• Turk J Med Sci · Aug 2021

    THE EFFECT OF CARBON MONOXIDE RELEASING MOLECULE-2 ON HEALING OF ISCHEMIC COLON ANASTOMOSIS IN RATS.

    • Ali Kemal Kayapınar, Metin Ercan, Kadir Koray Baş, Seda Yamak, Uğur Erçin, Mehmet Akif Türkoğlu, and Erdal Birol Bostancı.
    • Department of General Surgery, Tepecik Training and Research Hospital, University of Medical Sciences, İzmir, Turkey
    • Turk J Med Sci. 2021 Aug 30; 51 (4): 2222-2231.

    Background/AimIschemia on the colon wall negatively affects healing of anastomosis. We were aimed to evaluate the effects of carbon monoxide releasing molecule-2 (CORM-2) on the healing of anastomosis in a rat model of the ischemic colon.Materials And MethodsIn this prospective study a total of 60 rats were randomly divided into three groups as colon transection and end-to-end anastomosis (Group I), colon transection, and end-to-end anastomosis following the induction of ischemia (Group II), and colon transection and end-to-end anastomosis following the induction of ischemia and treated with daily intraperitoneal administration of CORM-2 (Group III). Each group was also divided into two equal subgroups as postoperative 3rd and 7th day. Postoperative healing of anastomoses was evaluated by anastomosis burst pressure (ABP), tissue biomarkers including hydroxyproline (HP), malondialdehyde (MDA), glutathione (GSH), and histopathological findings.ResultsIn the ischemic group treated with CORM-2, lower MDA and higher HP levels were observed in comparison to the untreated ischemic group on the 3rd day. GSH and HP levels were higher and MDA levels was lower in the ischemic rats treated with CORM-2 than in the ischemic untreated rats on the 7th day. In the ischemic group treated with CORM-2, the mucosal epithelial score decreased and the neoangiogenesis score increased compared to the untreated rats on the 7th day.ConclusionIn ischemic colon anastomosis, reduces cell destruction by suppressing the oxidative reaction, and strengthening the antioxidative mechanisms of the cells. It also increases collagen formation, epithelial development, and neoangiogenesis.This work is licensed under a Creative Commons Attribution 4.0 International License.

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