온담탕합총명탕(溫膽湯合聰明湯) 연수추출물과 초미세분말이 cytokine과 건망증 생쥐모델 기억력감퇴에 미치는 영향

The Effects of Ondam-tanghapChongmyung-tang(Wendantanghecongmingtang) Hot Water Extract & Ultra-fine Powder on Proinflammatory Cytokine of Microglia and Memory Deficit Model

  • 장영주 (대전대학교 한의과대학 신경정신과학교실) ;
  • 정인철 (대전대학교 한의과대학 신경정신과학교실) ;
  • 이상룡 (대전대학교 한의과대학 신경정신과학교실)
  • Jang, Young-Joo (Dept. of Neuropsychiatry, College of Oriental Medicine, Daejeon University) ;
  • Jung, In-Chul (Dept. of Neuropsychiatry, College of Oriental Medicine, Daejeon University) ;
  • Lee, Sang-Ryong (Dept. of Neuropsychiatry, College of Oriental Medicine, Daejeon University)
  • 발행 : 2009.03.30

초록

Objectives : This experiment was designed to investigate the effect of the ODTCMT hot water extract & ultra-fine Powder on Alzheimer's Disease Model Induced by 13A. Methods : The effects of the ODTCMT hot water extract on expression of IL-l${\beta}$, IL-6, TNF-${\alpha}$ in BV2 microglial cell line treated by lipopolysacchaide(LPS) were investigated. The effects of the ODTCMT hot water extract & ultra-fine powder on the behavior of the memory deficit mice induced by scopolamine were investigated. Results : 1. The ODTCMT hot water extract significantly suppressed the production of TNF-${\alpha}$, IL-6 and IL-l${\beta}$ in BV2 microglial cell line treated with LPS. 2. The ODTCMT hot water extract & ultra-fine powder groups showed significantly inhibitory effect on the scopolamine-induced impairment of memory in the experiment of Morris water maze. Conclusions : These results suggest that the ODTCMT hot water extract & ultra-fine powder may be effective for the prevention and treatment of Alzheimer's disease. Investigation into the clinical use of the ODTCMT hot water extract & ultra-fine powder for Alzheimer's disease is suggested for future research.

키워드

참고문헌

  1. 조추용, 최현자 역저. 치매 예방과 케어. 서울:창지사. 2002:49.
  2. Cacquevel M, Lebeurrier N, Cheenne S, Vivien D. Cytokines in neuroinflammation and Alzheimer's disease. Current Drug Targets. 2004;5(6):529-34. https://doi.org/10.2174/1389450043345308
  3. Kuhl DE, Koeppe RA, Minoshima S, Snyder SE, Ficaro EP, Foster NL, Frey KA , Kilbourn MR. In vivo mapping of cerebral acetylcholinesterase activity in aging and Alzheimer's disease. Neurology. 1999;52(4):69-9. https://doi.org/10.1212/WNL.52.4.691
  4. Mhatre M, Floyd RA, Hensley K. Oxidative stress and neuroinflammation in Alzheimer's disease and amyotrophic lateral sclerosis: common links and potential therapeutic targets. Journal of Alzheimer's disease. 2004;6(2):147-57.
  5. 안준익, 이용성. Beta-amyloid의 분자생물학. 한양의대학술지. 2001;21(1):11-6.
  6. 대한한방신경정신과학회편. 한방신경정신의학. 서울:집문당. 2005:311-6, 432-5, 451.
  7. 許浚. 東醫寶鑑. 서울:大星文化社. 1996:55-6, 98.
  8. 李尙仁 외. 漢藥臨床應用. 서울:成輔社. 1990:151-3, 308-13, 419-20, 426-8.
  9. 孫思邈. 千金要方. 서울:大星文化社. 1984:217.
  10. 李尙仁 외. 本草學. 서울:영림사. 1990:137, 303, 348, 351, 448, 467, 541-2.
  11. 康舜洙. 바른 方劑學. 서울:大星文化社. 1996:128.
  12. 李尙仁 외 編. 方劑學. 서울:永林社. 1990:528, 531-2.
  13. 李載熙. 圖說 韓方診療要方. 光州:醫學硏究社. 1987:538.
  14. 尹吉榮. 東醫臨床方劑學. 서울:明寶出版社. 1987:106.
  15. 陳輝 외. 實用中醫腦病學. 北京:學苑出版社. 1993:242-3, 791-7.
  16. 채종걸, 정인철, 이상룡. 山査肉이 CT-105 로 誘導된 Alzheimer's Disease 病態 모델 에 미치는 影響. 동의생리병리학회지. 2002;16(2):279-88.
  17. 박지운, 정인철, 이상룡. 聰明湯과 木槿皮 聰明湯이 CT105와 $\beta$A로 유도된 Alzheimer's Disease病態 모델에 미치는 영향. 동의신경정신과학회지. 2006;17(1):37-57.
  18. 김명진, 정인철, 이상룡. 木瓜가 CT-105로 誘導된 Alzheimer's Disease 病態 모델에 미치는 影響. 동의신경정신과학회지. 2005;16(1):97-118.
  19. 하수영, 정인철, 이상룡. 聰明湯과 山査聰 明湯이 Alzheimer's Disease 病態 모델에 미치는 影響. 동의신경정신과학회지. 2006;17(1):59-78.
  20. 정인철. 溫膽湯이 腦組織의 酸化作用에 미치는 影響. 대전대학교한의학연구소 논문집. 2005;14(1):129-40.
  21. 최현정, 방나영 송보완, 김남재, 류봉하. 한 약제형 선호도에 관한 설문조사. 경희의학. 2004;20(1):356-67.
  22. Shu ZH, Liu GF, Ma MH, Xu Y, Hu YF. Study on the superfine comminution of traditional Chinese medicine. Zhongguo Zhong Yao Za Zhi. 2004;29(9):823-7.
  23. Ebert U, Kirch W. Scopolamine model of dementia ; electroencephalogram findings and cognitive performance. European Journal of Clinical Investigation. 1998;28(11):944-9. https://doi.org/10.1046/j.1365-2362.1998.00393.x
  24. 黃度淵. 證脈.方藥合編. 서울:南山堂. 1990:423-4.
  25. Skehan P, Storeng R, Scudiero D, Monk A, McMahon J, Visca D, Warren JT, Kennedy S, Boyd MR. New colorimetric cytotoxicity assay for anticancer drug screening, Journal of the National Cancer Institute. 1990;82(13):1107-12. https://doi.org/10.1093/jnci/82.13.1107
  26. Small GW, Rabins PV, Barry PP, Buckholtz NS, DeKosky ST, Ferris SH, Finkel SI, Gwyther LP, Khachaturian ZS, Lebowitz BD, McRae TD, Morris JC, Oakley F, Schneider LS, Streim JE, Sunderland T, Teri LA, Tune LE. Diagnosis and treatment of Alzheimer disease and related disorders. JAMA. 1997;278(16):1363-71. https://doi.org/10.1001/jama.278.16.1363
  27. Hunot S, Dugas N, Faucheux B, Hartmann A, Tardieu M, Debre P, Agid Y, Dugas B, Hirsch EC. FcepsilonRII/CD23 is expressed in Parkinson's disease and induces, in vitro, production of nitric oxide and tumor necrosis factor-alpha in glial cells. The Journal of Neuroscience. 1999;19(9):3440-47.
  28. William K. summers. Tacrine(THA, Cognex${\circledR}$). Journal of Alzheimer's Disease. 2000;2(2):85-93.
  29. Kasa P, Papp H, Torok I. Donepezil dose-dependently inhibits acetylcholinesterase activity in various areas and in the presynaptic cholinergic and the postsynaptic cholinoceptive enzyme-positive structures in the human and rat brain. Neuroscience. 2000;101(1):89-100. https://doi.org/10.1016/S0306-4522(00)00335-3
  30. Spassov A, Getova DP, Dimitrova DS. P4.025 Study of ancholinesterase drugs galanthamine and donepezil on scopolamine-induced amnesia in rats. European Neuropsychopharmacology. 2004;14:333.
  31. Pyo H, Joe E, Jung S, Lee SH, Jou I. Gangliosides activate cultured rat brain microglia. J Biol Chem. 1999;274(49):34584-9. https://doi.org/10.1074/jbc.274.49.34584
  32. Simmons ML, Murphy S. Induction of nitric oxide synthase in glial cells. J Neurochem. 1992;59(3):897-905. https://doi.org/10.1111/j.1471-4159.1992.tb08328.x
  33. M. Oprica, E. Hjorth, S. Spulber, BO Popescu, M. Ankarcrona, B. Winblad, and M. Schultzberg. Studies on brain volume, Alzheimer-related proteins and cytokines in mice with chronic overexpression of IL-1 receptor antagonist. J Cell Mol Med. 2007;11(4):810-25. https://doi.org/10.1111/j.1582-4934.2007.00074.x
  34. Kim YS, Joh TH. Microglia, major player in the brain inflammation: their roles in the pathogenesis of Parkinson's disease. Exp Mol Med. 2006;38(4):333-47. https://doi.org/10.1038/emm.2006.40
  35. 陳士鐸. 石室秘錄. 北京:中國中醫藥出版社. 1991:125.
  36. 錢鏡湖. 辨證奇問全書. 台北:甘地出版社. 1990:222-5, 233-5.
  37. 洪元植. 精校黃帝內經素問. 서울:東洋醫學 硏究院. 1985:37, 124, 196, 229, 217-8, 229.
  38. 崔用德, 李光揆, 姜亨沅, 柳泳秀. 痴呆의 病理에 대한 東西醫學的 考察. 대한동의병리학회지. 1999;13(1):36-45.
  39. 임정화, 정인철, 이상룡. 聰明湯과 巴戟天 聰明湯 열수추출물, 초미세분말제형이 microglia 및 기억력 감퇴 병태모델에 미치는 영향. 동의생리병리학회지. 2006;20(4):997-1008.
  40. 최강욱, 이상룡, 정인철. 聰明湯과 木槿皮 聰明湯 열수추출물, 초미세분말제형이 microglia 및 기억력 감퇴 병태모델에 미치는 영향, 동의생리병리학회지. 2006;20(5):1200-10.
  41. 서승호, 정인철, 이상룡. 聰明湯和山査聰明 湯熱水提取物, 超微細粉末劑型對microglia及 記憶力減退病態模型的影響. 第5會天津國際 中醫藥學術硏討會議論文集, 2006:325-7.
  42. 中山醫學院 中醫方劑選講 編寫組 主編. 中醫方劑選講. 廣東:廣東科技出版社. 1983:236-7.
  43. 上海中醫學院 編. 方劑學. 上海:商務印書館 香港分館. 1975:205.
  44. 金在吉. 臨床漢方藥物療法. 서울:南山堂. 1987:474.
  45. oschwitzer J, Muller RH. New method for the effective production of ultrafine drug nanocrystals. J Nanosci Nanotechnol 2006;6(9-10):3145-53. https://doi.org/10.1166/jnn.2006.480
  46. Zhong Xi Yi Jie He Xue Bao. Effect of ultra-fine powder technique on dissolution rates of andrographolide and dehydroandrographolide in Andrographis paniculata. Journal of Chinese Intergrative Medicine. 2004;2(6):456-8. https://doi.org/10.3736/jcim20040618
  47. Song LL, Du GJ, Zhang DL. Study on pharmacology of ultra-fine particles compound Rehmannia. Zhongguo Zhong Yao Za Zhi. 2002;27(6):436-9.
  48. 김현수, 이상룡, 정인철. 세심탕 열수추출물, 초미세분말제형이 Alzheimer's Disease 병태 모델에 미치는 영향. 동의생리병리학회지. 2007;21(3):688-99.
  49. Yamazaki M, Matsuoka N, Kuratani K, Ohkubo Y, Yamaguchi I. FR121196, a potential antidementia drug, ameliorates the impaired memory of rat in the Morris water maze. J Phamacol Exp Ther. 1995;272(1):256-63.