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The Effects of Pulsatilla Koreana NAKAI Pharmacopuncture Therapy on the Chunchu (ST25) for Dextran Sulfate Sodium-Induced Colitis in Mice

  • Yang, Tae Jun (Department of Acupuncture & Moxibustion Medicine, College of Oriental Medicine, Dongshin University) ;
  • Jeong, Sang Jun (Department of Acupuncture & Moxibustion Medicine, College of Oriental Medicine, Dongshin University) ;
  • Youn, Dae Hwan (Department of Meridian & Acupoint, College of Oriental Medicine, Dongshin University) ;
  • Wei, Tung Shuen (Department of Acupuncture & Moxibustion Medicine, College of Oriental Medicine, Dongshin University)
  • 투고 : 2018.01.05
  • 심사 : 2018.02.08
  • 발행 : 2018.02.28

초록

Background: This research was performed to investigate the effects of Pulsatilla Koreana NAKAI pharmacopuncture (PPA) therapy on intestinal disease in rats with dextran sulfate sodium (DSS)-induced colitis. Methods: The subjects were divided into five groups : A control group, saline group, pharmacopuncture group PPA1 ($0.2mg/1kg/40{\mu}{\ell}$), pharmacopuncture group PPA2 ($0.5mg/1kg/40{\mu}{\ell}$), and pharmacopuncture group PPA 3($1mg/1kg/40{\mu}{\ell}$). The experimental model of colitis was induced by infection of dextran sulfate sodium (DSS) for eighteen days. After colitis was induced, PPA therapy was practiced on the Chunchu (ST25) once every two days for a total six times. Thereafter Disease Activity Index (DAI), colon length, damage to the colonic mucosa, body weight, IL-6, IL-10, $IL-1{\beta}$, $IFN-{\gamma}$, $TNF-{\alpha}$, $TGF-{\beta}1$, IL-23 and IL-17 were measured. Results: The results were as follows. 1. DAI was significantly decreased in the PPA groups. 2. Colon length was significantly increased in the PPA groups. 3. Damage of colonic mucosa was observed less in the PPA groups. 4. Body weight was significantly increased in the saline group and the PPA groups. 5. The PPA2 group showed a significant decrease in the intensity of IL-6, $IL-1{\beta}$, $IFN-{\gamma}$ and $TNF-{\alpha}$ levels and the mean of IL-23. 6. The PPA3 group showed a significant increase in the intensity of IL-10 and $TGF-{\beta}1$ levels. 7. No significant differences were shown in the mean of IL-17. Conclusion: These results suggest that PPA therapy on Chunchu (ST25) can be used as an effective treatment for inflammatory bowel disease.

키워드

참고문헌

  1. Yang DH, Yang SK. Trends in the incidence of ulcerative colitis in Korea. Korean J Intern Med 2009;76:1226-1329. [In Korean]
  2. Kaser A, Zeissig S, Blumberg RS. Inflammatory Bowel Disease. Annu Rev Immunol 2010;28:573-621. https://doi.org/10.1146/annurev-immunol-030409-101225
  3. Geller AJ, Das KM. Etiology of inflammatory bowel disease. Curr Opin Gastroenterol 1990;6:561.
  4. Lennard-Jones JE, MISIEWICZ JJ, CONNELL AM, BARON JH, JONES FA. Prednisone as maintenance treatment for ulcerative colitis in remission. Lancet 1965;1:188-189.
  5. Song YG, Ryu BH, Yoon SW. The Effects of Soyumjungjang-tang on DSSInduced Ulcerative Colitis in Mouse. Korean J Orient Int Med 2008;29:385-400. [In Korean]
  6. Lee SH, Choi HM, Lim SW. Effects of Jiyutang on DSS-induced Colitis of the Mouse. J Korean Med 2007;28:187-197. [In Korean]
  7. An JH, Choi EY, Lee SH, Park IS, Lim SW. Effects of Hwangryunhaedoktang on DSS-induced Colitis. J Korean Med 2006;27:182-195. [In Korean]
  8. Kim SY, Park JW, Ryu BH. Effects of Auklandia Lappa on Dextran Sulfate Sodium-Induced Murine Colitis. Korean J Orient Int Med 2013;34:134-146. [In Korean]
  9. Kim ES, Shin MK, Kim TR, Shin MH, Lee YS. Effect of Ohmae-hwan and Mume Fructus on DSS-Induced Inflammatory Bowel Disease in a Mice Model System. Korean J Orient Int Med 2015;36:284-296. [In Korean]
  10. Myung NY. The inhibitory effect of Orostachys japonicus on dextran sulfate sodium-induced colitis in mice Kor J Herbology 2014;29:29-34. [In Korean]
  11. Choi DH, Kim WI, Kim MR, Youn DH, Na CS. Laser Acupuncture Treatment on the Five Transport Points of the Spleen Meridian in Dextran-Sulfate-Sodium-Induced-Colitis in Rats. J Acupunct Res 2014;31:56-65. [In Korean]
  12. Yang TJ, Kim KO, Kim KS, Park SY, Yang SJ, Choi CW, Wei TS. The Effects of Sophorae Radix Pharmacopuncture Therapy on the Chunchu(ST25) for DSS-induced Colitis in Rats. J Acupunct Res 2015;32:77-85. [In Korean]
  13. Lee DH. Intractable disease and Pharmacopuncture. JoPharmacopuncure 2003;6:9-11. [In Korean]
  14. Kim JR. Diseases of Digestive System. 2nd ed. Seoul(Korea): Ilchokak; 2005. p.277-280.
  15. Shin YT. Steps to Internal Medicine6. Seoul(Korea): Book Publishing Jungdam; 2002. 96 p.
  16. Song IS. Inflammatory bowel disease in Korean. Korean J of Med 1999;57:661-674. [In Korean]
  17. Danese S, Sans M, Fiocchi C. Inflammatory bowel disease : the role of environmental factors. Autoimmun Rev 2004;3:394-400. https://doi.org/10.1016/j.autrev.2004.03.002
  18. Kumar V, Robbins, Stanley L. ROBBINS Basic Pathology. 8th ed. Seoul(Korea): E-public; 2009. p.47-58, 613-616.
  19. The Korean Society of Neurogastroenterology and Motility. Irritable Bowel Syndrome. Seoul(Korea): The medbook co.; 2011. p.24, 88-96, 174-241.
  20. Glickman RM, Song IS Translation. Harrison's Internal Medicine Part Compilation Committee. Inflammatory Bowel Disease : Ulcerative colitis & Crohn's disease in : Harrison's Principles Intern Med. 13th ed. Seoul(Korea): Book Publishing Jungdam; 1997. p.1268-1281, 1507-1523.
  21. Jeen YT, Kim JH. Special review-ulcerative colitis : advances in ulcerative colitis therapy. J Korean Med 2009;76:654-660. [In Korean]
  22. Heo J. Donguibogam. Seoul(Korea): Beobin; 2011. p.391-402.
  23. Jiang YQ. Integrative Medicine Subcommittee to study. Beijing(China): Beijing Publishing House; 1997. p.277-287.
  24. Do JW. Effects of Rhizoma Coptidis Herbal Acupuncture applied to HapGok (LI_4) on TNBS-induced Colitis in rats. J Acupunct Res 2004;21:95-110. [In Korean]
  25. Kim JS. Effects of ginseng radix herbal acupuncture applied to HapGok($LI_4$) on TNBS-induced colitis in rats[dissertation]. Iksan (Korea): Wonkwang University; 2003. [In Korean]
  26. Byun GW, Lim YS, Koo ST, Kim JH, Kim KS, Son IC. Artemisiae argyi herbal acupuncture of Hapgok (LI4) ameliorates TNBS-induced colitis in rats. Artemisiae argyi herbal acupuncture of Hapgok (LI4) ameliorates TNBS-induced colitis in rats. J Acupunct Res 2007;24:79-94. [In Korean]
  27. Lee JA. Effects of Doche-tang on Colonic Mucosal Ulcer induced by DSS in Mice. Korean J Orient Int Med 2008;29:752-764. [In Korean]
  28. Park SK. The Anticolitic Effect of Bokijeongjang-tang in Mice Treated with DSS-induced Ulcerative Colitis[dissertation]. Seoul (Korea): Kyunghee University; 2008. [In Korean]
  29. Jung JW, Oh SR, Ahn EM, Yang EJ, Kim SJ. The beneficial effect of Adenophorae Radix on DSS-induced colitis in Mice. J Exp Biomed Sci 2013;19:188-194.
  30. Lee SH, Lim BO, Choue RW. Immunoregulatory effects of water extracts of Scutellariae Radix in DSS-Induced inflammatory bowel disease animal Model. J Nutr Health 2004;37:431-439. [In Korean]
  31. Kim HS, Berstad A. Experimental colitis in animal models. Scand J Gastroenterol 1992;27:529-537. https://doi.org/10.3109/00365529209000116
  32. Cooper HS, Murthy SN, Shah RS, Sedergran DJ. Clinicopathologic study of dextran sulfate sodium experimental murine colitis. Lab invest 1993;69:238-249.
  33. Kang BS. Herbology. Seoul (Korea): Yonglimsa; 2000. p.218-219.
  34. Park SJ, Song HJ. Anti-inflammatory effect of extract of Pulsatilla koreana NAKAI in LPS-stimulated Murine peritoneal macrophage. Kor J Herbology 2007;22:111-117. [In Korean]
  35. Cho HJ, Yun HJ, Lee HS, Park SD. Anti-oxidative effects of fractionated Pulsatilla koreana NAKAI extracts. Kor J Herbology 2010;25:99-106. [In Korean]
  36. Korean Acupuncture & Moxibustion Medicine Society. The acupuncture and moxibustion medicine 2nd ed. Gyeonggi(Korea): Jipmoondang; 2008. p.56-57, 138, 493.
  37. Murthy SN, Cooper HS, Shim H, Shah RS, Ibrahim SA, Sedergran DJ. Treatment of dextran sulfate sodium-induced murine colitis by intracolonic cyclosporin. Dig Dis Sci 1993;38:1722-1734.
  38. Lee SH, Park KM, Cho SH, Youn DH, Yang SJ. (The)Effect of Hwangnyeonhaedok-tang Pharmacopuncture at Chunchu(ST25) in Rats with Dextran Sulfate Sodium(DSS)-Induced Colitis. J Korean Obstet Gynecol 2016;29:1-13. [In Korean]
  39. Rogler G, Andus T. Cytokines in inflammatory bowel disease. World J Surg 1998;22:382-389.
  40. Hanada T, Yoshimura A. Regulation of cytokine signaling and inflammation. Cytokine Growth Factor Rev 2002;3:413-421.
  41. Jeong TH, Kim JC, Kim MG. Latest Immunology Lecture. Taegu (Korea): Publich of Kyungpook National University; 1996. p.211-225.
  42. Bosani M, Ardizzone S, Porro GB. Biologic targeting in the treatment of inflammatory bowel disease. Biologics 2009;3:77-97.
  43. Sanchez-Munoz F, Dominguez-Lopez A, Yamamoto-Furusho JK. Role of cytokines in inflammatory bowel disease. World J Gastroenterol 2008;14:4280-4288. https://doi.org/10.3748/wjg.14.4280
  44. Monteleone G, Pallone F, MacDonald TT. Emerging immunological targets in inflammatory bowel disease. Current Opinion in Pharmacology 2011;11 :1-6. https://doi.org/10.1016/j.coph.2011.03.001
  45. Fantini MC, Rizzo A, Fina D, Caruso R, Becker C, Neurath MF, et al. IL-21 regulates experimental colitis by modulating the balance between T (reg) and Th17 cells. Eur J Immunol 2007;37:3155-3163. https://doi.org/10.1002/eji.200737766
  46. Cho ML, Heo YJ, Oh HJ, Kang CM, Lee SY, Hong YS et al. IL-23 P19 Expression Induced by IL-17 and IL-$1{\beta}$ in Rheumatoid Arthritis Synovial Mononuclear Cells. Immune Network 2008;8:29-37. [In Korean] https://doi.org/10.4110/in.2008.8.1.29