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An Artificial Bile Duct Made of Bioabsorbable Polymer: A Viable Substitute for Narrowed Portion of the Extrahepatic Bile Duct

机译:由生物可吸收聚合物制成的人造胆管:脱膜胆管的狭窄部分的可行替代品

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摘要

The aim of this study was to investigate whether an artificial bile duct made of bioabsorbable polymer could serve as a substitute for narrowed portions of the bile duct. The experiments were performed using hybrid pigs (n = 11). After laparotomy under general anesthesia, the extrahepatic bile duct was identified and ligated around the confluence with the cystic duct. A week later, repeat laparotomy was performed on the animals, and the bile duct on the hepatic side of the ligature was resected. The cut end was connected to the duodenum using a bioabsorbable artificial bile duct fabricated from a copolymer of polycaprolactone and polylactic acid fibers. The grafts were recovered for gross, histologic, and blood chemical studies at 4 months after the surgery. All recipient pigs survived until they were humanely killed for collection of the implants. A week of ligation of the extrahepatic bile duct dilated the duct to approximately 1 cm in diameter and increased total bilirubin. Total bilirubin had returned to the pre-implantation level in all animals at 4 months post implantation. Examinations of the grafts revealed complete freedom of stricture and the regeneration of a neo-bile duct of approximately 1 cm in diameter from the graft site in 10 of 11 animals. Gross observation of the graft from the 1 remaining animal revealed stricture at the anastomosis site and poor bile duct epithelization. We have concluded that this bioabsorbable polymer bile duct can serve as a replacement for narrowed portions of the bile duct.
机译:该研究的目的是研究一种由生物可吸收聚合物制成的人造胆管是否可以用作胆管狭窄的部分的替代品。使用杂化猪进行实验(n = 11)。在全身麻醉下剖腹术后,鉴定脱膜胆管和围绕汇集的囊性管道连接。一周后,对动物进行重复剖腹术,并切割结扎的肝脏侧的胆管。使用由聚己内酯和聚乳酸纤维的共聚物制造的生物可吸收人造胆管连接到十二指肠。在手术后4个月内恢复移植物以进行粗糙,组织学和血液化学研究。所有受体猪都幸存下来,直到它们被人道杀死植入物。将导管的一周结扎直径扩张,直径为约1cm,总胆红素增加。在植入后4个月内胆红素总返回到所有动物的预植入水平。移植物的检查揭示了狭窄的狭窄自由度,并从11只动物的10只动物中从移植物位点直径约1厘米的新胆管的再生。从1个剩余的动物的移植物概括地观察吻合遗址和胆管上皮差的狭窄。我们已经得出结论,这种生物可吸收的聚合物胆管可以作为胆管的狭窄部分的替代品。

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