DOI QR코드

DOI QR Code

Anti-inflammatory Effects of the Water Extract of Phyllostachys Folium via NF-κB Inhibition

죽엽 열수추출물의 염증억제 효과

  • Son, Jin Won (College of Korean Medicine, Daegu Haany University) ;
  • Park, Sang Mi (College of Korean Medicine, Daegu Haany University) ;
  • Jung, Ji Yun (College of Korean Medicine, Daegu Haany University) ;
  • Hwangbo, Min (College of Korean Medicine, Daegu Haany University) ;
  • Cho, Il Je (College of Korean Medicine, Daegu Haany University) ;
  • Jung, Tae Young (College of Korean Medicine, Daegu Haany University) ;
  • Park, Chung A (College of Korean Medicine, Daegu Haany University) ;
  • Kim, Sang Chan (College of Korean Medicine, Daegu Haany University) ;
  • Jee, Seon Young (College of Korean Medicine, Daegu Haany University)
  • 손진원 (대구한의대학교 한의과대학) ;
  • 박상미 (대구한의대학교 한의과대학) ;
  • 정지윤 (대구한의대학교 한의과대학) ;
  • 황보민 (대구한의대학교 한의과대학) ;
  • 조일제 (대구한의대학교 한의과대학) ;
  • 정태영 (대구한의대학교 한의과대학) ;
  • 박정아 (대구한의대학교 한의과대학) ;
  • 김상찬 (대구한의대학교 한의과대학) ;
  • 지선영 (대구한의대학교 한의과대학)
  • Received : 2016.09.29
  • Accepted : 2016.11.08
  • Published : 2016.11.30

Abstract

Objectives : Phyllostachys Folium is leaves of Phyllostachys nigra var. henesis $S_{TAPF}$. In the East Asian traditional medicine, the herb has been used to treat nasal bleeding, dysuria, epilepsy and etc. The present study was conducted to evaluate the anti-inflammatory effects of the Phyllostachys Folium water extracts (PFE) in vitro and in vivo model. Methods : Cell viability was measured by MTT assay after the treatment of PFE and NO production was monitored by measuring the nitrite content in culture medium. iNOS, COX-2, $I{\kappa}B$, $p-I{\kappa}B{\alpha}$ amd $NF{\kappa}B$ were detected by immunoblot analysis, and levels of cytokine were analyzed by sandwich ELISA kit. Anti-edema effect of PFE was determined in the carrageenan-induced paw edema model in rats. Results : LPS increased NO and cytokines levels compared with control, these increases were attenuated by PFE. In addition, LPS-induced pro-inflammatory proteins such as iNOS, COX-2 were down regulated by PFE. These anti-inflammatory effect of PFE results from inhibition of phosphorylation of $I{\kappa}B$ and translocation of $NF-{\kappa}B$. Conclusion : These results show that PFE has some anti-inflammatory effects which might play a role in gram-negative bacterial infection inflammation and $NF{\kappa}B$ activated diseases.

Keywords

References

  1. Kim JH, Joo YS. A Literature Study on the Origin of Herba Lopharheri and Folium Phyllostachys. K.O.M.S. 1996:17(2):5-16.
  2. Lee J, Seo B, Park J, Roh S. Effects of water extracts from Phyllostachys Folium on hyperlipidemia and liver damage induced by alcohol. Kor. J. Herbology. 2011:26(3):31-6. https://doi.org/10.6116/KJH.2011.26.3.031
  3. Professors of Herbology. Herbology. Seoul. Younglimsa. 1992:166.
  4. Yoon KD, Kim Y, Huh H. The flavone glycosides of Sasa borealis. Kor. J. Pharmacogn. 2000:31(2): 224-7.
  5. Shin MK, Han SH, Kim KS, Kim YH, Jung WH, Yoon HS, Jung YH. Antihyperlipidemic Effects of Extract from Phyllostachys Folium in Cholesterol-Induced Hyperlipidemia Rats. The East Asian Society of Dietary Life 2000 Spring Conference. 2000:132.
  6. Kwon MH. Effects of Antioxidant Phytochemicals on Stress Protein Expression in Cultured Animal Cell Line. Korea Research Foundation. 2004.
  7. Kim SY, Ryu JH, Jang CG. Development of food and medicinal substances possessing tranquilizing effects from natural resources. Korea Science and Engineering Foundation. 2006.
  8. Do J, Kim K, Jo J, Kim Y, Kim B, Kim H, Lim S, Lee S. Antimicrobial, Antihypertensive and Anticancer Activities of Medicinal Herbs. Korean J. Food Sci. Technol. 2005:37(2):206-13.
  9. Song J, Park S, Choi J, Kim J. Effects of Phyllostachyos Folium (PF) on solid tumor in mice. The Journal of Korean Oriental Medical Ophthalmology & Otolaryngology & Dermatology. 2009:22(2):39-49.
  10. Kim N, Lee S, Kwon C, Hong N. Antilipoperoxidant Effects of Leaves of Phyllostachys bambusoides S. et Z. Kor. J. Pharmacogn. 1995:26(4):368-76.
  11. Lee D, Park S, Hwangbo M, Jung T, Kim S, Jee S. Roots of Daucus carota sativa abrogates acute phase of Inflammation by the Inhibition of NO and Pro-Inflammatory Cytokine Production. The Journal of Korean Oriental Medical Ophthalmology & Otolaryngology & Dermatology. 2013:26:45-57. https://doi.org/10.6114/jkood.2013.26.2.045
  12. Higuchi M, Higashi N, Taki H, Osawa T. Cytolytic mechanism of activated macrophages. Tumor necrosis factor and L-arginine-dependent mechanism acts as synergistically as the major cytolytic mechanism of activated macrophages. J Immunol. 1990:144:1425-31.
  13. Kook Y. Effect of Hwangryunhaedok-tang on Blood Pressure and Renal Functions in Spontaneously Hypertensive Rats. The Korean Journal of Oriental Medical Prescription. 2002:10(1): 113-29.
  14. Di Rosa M. Review: Biological properties of carrageenan. J Pharm Pharmacol. 1972:24:89-102. https://doi.org/10.1111/j.2042-7158.1972.tb08940.x
  15. Nicklin S, Miller K. Effect of orally administered foodgrade carrageenans on antibody-mediated and cellmediated immunity in the inbred rat. Food Chem Toxicol. 1984:22:615-21. https://doi.org/10.1016/0278-6915(84)90270-9
  16. Koskenkorva-Frank TS, Weiss G, Koppenol WH, Burckhardt S. The complex interplay of iron metabolism, reactive oxygen species, and reactive nitrogen species: Insights into the potential of various iron therapies to induce oxidative and nitrosative stress. Free Radic Biol Med. 2013:65:1174-94. https://doi.org/10.1016/j.freeradbiomed.2013.09.001
  17. Bove PF, van der Vliet A. Nitric oxide and reactive nitrogen species in airway epithelial signaling and inflammation. Free Radic Biol Med. 2006:41(4):515-27. https://doi.org/10.1016/j.freeradbiomed.2006.05.011
  18. Feng C, Chen L, Li W, Elmore BO, Fan W, Sun X. Dissecting regulation mechanism of the FMN to heme interdomain electron transfer in nitric oxide synthases. J Inorg Biochem. 2014:130:130-40. https://doi.org/10.1016/j.jinorgbio.2013.09.005
  19. Chiou WF, Chou CJ, Chen CF. Camptothecin suppresses nitric oxide biosynthesis in RAW 264.7 macrophages. Life Sci. 2001:69:625-35. https://doi.org/10.1016/S0024-3205(01)01154-7
  20. Kawamata H, Ochiai H, Mantani N, Terasawa K. Enhanced expression of inducible nitric oxide synthase by Juzen-taiho-to in LPS-activated RAW 264.7 cells, a murine macrophage cell line. Am J Chin Med. 2000:28:217-26. https://doi.org/10.1142/S0192415X0000026X
  21. Lee BG, Kim SH, Zee OP, Lee KR, Lee HY, Han JW, Lee HW. Suppression of inducible nitric oxide synthase expression in RAW 264.7 macrophages by two-carboline alkaloids extracted from Melia azedarach. Eur J Pharmacol. 2000:406:301-9. https://doi.org/10.1016/S0014-2999(00)00680-4
  22. Yang C. Gastrointestinal disorders associated with non-steroidal anti-inflammatory drugs(NSAIDs). Dongkook Medicine. 2003:10(2):190-9.
  23. Lee AK, Sung SH, Kim YC, Kim SG. Inhibition of lipopolysaccharide-inducible nitric oxide synthase, TNF-${\alpha}$ and COX-2 expression by sauchinone effects on I-${\kappa}$B${\alpha}$ phosphorylation, C/EBP and AP-1 activation. British journal of pharmacology. 2003:139:11-20. https://doi.org/10.1038/sj.bjp.0705231
  24. Delgado AV, McManus AT, Chambers JP. Production of tumor necrosis factor-alpha, interleukin 1-beta, interleukin 2, and interleukin 6 by rat leukocyte subpopulations after exposure to substance P. Neuropeptides. 2003:37(6):355-61. https://doi.org/10.1016/j.npep.2003.09.005
  25. Park HJ, Yoon SW, Yoon JW, Yoon HJ, Ko WS. Inhibitory Effect of Omisodok-eum on the Secretion of NO in LPS-stimulated Mouse Peritoneal Macrophages. Kor. J. Oriental Physiology & Pathology. 2002:16(5):921-7.
  26. Chen F, Castranova V, Shi X. New insight into the role of nuclear factor-kappaB in cell growth regulation. Am J Pathol, 2001:159(2):387-97. https://doi.org/10.1016/S0002-9440(10)61708-7