Characterization of the Mechanical Strength, Resorption Properties, and Histologic Characteristics of a Fully Absorbable Material (Poly-4-hydroxybutyrate-PHASIX Mesh) in a Porcine Model of Hernia Repair.

ISRN surgery Pub Date : 2013-05-28 Print Date: 2013-01-01 DOI:10.1155/2013/238067
Corey R Deeken, Brent D Matthews
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引用次数: 122

Abstract

Purpose. Poly-4-hydroxybutyrate (P4HB) is a naturally derived, absorbable polymer. P4HB has been manufactured into PHASIX Mesh and P4HB Plug designs for soft tissue repair. The objective of this study was to evaluate mechanical strength, resorption properties, and histologic characteristics in a porcine model. Methods. Bilateral defects were created in the abdominal wall of n = 20 Yucatan minipigs and repaired in a bridged fashion with PHASIX Mesh or P4HB Plug fixated with SorbaFix or permanent suture, respectively. Mechanical strength, resorption properties, and histologic characteristics were evaluated at 6, 12, 26, and 52 weeks (n = 5 each). Results. PHASIX Mesh and P4HB Plug repairs exhibited similar burst strength, stiffness, and molecular weight at all time points, with no significant differences detected between the two devices (P > 0.05). PHASIX Mesh and P4HB Plug repairs also demonstrated significantly greater burst strength and stiffness than native abdominal wall at all time points (P < 0.05), and material resorption increased significantly over time (P < 0.001). Inflammatory infiltrates were mononuclear, and both devices exhibited mild to moderate granulation tissue/vascularization. Conclusions. PHASIX Mesh and P4HB Plug demonstrated significant mechanical strength compared to native abdominal wall, despite significant material resorption over time. Histological assessment revealed a comparable mild inflammatory response and mild to moderate granulation tissue/vascularization.

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一种完全可吸收材料(聚4-羟基丁酸酯-相补片)在猪疝修补模型中的机械强度、吸收特性和组织学特征的表征。
目的。聚4-羟基丁酸酯(P4HB)是一种天然衍生的可吸收聚合物。P4HB已制造成用于软组织修复的PHASIX Mesh和P4HB Plug设计。本研究的目的是评估猪模型的机械强度、吸收特性和组织学特征。方法。在n = 20只尤卡坦迷你猪的腹壁上制造双侧缺陷,分别用PHASIX Mesh或P4HB Plug用SorbaFix或永久缝线固定桥接方式修复。在6周、12周、26周和52周时评估机械强度、吸收特性和组织学特征(各n = 5)。结果。PHASIX Mesh和P4HB Plug修复在所有时间点表现出相似的爆裂强度、刚度和分子量,两种设备之间没有显著差异(P > 0.05)。在所有时间点,PHASIX Mesh和P4HB Plug修复也显示出比天然腹壁更大的破裂强度和刚度(P < 0.05),并且随着时间的推移,材料吸收显著增加(P < 0.001)。炎性浸润为单核浸润,两种装置均表现为轻度至中度肉芽组织/血管化。结论。PHASIX Mesh和P4HB Plug与天然腹壁相比显示出显著的机械强度,尽管随着时间的推移有显著的材料吸收。组织学评估显示轻度炎症反应和轻度至中度肉芽组织/血管化。
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