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Accelerated biodegradation of silk sutures through matrix metalloproteinase activation by incorporating 4-hexylresorcinol

机译:通过掺入4-己基间苯二酚通过基质金属蛋白酶激活来加速丝线的生物降解

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摘要

Silk suture material is primarily composed of silk fibroin and regarded as a non-resorbable material. It is slowly degraded by proteolysis when it is implanted into the body. 4-Hexylresorcinol (4HR) is a well-known antiseptic. In this study, the biodegradability of 4HR-incorporated silk sutures were compared to that of untreated silk sutures and polyglactin 910 sutures, a commercially available resorbable suture. 4HR-incorporated silk sutures exhibited anti-microbial properties. Matrix metalloproteinase (MMP) can digest a wide spectrum of proteins. 4HR increased MMP-2, -3, and -9 expression in RAW264.7 cells. MMP-2, -3, and -9 were able to digest not only silk fibroin but also silk sutures. Consequently, 59.5% of the 4HR-incorporated silk suture material remained at 11 weeks after grafting, which was similar to that of polyglactin 910 degradation (56.4% remained). The residual amount of bare silk suture material at 11 weeks after grafting was 91.5%. The expression levels of MMP-2, -3 and -9 were high in the 4HR-incorporated silk suture-implanted site 12 weeks after implantation. In conclusion, 4HR-treated silk sutures exhibited anti-microbial properties and a similar level of bio-degradation to polyglactin 910 sutures and induced higher expression of MMP-2, -3, and -9 in macrophages.
机译:丝线缝合材料主要由丝素蛋白组成,被认为是不可吸收的材料。植入体内后,它会通过蛋白水解作用缓慢降解。 4-己基间苯二酚(4HR)是众所周知的防腐剂。在这项研究中,将掺入4HR的丝线与未处理的丝线和可商购的可吸收缝线polyglactin 910线的生物降解能力进行了比较。掺入4HR的真丝缝合线具有抗微生物特性。基质金属蛋白酶(MMP)可以消化多种蛋白质。 4HR增加RAW264.7细胞中MMP-2,-3和-9的表达。 MMP-2,-3和-9不仅能够消化丝素蛋白,而且能够消化丝线。因此,在移植后11周时,结合有4HR的丝线缝合材料中保留了59.5%的残留量,这与polyglactin 910的降解相似(保留了56.4%)。嫁接后11周,裸丝缝合材料的残留量为91.5%。植入后12周,在结合有4HR的丝线植入部位,MMP-2,-3和-9的表达水平较高。总之,经4HR处理的真丝缝合线具有抗微生物特性,并且具有与聚乳胶910缝合线相似的生物降解水平,并诱导巨噬细胞中MMP-2,-3和-9的较高表达。

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