilson MC. Induction and habituation of immediate early gene expression in rat brain by acute and repeated restraint stress. J. Neurosci. 1994;14:5929-5938.
  36. Beitner-Johnson D, Guitart X, Nesteler EJ. Neurofilament proteins and the mesolimbic dopamine system : common regulation by chronic morphine and chronic cocaine in the rat ventral tegmental area. J. Neurosci. 1992; 12(6): 2165-2176.
  37. Bowden C. Reduced dopamine turnover in the basal ganglia of depression suicides. Brain Res, 1997;769(1):135-140. https://doi.org/10.1016/S0006-8993(97)00692-6
  38. 38. Burn DJ. Depression in parkinson's disease. European Journal of Neurology. 2002;9(3):44-54. https://doi.org/10.1046/j.1468-1331.9.s3.6.x
  39. Meng-Yang Zhu, Violetta Klimek, Ginny E. Dilley, John W. Haycock, Craig Stockmeier, James C. Overholser, Herbert Y. Meltzer, Gregory A. Ordway. Elevated levels of tyrosine hydroxylase in the locus coeruleus in major depression, Biological Psychiatry. 1999 ; 46(9):1275-1286. https://doi.org/10.1016/S0006-3223(99)00135-3
  40. Tsigos C, Chrousos GP. Hypothalamic-pituitary-adrenal axis, neuroendocrine factors and stress. Journal of psychosomatic Research. 2002;53:865-871. https://doi.org/10.1016/S0022-3999(02)00429-4

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  1. 시호(柴胡)와 지골피(地骨皮) 합제(合劑)가 강제수영부하실험에서 HPA Axis와 카테콜라민 시스템에 미치는 영향 vol.19, pp.1, 2010, https://doi.org/10.14374/hfs.2011.19.1.161