The Effects of Anti-Histamine and Mast Cell Stabilizer against Ischemia-Reperfusion Injury to TRAM Flap in Rat

백서 복직근피판의 허혈-재관류 손상에 대한 히스타민 차단제의 효과

  • Yoon Sang (Department of Plastic and Reconstructive Surgery, Bundang CHA General Hospital, College of Medicine Pochon CHA University) ;
  • Kyu Yoon (Department of Plastic and Reconstructive Surgery, Wonju Medial College, Yonsei University) ;
  • Yun Jeong (Department of Pathology, Bundang CHA General Hospital, College of Medicine Pochon CHA University)
  • 강상윤 (포천중문의과대학 분당 차병원 성형외과학교실) ;
  • 정윤규 (연세대학교 원주의과대학 성형외과학교실) ;
  • 심정연 (포천중문의과대학 분당 차병원 진단병리학교실)
  • Received : 2006.05.09
  • Published : 2006.11.10

Abstract

Purpose: The purpose of this study was to evaluate the role of mast cell and histamine as typical product of mast cell in ischemia-reperfusion injury of muscle flap using H2 receptor blocker and mast cell stabilizer. Methods: Thirty-five Sprague-Dawley rats weighing 250-300 gm were divided into four groups; Group I: Control group without ischemia, Group II: Normal saline injection group with ischemia, Group III: Cimetidine injection group with ischemia, Group IV: Sodium cromoglycate injection group with ischemia. Well established single pedicled transverse rectus abdominis musculocutaneous(TRAM) flap was designed in all rats and were rendered ischemia by clamping the artery for 150 minutes. All injections were applied intramuscular around gluteal area 30 minutes before reperfusion. The flap survival was evaluated at 7 days after operation. Neutrophil counts and mast cell counts were evaluated 24 hours after reperfusion. Results: The difference of skin flap survival between control group and cimetidine injection group was not significant. In the normal saline injection group flap survival was markedly decreased compared to that of control group. The muscle flap survival was similar to the results of skin flap survival. The neutrophil counts were significantly decreased in control group and sodium cromoglycate injection group than normal saline injection group. The mast cell counts were significantly decreased in cimetidine injection group and control group than both normal saline injection and sodium cromoglycate injection groups. The protective effect of sodium cromoglycate was not seen in the skin flap, but the muscle flaps showed protective effects of sodium cromoglycate compared to normal saline injection group. Conclusions: It is suggests that commonly used antihistamine(H2 receptor blocker) has protective effect against ischemia-reperfusion injury to skin and muscle flaps by reducing neutrophil and mast cell. The mast cell stabilizer was not effective for skin flap but, possibly, for muscle flap.

Keywords

References

  1. May JW Jr, Chait LA, O'Brien BM, Hurley JV: The no-reflow phenomenon in experimental free flaps. Plast Reconstr Surg 61: 256, 1978 https://doi.org/10.1097/00006534-197802000-00017
  2. Parks DA, Bulkley GB, Granger DN: Role of oxygen free radicals in shock, ischemia and organ preservation. Surgery 94: 428, 1983
  3. Friedl IP, Guerra EE, Cramer T, Giacherio D, Toledo-Pereyra LH, Till GO: Histamine and Xanthine oxidase in hepatic ischemia reperfusion injury. Transplant Proc 22: 513, 1990
  4. Cetinkale O, Biligic L, Bolayirli M, Sengul R, Ayan F, Burcak G: Involvement of neutrophils in ischemia-reperfusion injury of inguinal island skin flaps in rats. Plast Reconstr Surg 102: 153, 1998 https://doi.org/10.1097/00006534-199807000-00024
  5. Weiss SJ: Tissue destruction by neutrophils. N Engl J Med 320: 365, 1989 https://doi.org/10.1056/NEJM198902093200606
  6. Kubes P, Suzuki M, Granger DN: Nitric oxide: an endogenous modulator of leukocyte adhesion. Proc Natl Acad Sci USA 88: 4651, 1991
  7. Cordeiro PG, Lee H, Mastorakos D, Hu QY, Pinto JT, Santamaria E: Prevention of ischemia reperfusion injury in a rat skin flap model: the role of mast Cells, cromolyn sodium, and histamine receptor blockade. Plast Reconstr Surg 105: 654, 2000 https://doi.org/10.1097/00006534-200002000-00026
  8. Hong JP, Chung YK, Chung SH: The protective effect of prostaglandin E1 against ischemia-reperfusion injury of musculocutaneous flaps. J Korean Micro Surg 9: 190, 2000
  9. Kirschner RE, Fyfe BS, Hoffman LA, Chiao H, Davis JM, Fantini GA: Ischemia-reperfusion injury in myocutaneous flaps: role of leukocytes and leukotrienes. Plast Reconstr Surg 99: 1485, 1997 https://doi.org/10.1097/00006534-199705000-00001
  10. Kurose I, Anderson DC, Miyasaka M, Tamatani T, Paulson JC, Todd RF, Rusche JR, Granger DN: Molecular determinants of reperfusion-induced leukocyte adhesion and vascular protein leakage. Circ Res 74: 336, 1994 https://doi.org/10.1161/01.RES.74.2.336
  11. Vedder NB, Bucky LP, Richey NL, Winn RK, May JW Jr: Improved survival rates of random flaps in rabbits with a monoclonal antibody that blocks leukocyte adherence. Plast Reconstr Surg 93: 1035, 1994 https://doi.org/10.1097/00006534-199404001-00020
  12. Zamboni WA, Stephenson LL, Roth AC, Suchly H, Russell RC: Ischemia-reperfusion injury in skeletal muscle: CD18-dependent neutrophil-endothelial adhesion and arteriolar vasoconstriction. Plast Reconstr Surg 99: 2202, 1997
  13. Zamboni WA, Roth AC, Russell RC, Graham B, Suchy H, Kucan JO: Morphologic analysis of the microcirculation during reperfusion of ischemic skeletal muscle and the effect of hyperbaric oxygen. Plast Reconstr Surg 91: 1110, 1993 https://doi.org/10.1097/00006534-199305000-00022
  14. Stotland MA, Kerrigan CL: The role of platelet-activating factor in musculocutaneous flap reperfusion injury. Plast Reconstr Surg 99: 1989, 1997 https://doi.org/10.1097/00006534-199706000-00026
  15. Yamaki K, Tholacius H, Xie X, Lindbom L, Hedgvist P, Raud J: Characteristics of histamine induced leukocyte rolling in the undisturbed microcirculation of the rat mesentery. Br J Pharmacol 123: 390, 1998 https://doi.org/10.1038/sj.bjp.0701614