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find Keyword "Aprotinin" 3 results
  • Experimental Study on Preventing Postoperative Intestinal Adhesions by Methylene Blue and Aprotinin

    ObjectiveTo investigate the synergetic effects of the combination methylene blue or/and aprotinin on preventing postoperative intestinal adhesions (POIA).MethodsFourtyeight rabbits were divided into control group (group A), methylene blue group (group B), aprotinin group (group C), methylene blue+aprotinin group (group D). Each group contained 12 rabbits and established models of intestinal adhesions through laporotomy. Fourteen days after operation, the rabbits were reoperated to see whether there were adhesions and the degree of adhesions. ResultsThe adhesions of group A was the most serious, then in sequence were group B, C, group D showed very light adhesion. Group A was much more severe than B, C, D group (Plt;0.01); group D was very different from B, C group (P<0.05). ConclusionMethylene blue and aprotinin have significant effects on preventing POIA and the combination of the two drugs can have a synergetic effects on POIA.

    Release date:2016-08-28 05:11 Export PDF Favorites Scan
  • Comparative Study of Efficacy Between 6-Epsilon-aminocaproic Acid and Aprotinin on Reducing Bleeding after Cardiac Valve Replacement

    Objective To compare the efficacy of 6-epsilon-aminocaproic acid (EACA) with aprotinin on reducing postoperative bleeding in cardiac valve replacement procedures, and to investigate its influence on the possible thromboembolism and the renal function. Methods Seventy-nine patients who underwent cardiac valve replacement were randomly divided into two groups: EACA group (n = 39) and aprotinin group (n = 40), which were given EACA and aprotinin separately in operations. The volumes of drainage to body surface area (BSA), blood transfusion were recorded during 24 h after operations. The concentrations of serum D-dimer and α2-antiplasmin (a2- AP) were measured before, during operation and at 72h post-operatively. The serum creatinine levels before operation and at the 72 h after operation were also measured. Results The volume ratio of drainage to BSA in EACA group was significantly higher than that in the aprotinin group at 24 h after operation (P = 0. 019). However, there was no significant difference in the volumes of blood transfusion between two groups (P〉0. 05). Also no statistical difference in the concentrations of D-dimer and a2-AP were found between two groups whether preoperatively or at 72h post-operatively (P= 0. 960,0. 485), D-dimer and a2-AP of the aprotinin group were higher than those in the EACA group after aortic off-clamping (P = 0. 001,0. 000). There was no statistically difference of △CrCl72 in both groups (P〉0. 05). No patient with thrombosis or thromboembolism was detected in two groups.Conclusion Although the efficacy of EACA in reducing postoperative bleeding in cardiac valve replacement can not compare favorably with that of aprotinin, the blood transfusion volume would not increase when EACA is used introoperatively. Proper usage of EACA will not cause thrombosis and renal damage.

    Release date:2016-08-30 06:22 Export PDF Favorites Scan
  • Protection Effect of Combination of Leukocyte Depletion and Aprotinin

    There is a close relationship between inflammation and coagulation response. Inflammation and coagulation are activated simultaneously during cardiopulmonary bypass, which induce postperfusion syndrome. Leukocyte depletion filter can inhibit inflammation by reducing neutrophils in circulation. But, its effects on blood conservation are limited. Aprotinin is a serine protease inhibitor, and can prevent postoperative bleeding by anti-fibrinolysis and protection of platelet function. But its effects on anti-inflammation and protection of organs are subjected to be doubted. The combination of leukocyte depletion filter and aprotinin can inhibit inflammation as well as regulate coagulation, and may exert a good protective action during cardiopulmonary bypass.

    Release date:2016-08-30 06:23 Export PDF Favorites Scan
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