首页> 美国卫生研究院文献>The Indian Journal of Surgery >An In Vitro and In Vivo Evaluation of Tensile Strength and Durability of Seven Suture Materials in Various pH and Different Conditions: An Experimental Study in Rats
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An In Vitro and In Vivo Evaluation of Tensile Strength and Durability of Seven Suture Materials in Various pH and Different Conditions: An Experimental Study in Rats

机译:各种pH值和不同条件下七种缝合材料的抗张强度和耐久性的体外和体内评价:在大鼠中的实验研究

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摘要

Development in material engineering provide many kinds of suture materials to medical fields. The choice of utilization depends on the surgeons decision, the durability, absorbtion times, tensile strength of the suture, and operation site in means of organ and tissue. In this study we aimed to investigate 7 different suture materials in vivo and in vitro conditions to evaluate the properties and durability. Basal tensile strength (TS) values of all sutures were measured and 168 Wistar albino rats were utilised in vivo groups. The sutures were placed in the bladder, stomach, intestine and bile duct (after obstructive jaundice). Urine and bile of rat, pH 1 and pH 10 were used as in vitro conditions. Seven different suture materials (Maxon, Vicryl, Plain Catgut, Surgical Silk, Polypropylene, Caprosyn and Biosyn) were investigated in 9 different in vitro and in vivo conditions. All sutures were chosen to be in size 5/0. In the following 5th day the sutures were tested related to durability and stability. Results were compared stastically using the Mann-Whitney U test and p < 0.05 was considered as stastically significant. Among all the suture materials only polypropylene proved to preserve its stability in vivo and in vitro surveys. Cat-gut and caprosyn lost its TS in all medias. Silk and biosyn lost its TS in all conditions except the stomach and intestines. Maxon also lost its TS in all condition except urine. Utilisation of caprosyn and biosyn in urinary procedures reduces stone formation and infections. The suture of choice in biliary tract should be vicryl, maxon or biosyn since polypropylene preserves its stability that could result in stone formation. In intestinal operations polypropylene, vicryl, and silk could be preferred.
机译:材料工程学的发展为医学领域提供了多种缝合材料。使用的选择取决于外科医生的决定,耐用性,吸收时间,缝合线的抗张强度以及器官和组织中的手术部位。在这项研究中,我们旨在研究7种不同的缝合线材料在体内和体外条件下的性能和耐久性。测量所有缝合线的基础抗张强度(TS)值,并在体内组中使用168只Wistar白化病大鼠。将缝合线放置在膀胱,胃,肠和胆管中(阻塞性黄疸发生后)。将pH 1和pH 10的大鼠尿液和胆汁用作体外条件。在9种不同的体外和体内条件下,研究了7种不同的缝合材料(Maxon,Vicryl,Claut Catgut,外科用丝,聚丙烯,Caprosyn和Biosyn)。选择所有缝线的尺寸为5/0。在第二天的第5天,测试了缝合线的耐用性和稳定性。使用Mann-Whitney U检验对结果进行了统计学比较,p 0.05被认为具有统计学显着性。在所有缝合材料中,只有聚丙烯被证明可以在体内和体外调查中保持其稳定性。 Cat-gut和caprosyn在所有媒体中都失去了TS。蚕丝和biosyn在除胃和肠外的所有情况下均失去其TS。 Maxon在所有情况下(尿液除外)也失去了TS。在泌尿过程中使用己内酰胺和生物合成素可减少结石形成和感染。胆道选择的缝合线应为vicryl,maxon或biosyn,因为聚丙烯保留了其稳定性,可能导致结石形成。在肠内手术中,聚丙烯,丙烯腈和丝可能是优选的。

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