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首页> 外文期刊>International Journal of Biomaterials >Generation of Chimeric 'ABS Nanohemostat' Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model
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Generation of Chimeric 'ABS Nanohemostat' Complex and Comparing Its Histomorphological In Vivo Effects to the Traditional Ankaferd Hemostat in Controlled Experimental Partial Nephrectomy Model

机译:嵌合“ ABS纳米止血剂”复合物的产生及其在受控实验性部分肾切除模型中与传统Ankaferd止血剂的体内形态学作用比较

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Purpose. Using the classical Ankaferd Blood Stopper (ABS) solution to create active hemostasis during partial nephrectomy (PN) may not be so effective due to insufficient contact surface between the ABS hemostatic liquid agent and the bleeding area. In order to broaden the contact surface, we generated a chimeric hemostatic agent, ABS nanohemostat, via combining a selfassembling peptide amphiphile molecule with the traditional Ankaferd hemostat. Materials and Methods. In order to generate ABS nanohemostat, a positively charged Peptide Amphiphile (PA) molecule was synthesized by using solid phase peptide synthesis. For animal experiments, 24Wistar rats were divided into the following 4 groups: Group 1: control; Group 2: conventional PN with only 0.5ml Ankaferd hemostat; Group 3: conventional PN with ABS + peptide gel; Group 4: conventional PN with only 0.5ml peptide solution. Results.Mean warmischemia times (WITs) were 232.8 ± 56.3, 65.6 ± 11.4, 75.5 ± 17.2, and 58.1 ± 17.6 seconds in Group 1 to Group 4, respectively. Fibrosis was not different among the groups, while inflammation was detected to be significantly different in G3 and G4. Conclusions. ABS nanohemostat has comparable hemostatic efficacy to the traditional Ankaferd hemostat in the partial nephrectomy experimental model. Elucidation of the cellular and tissue effects of this chimeric compound may establish a catalytic spark and open new avenues for novel experimental and clinical studies in the battlefield of hemostasis.
机译:目的。使用经典的Ankaferd止血剂(ABS)解决方案在部分肾切除术(PN)期间产生主动止血效果可能不那么有效,因为ABS止血剂与出血区域之间的接触面不足。为了扩大接触表面,我们通过将自组装肽两亲分子与传统的Ankaferd止血剂相结合,产生了一种嵌合止血剂ABS纳米止血剂。材料和方法。为了产生ABS纳米止血剂,通过使用固相肽合成法合成了带正电荷的肽两亲物(PA)分子。对于动物实验,将24只Wistar大鼠分成以下4组:第1组:对照组;第2组:对照组。第2组:常规PN,仅含0.5ml Ankaferd止血药;第3组:常规PN与ABS +肽凝胶;第4组:仅含0.5ml肽溶液的常规PN。结果:第1组至第4组的平均缺血时间(WIT)分别为232.8±56.3、65.6±11.4、75.5±17.2和58.1±17.6秒。各组之间的纤维化没有差异,而在G3和G4中发炎被发现有显着差异。结论在部分肾切除术实验模型中,ABS纳米止血剂具有与传统Ankaferd止血剂相当的止血功效。阐明这种嵌合化合物的细胞和组织作用可能会建立催化火花,并为止血战场中的新型实验和临床研究开辟新的途径。

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