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首页> 外文期刊>Journal of Surgical Research: Clinical and Laboratory Investigation >EH Networks as a scaffold for skeletal muscle regeneration in abdominal wall hernia repair.
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EH Networks as a scaffold for skeletal muscle regeneration in abdominal wall hernia repair.

机译:EH Networks作为腹壁疝修补术中骨骼肌再生的支架。

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摘要

Incisional hernias are a common clinical problem occurring in up to 10% of all patients undergoing abdominal procedures. Primary closure, synthetic biomaterials, as well as xenografts and allografts have been used in hernia defect repair. Despite these approaches, the incidence of hernia recurrence ranges from 32% to 63%. To address this high recurrence rate, we propose an incisional hernia treatment that utilizes a functional biomaterial developed for skeletal muscle regeneration. In particular, we have developed a cyclic acetal biomaterial (EH network) based on 5-ethyl-5-(hydroxymethyl)-beta,beta-dimethyl-1,3-dioxane-2-ethanol diacrylate. Initial tests of the scaffold's mechanical properties indicate that the complex modulus of the EH network decreased after a significant increase in initiator concentration. Subsequent studies indicate that EH networks promote myoblastic cell attachment and proliferation as well as delivers functional insulin-like growth factor-1 to an in vitro population of skeletalmyoblasts. This work establishes that an EH network, a degradable cyclic acetal biomaterial, can function as a scaffold for skeletal muscle engineering.
机译:切口疝是常见的临床问题,在所有接受腹部手术的患者中,多达10%会发生。初次闭合,合成生物材料以及异种移植物和同种异体移植物已用于疝气缺损修复。尽管有这些方法,疝气复发的发生率在32%至63%之间。为了解决这种高复发率的问题,我们提出了一种切开疝治疗方法,该方法利用为骨骼肌再生开发的功能性生物材料。特别地,我们已经开发了基于5-乙基-5-(羟甲基)-β,β-二甲基-1,3-二恶烷-2-乙醇二丙烯酸酯的环状缩醛生物材料(EH网络)。对支架机械性能的初步测试表明,引发剂浓度显着增加后,EH网络的复数模量下降。随后的研究表明,EH网络促进成肌细胞的附着和增殖,并向骨骼肌成肌细胞的体外群体传递功能性胰岛素样生长因子-1。这项工作建立了EH网络,一种可降解的环状缩醛生物材料,可以用作骨骼肌工程的支架。

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