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组装型抗粘连聚丙烯网片,具有自固定和可降解的原位贻贝启发水凝胶涂层,用于腹壁缺损修复。

Assembled anti-adhesion polypropylene mesh with self-fixable and degradable in situ mussel-inspired hydrogel coating for abdominal wall defect repair.

机构信息

State Key Lab of Bioelectronics, National Demonstration Center for Experimental Biomedical Engineering Education, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.

出版信息

Biomater Sci. 2018 Oct 24;6(11):3030-3041. doi: 10.1039/c8bm00824h.

Abstract

Abdominal adhesion to polypropylene (PP) mesh remains one of the major complications in hernia repair. Thus, a challenge exists to endow PP mesh with powerful anti-adhesion properties in hernia repair. To investigate potential options, the assembled PP mesh was developed with effective anti-adhesion properties through an in situ coating of the mesh surface with self-fixable and biodegradable mussel-inspired hydrogels. Through mixing oxidized-carboxymethylcellulose functionalized with dopamine (OCMC-DA) with carboxymethylchitosan (CMCS), a layer of hydrogel (OCMC-DA/CMCS) can be formed in situ on the PP mesh without the addition of crosslinking agents; the dopamine then acts as an immobilization group to fix these hydrogels to the PP mesh and the tissue surface. In this way, the assembled PP mesh (OCMC-DA/CMCS/PP) was obtained. The properties of the OCMC-DA/CMCS hydrogels were optimized, and the OCMC-DA4/CMCS hydrogel was selected to construct the assembled PP mesh. The lap-shear test revealed that OCMC-DA4/CMCS has tissue-adhesive properties. In vitro cell tests proved the excellent biocompatibility of the hydrogel. An optimized bioabsorption time and significant anti-adhesion properties were demonstrated through an in vivo test with a rat model. The adhesion area and tenacity of the OCMC-DA4/CMCS/PP group were more than 80% lower than those of the native PP mesh group and created a slightly inflammatory reaction.

摘要

聚丙烯(PP)网片与腹壁的粘连仍然是疝修补术的主要并发症之一。因此,在疝修补术中,赋予 PP 网片强大的防粘连性能是一个挑战。为了探索潜在的选择,通过对网片表面进行原位涂层,将组装好的 PP 网片赋予有效的防粘连特性,形成具有自固定和可生物降解的贻贝启发水凝胶。通过将氧化羧甲基纤维素(OCMC-DA)与壳聚糖(CMCS)混合,无需添加交联剂,即可在 PP 网片表面原位形成水凝胶(OCMC-DA/CMCS)层;多巴胺随后作为固定化基团将这些水凝胶固定在 PP 网片和组织表面。这样,就得到了组装好的 PP 网片(OCMC-DA/CMCS/PP)。优化了 OCMC-DA/CMCS 水凝胶的性能,并选择 OCMC-DA4/CMCS 水凝胶构建组装好的 PP 网片。搭接剪切试验表明,OCMC-DA4/CMCS 具有组织黏附性。体外细胞试验证明了水凝胶具有优异的生物相容性。通过大鼠模型的体内试验,证明了优化的生物吸收时间和显著的防粘连性能。与天然 PP 网片组相比,OCMC-DA4/CMCS/PP 组的粘连面积和强度降低了 80%以上,仅产生轻微的炎症反应。

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