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Effects of Antibiotics and Saccharomyces boulardii on Bacterial Translocation in Burn Injury
Authors:Özkan Herek  İncİ GÖkalan Kara  İlknur Kalelİ
Affiliation:(1) Department of Pediatric Surgery, Pamukkale University Faculty of Medicine, Çocuk Cerrahisi Anabilim Dal"imath", 20100 Denizli, Turkey;(2) Departments of Plastic and Reconstructive Surgery, Pamukkale University Faculty of Medicine, Çocuk Cerrahisi Anabilim Dal"imath", 20100 Denizli, Turkey;(3) Department of Microbiology, Pamukkale University Faculty of Medicine, Çocuk Cerrahisi Anabilim Dal"imath", 20100 Denizli, Turkey
Abstract:Purpose To investigate the effects of antibiotics and the probiotic, Saccharomyces boulardii, on indigenous microflora and bacterial translocation (BT) in burned rats.Methods Twenty-three male albino rats were divided into a sham burn group (group 1, n = 7) exposed to 21°C water, a burn + antibiotic group (group 2, n = 8), and a burn + antibiotic + S. boulardii group (group 3, n = 8) exposed to 95°C water for 10thinsps, producing a full-thickness burn to 30% of the total body surface area. Ampicillin-sulbactam (1thinsp000thinspmg/kg per day) was given as two doses via an orogastric feeding tube to groups 2 and 3. Saccharomyces boulardii (1thinspmg/g body weight per day) was given as two doses via the same route to group 3. All rats were killed on the fifth day postburn and cultures of the mesenteric lymph nodes, liver, spleen, blood, and cecal contents were done.Results The incidences of BT were 0% (0/7) in group 1, 87.5% (7/8) in group 2, and 37.5% (3/8) in group 3. A significant increase in the BT incidence was found in group 2 (P Lt 0.01), while a significant decrease was found in group 3 when compared with group 1. The total bacteria count of cecal flora was significantly lower in group 3 than in group 1 (P Lt 0.01). The decrease in Gram-negative bacteria in the cecal flora was significant in group 3.Conclusion These results suggest that the incidence of BT in burn injury is enhanced by using an antibiotic, and that S. boulardii decreases the incidence of antibiotic-induced BT. Thus, we conclude that S. boulardii can effectively protect the intestinal ecologic equilibrium and prevent BT in burn injury victims.
Keywords:Bacterial translocation  Burn  Thermal injury  Saccharomyces boulardii  Antibiotic
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