소종조비순기탕(消腫調脾順氣湯)이 Cisplatin으로 유발(誘發)된 흰쥐의 급성신부전(急性腎不全)에 미치는 영향

Effects of Sojongchobisunki-tang on Cisplatin-induced Rat Acute Renal Failure

  • 윤경민 (대구한의대학교 부속한방병원 신계내과학교실) ;
  • 강석봉 (대구한의대학교 부속한방병원 신계내과학교실)
  • Yoon, Gyeong-Min (Dept. of Oriental Internal Medicine, Graduate School, Daegu Haany University) ;
  • Kang, Seok-Bong (Dept. of Oriental Internal Medicine, Graduate School, Daegu Haany University)
  • 발행 : 2011.06.30

초록

Objectives : The object of this study was to observe the nephroprotective effects of Sojongchobisunki-tang (SCST), which has traditionally been used as Korean medicine for treating various renal diseases, on cisplatin-induced rat acute renal failure. Methods : Three different dosages of SCST were orally administered once a day for 23 days before cisplatin treatment (5 mg/kg, single intraperitoneally administered) and 5 days after cisplatin treatment (once a day for 28 days). 6 groups, of 8 rats per group were used in the present study after 7 days of acclimatization. Changes of the body weight, kidney weight, serum BUN and creatinine levels were observed, as well as changes of the kidney MDA and GSH contents. The results were compared with captopril 100 mg/kg of which the effects on cisplatin-induced acute renal failures are already confirmed. Results : Acute renal failure induced by cisplatin were induced by oxidative stress and related lipid peroxidation in the present study. However, these acute renal failures and inhibition of antioxidant effects induced by cisplatin were dose-dependently reduced by treatment at all three different dosages of SCST extracts. Conclusions : This study suggests that SCST extracts showed favorable effects on the cisplatin-induced rat ARF.

키워드

참고문헌

  1. Shintani F. SIM 내과학 5권. 서울: 정담; 2005, p. 61-6.
  2. Braunwald E, Fauci AS, Kasper DL, Hauser SL, Longo DL, Jameson JL. Harrison's Principles of Internal Medicine. 15th ed. 서울: MIP; 2003, p. 1589-98.
  3. Anderson RJ. Prevention and management of acute renal failure. Hosp Prac 1993;28:61-75.
  4. 龔廷賢 選, 陳柱杓 編譯. 對譯萬病回春. 서울: 法人文化社; 2007, p. 397, 399.
  5. Kavutcu M, Canbolat O, Oztürk S, Olcay E, Ulutepe S, Ekinci C, et al. Reduced enzymatic antioxidant defense mechanism in kidney tissues from gentamicin-treated guinea pigs: effects of vitamins E and C. Nephron 1996;72:269-74. https://doi.org/10.1159/000188853
  6. Lowry OH, Rosenbrough NJ, Farr AL, Randall RJ. Protein measurement with the Folin phenol reagent. J Biol Chem 1951;193:265-75.
  7. Dahle LK, Hill EG, Holman RT. The thiobarbituric acid reaction and the autoxidations of polyunsaturated fatty acid methyl esters. Arch Biochem Biophys 1962;98:221-53.
  8. Eyer P, Podhradsky D. Evaluation of the micromethod for determination of glutathione using enzymatic cycling and Ellman's reagent. Anal Biochem 1986;153:57-66. https://doi.org/10.1016/0003-2697(86)90061-8
  9. Safirstein R, Winston J, Goldstein M, Moel D, Dikman S, Guttenplan J. Cisplatin nephrotoxicity. Am J Kidney Dis 1986;8:356-67.
  10. Lippman AJ, Helson C, Helson L, Krakoff IH. Clinical trials of cis-diamminedichloroplatinum (NSC-119875). Cancer Chemother Rep 1973;57:191-200.
  11. Salahudeen A, Badr K, Morrow J, Roberts J. Hydrogen peroxide induces 21-aminosteroid -inhibitable F2-isoprostane production and cytolysis in renal tubular epithelial cells. J Am Soc Nephrol 1995;6:1300-3.
  12. Masuda H, Tanaka T, Takahama U. Cisplatin generates superoxide anion by interaction with DNA in a cell-free system. Biochem Biophys Res Commun 1994;203:1175-80. https://doi.org/10.1006/bbrc.1994.2306
  13. Kuhlmann MK, Burkhardt G, Köhler H. Insights into potential cellular mechanisms of cisplatin nephrotoxicity and their clinical application. Nephrol Dial Transplant 1997;12:2478-80. https://doi.org/10.1093/ndt/12.12.2478
  14. Cetin R, Devrim E, Kilicoglu B, Avci A, Candir O, Durak I. Cisplatin impairs antioxidant system and causes oxidation in rat kidney tissues: possible protective roles of natural antioxidant foods. J Appl Toxicol 2006;26:42-6. https://doi.org/10.1002/jat.1103
  15. Ahn H, Lee E, Kim K, Lee C. Effect of glutathione and its related enzymes on chemosensitivity of renal cell carcinoma and bladder carcinoma cell lines. J Urol 1994;151:263-7.
  16. Baldew GS, McVie JG, van der Valk MA, Los G, de Goeij JJ, Vermeulen NP. Selective reduction of cis-diamminedichloroplatinum(II) nephrotoxicity by ebselen. Cancer Res 1990;50:7031-6.
  17. Shimeda Y, Hirotani Y, Akimoto Y, Shindou K, Ijiri Y, Nishihori T, et al. Protective effects of capsaicin against cisplatin-induced nephrotoxicity in rats. Biol Pharm Bull 2005;28:1635-8. https://doi.org/10.1248/bpb.28.1635
  18. Sakemi T, Baba N. Effects of antihypertensive drugs on the progress of renal failure in hyperlipidemic Imai rats. Nephron 1993;63:323-9. https://doi.org/10.1159/000187217
  19. El-Sayed el-SM, Abd-Ellah MF, Attia SM. Protective effect of captopril against cisplatin -induced nephrotoxicity in rats. Pak J Pharm Sci 2008;21:255-61.
  20. Latha PG, Panikkar KR. Chemoprotective effect of Ixora coccinea L, flowers on cisplatin induced toxicity in mice. Phytother Res 2001;15:364-6. https://doi.org/10.1002/ptr.727
  21. Mansour MA, Mostafa AM, Nagi MN, Khattab MM, Al-Shabanah OA. Protective effect of aminoguanidine against nephrotoxicity induced by cisplatin in normal rats. Comp Biochem Physiol C Toxicol Pharmacol 2002;132:123-8. https://doi.org/10.1016/S1532-0456(02)00062-5
  22. Shirwaikar A, Malini S, Kumari SC. Protective effect of Pongamia pinnata flowers against cisplatin and gentamicininduced nephrotoxicity in rats. Indian J Exp Biol 2003;41:58-62.
  23. Sodikoff CH, Laboratory profiles of small animal diseases. A guide to laboratory diagnosis. 2nd ed. St. Louise: Mosby; 1995, p. 1-36.
  24. Kim YK, Choi TR, Kwon CH, Kim JH, Woo JS, Jung JS. Beneficial effect of pentoxifylline on cisplatin-induced acute renal failure in rabbits. Ren Fail 2003;25:909-22. https://doi.org/10.1081/JDI-120026026
  25. Gonzalez R, Borrego A, Zamora Z, Romay C, Hernandez F, Menendez S, et al. Reversion by ozone treatment of acute nephrotoxicity induced by cisplatin in rats. Mediators Inflamm 2004;13:307-12. https://doi.org/10.1080/09629350400008836
  26. Matsushima H, Yonemura K, Ohishi K, Hishida A. The role of oxygen free radicals in cisplatin -induced acute renal failure in rats. J Lab Clin Med 1998;131:518-26. https://doi.org/10.1016/S0022-2143(98)90060-9
  27. Satoh M, Kashihara N, Fujimoto S, Horike H, Tokura T, Namikoshi T, et al. A novel free radical scavenger, edarabone, protects against cisplatin-induced acute renal damage in vitro and in vivo. J Pharmacol Exp Ther 2003;305:1183-90. https://doi.org/10.1124/jpet.102.047522
  28. Sharma JN, Al-Omran A, Parvathy SS. Role of nitric oxide in inflammatory diseases. Inflammopharmacology 2007;15:252-59. https://doi.org/10.1007/s10787-007-0013-x
  29. Kuhad A, Pilkhwal S, Sharma S, Tirkey N, Chopra K. Effect of curcumin on inflammation and oxidative stress in cisplatin-induced experimental nephrotoxicity. J Agric Food Chem 2007;55:10150-5. https://doi.org/10.1021/jf0723965
  30. Lu LH, Oh DJ, Dursun B, He Z, Hoke TS, Faubel S, et al. Increased macrophage infiltration and fractalkine expression in cisplatin-induced acute renal failure in mice. J Pharmacol Exp Ther 2008;324:111-7.