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源自鱼鳔的排列纳米纤维胶原膜,作为一种坚韧且耐酸的缝线,用于pH调节的胃穿孔和肌腱断裂修复。

Aligned nanofibrous collagen membranes from fish swim bladder as a tough and acid-resistant suture for pH-regulated stomach perforation and tendon rupture.

作者信息

Luan Zhaohui, Liu Shuang, Wang Wei, Xu Kaige, Ye Shaosong, Dan Ruijue, Zhang Hong, Shu Zhenzhen, Wang Tongchuan, Fan Chaoqiang, Xing Malcolm, Yang Shiming

机构信息

Department of Gastroenterology, Xinqiao Hospital, Army Medical University, NO.183, Xinqiao Street, Chongqing, 400037, China.

Department of Mechanical Engineering, University of Manitoba, Winnipeg, MB, R3T 2N2, Canada.

出版信息

Biomater Res. 2022 Nov 8;26(1):60. doi: 10.1186/s40824-022-00306-1.

Abstract

BACKGROUND

Wound closure in the complex body environment places higher requirements on suture's mechanical and biological performance. In the scenario of frequent mechanical gastric motility and extremely low pH, single functional sutures have limitations in dealing with stomach bleeding trauma where the normal healing will get deteriorated in acid. It necessitates to advance suture, which can regulate wounds, resist acid and intelligently sense stomach pH.

METHODS

Based on fish swim bladder, a double-stranded drug-loaded suture was fabricated. Its cytotoxicity, histocompatibility, mechanical properties, acid resistance and multiple functions were verified. Also, suture's performance suturing gastric wounds and Achilles tendon was verified in an in vivo model.

RESULTS

By investigating the swim bladder's multi-scale structure, the aligned tough collagen fibrous membrane can resist high hydrostatic pressure. We report that the multi-functional sutures on the twisted and aligned collagen fibers have acid resistance and low tissue reaction. Working with an implantable "capsule robot", the smart suture can inhibit gastric acid secretion, curb the prolonged stomach bleeding and monitor real-time pH changes in rabbits and pigs. The suture can promote stomach healing and is strong enough to stitch the fractured Achilles tendon.

CONCLUSIONS

As a drug-loaded absorbable suture, the suture shows excellent performance and good application prospect in clinical work.

摘要

背景

在复杂的人体环境中进行伤口缝合,对缝线的机械性能和生物学性能提出了更高的要求。在胃频繁机械蠕动且pH值极低的情况下,单一功能的缝线在处理胃出血创伤时存在局限性,因为在酸性环境中正常愈合会恶化。因此需要开发一种能够调节伤口、抗酸并智能感知胃pH值的缝线。

方法

基于鱼鳔制备了一种双链载药缝线。对其细胞毒性、组织相容性、机械性能、耐酸性和多种功能进行了验证。此外,还在体内模型中验证了该缝线缝合胃伤口和跟腱的性能。

结果

通过研究鱼鳔的多尺度结构,发现排列整齐的坚韧胶原纤维膜能够抵抗高静水压力。我们报道,在扭曲排列的胶原纤维上的多功能缝线具有耐酸性和低组织反应性。与可植入的“胶囊机器人”协同工作,这种智能缝线能够抑制胃酸分泌,抑制兔和猪的胃长时间出血,并监测实时pH值变化。该缝线能够促进胃愈合,并且强度足以缝合断裂的跟腱。

结论

作为一种载药可吸收缝线,该缝线在临床工作中表现出优异的性能和良好的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e704/9641846/e70a0cb247d8/40824_2022_306_Sch1_HTML.jpg

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