Pagnanelli Michele, De Gaetano Francesco, Nappo Gennaro, Capretti Giovanni, Costantino Maria Laura, Zerbi Alessandro
Department of Biomedical Sciences, Humanitas University, Via Rita Levi Montalcini 4, 20072 Pieve Emanuele, Milan, Italy.
IRCCS Humanitas Research Hospital, Via Manzoni 56, 20089 Rozzano, Milan, Italy.
Biomedicines. 2023 Mar 30;11(4):1055. doi: 10.3390/biomedicines11041055.
The choice of the most appropriate suture threads for pancreatic anastomoses may play an important role in reducing the incidence of post-operative pancreatic fistula (POPF). The literature on this topic is still not conclusive. The aim of this study was to analyze the mechanical characteristics of suture materials to find the best suture threads for pancreatic anastomoses. A single-axial electromagnetic actuation machine was used to obtain the stress-deformation relationship curves and to measure both the ultimate tensile strength (UTS) and the Young's modulus at the 0-3% deformation range (E) of four different suture materials (Poliglecaprone 25, Polydioxanone, Polyglactin 910, and Polypropylene) at baseline and after incubation in saline solution, bile, and pancreatic juice for 1, 3, and 7 days. Polydioxanone and Polypropylene showed stable values of UTS and E in all conditions. Polyglactin 910 presented significant UTS and E variations between different time intervals in all types of liquids analyzed. Poliglecaprone 25 lost half of its strength in all biological liquids analyzed but maintained low E values, which could reduce the risk of lacerations of soft tissues. These results suggest that Polydioxanone and Poliglecaprone 25 could be the best suture materials to use for pancreatic anastomoses. In vivo experiments will be organized to obtain further confirmations of this in vitro evidence.
选择最适合胰腺吻合术的缝合线可能对降低术后胰瘘(POPF)的发生率起着重要作用。关于这一主题的文献尚无定论。本研究的目的是分析缝合材料的力学特性,以找到最适合胰腺吻合术的缝合线。使用单轴电磁驱动机器获取应力-变形关系曲线,并测量四种不同缝合材料(聚乙醇酸25、聚二氧六环酮、聚乳酸910和聚丙烯)在基线时以及在生理盐水、胆汁和胰液中孵育1、3和7天后在0-3%变形范围内的极限抗拉强度(UTS)和杨氏模量(E)。聚二氧六环酮和聚丙烯在所有条件下的UTS和E值均保持稳定。聚乳酸910在所有分析的液体类型中,不同时间间隔之间的UTS和E均有显著变化。聚乙醇酸25在所有分析的生物液体中强度损失一半,但保持较低的E值,这可能会降低软组织撕裂的风险。这些结果表明,聚二氧六环酮和聚乙醇酸25可能是用于胰腺吻合术的最佳缝合材料。将组织体内实验以进一步证实这一体外证据。