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聚偏二氟乙烯单丝缝线:它们能安全用于胸主动脉的长期吻合术吗?

Polyvinylidene fluoride monofilament sutures: can they be used safely for long-term anastomoses in the thoracic aorta?

作者信息

Laroche G, Marois Y, Schwarz E, Guidoin R, King M W, Pâris E, Douville Y

机构信息

Département de Chirurgie, Université Laval, Institut des Biomatériaux du Québec, Hôpital Saint-François d'Assise, Canada.

出版信息

Artif Organs. 1995 Nov;19(11):1190-9. doi: 10.1111/j.1525-1594.1995.tb02282.x.

Abstract

Polyvinylidene fluoride (PVDF) represents an attractive alternative to polypropylene as a monofilament vascular suture because of its satisfactory physicochemical properties, it ease of handling, and its good biocompatibility. However, the polymer's ability to remain mechanically and chemically stable when exposed to a mild hydrolytic environment over the long term has yet to be demonstrated. One in vitro study involved the comparison of the long-term relative resistance of PVDF and polypropylene sutures to hydrolysis for a period of 9 years. The PVDF suture showed major molecular rearrangements from the original ratio of three crystalline structures to the single beta crystalline phase. The observation of some surface oxidation and water inhibition did not significantly modify the tensile strength of the PVDF suture, which retained 92.5% of its original value. In contrast, the polypropylene sample did not undergo any recrystallization but was associated with more oxidation byproducts and more water molecules near the surface, which contributed to a 46.6% loss in initial tensile strength. An in vivo study confirmed that PVDF sutures are biocompatible and are able to maintain satisfactory biostability when used to anastomose thoracic aortic allografts for a period of 6 months in the dog. The cellular reaction of fresh allografts as well as the control autografts to PVDF sutures was minimal. In other allografts that had been preserved in a supplemented medium for 1 week prior to implantation, the PVDF sutures healed satisfactorily with the formation of neocollagen and few macrophages surrounding the monofilament. No evidence of instability at the allograft-host artery junction was observed, confirming that the PVDF sutures were able to ensure a secure anastomosis in the thoracic aorta. PVDF sutures have demonstrated superior long-term biostability in vitro and minimal tissue response in vivo. These are two essential requirements when evaluating the use of a suture for vascular surgery in general and thoracic aortic surgery in particular.

摘要

聚偏二氟乙烯(PVDF)作为单丝血管缝线,因其令人满意的物理化学性质、易于操作以及良好的生物相容性,成为聚丙烯的一种有吸引力的替代品。然而,这种聚合物在长期暴露于温和水解环境时,其在机械和化学方面保持稳定的能力尚未得到证实。一项体外研究比较了PVDF和聚丙烯缝线在9年时间内对水解的长期相对抗性。PVDF缝线显示出主要的分子重排,从三种晶体结构的原始比例转变为单一的β晶相。观察到的一些表面氧化和水分抑制并未显著改变PVDF缝线的拉伸强度,其保留了原始值的92.5%。相比之下,聚丙烯样品未发生任何重结晶,但表面附近有更多的氧化副产物和更多的水分子,这导致初始拉伸强度损失了46.6%。一项体内研究证实,PVDF缝线具有生物相容性,在犬类中用于吻合胸主动脉同种异体移植物6个月时,能够保持令人满意的生物稳定性。新鲜同种异体移植物以及对照自体移植物对PVDF缝线的细胞反应极小。在植入前在补充培养基中保存1周的其他同种异体移植物中,PVDF缝线愈合良好,形成了新胶原蛋白,单丝周围有少量巨噬细胞。未观察到同种异体移植物与宿主动脉交界处不稳定的迹象,证实PVDF缝线能够确保胸主动脉的安全吻合。PVDF缝线在体外已显示出卓越的长期生物稳定性,在体内具有最小的组织反应。总体而言,在评估用于血管手术尤其是胸主动脉手术的缝线时,这是两个基本要求。

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