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一种聚氨酯基手术粘合剂的长期降解评估——临床前体外和体内测试的评估及关键考量

Long-Term Degradation Assessment of a Polyurethane-Based Surgical Adhesive-Assessment and Critical Consideration of Preclinical In Vitro and In Vivo Testing.

作者信息

Bremer Lisanne, Hagemeister Kerstin, Moss Michaela, Ernst Lisa, Tolba René H, Jockenhoevel Stefan, Apel Christian

机构信息

Department of Biohybrid & Medical Textiles, Institute of Applied Medical Engineering, Helmholtz Institute for Biomedical Engineering, RWTH Aachen University, 52074 Aachen, Germany.

Adhesys Medical GmbH, 52078 Aachen, Germany.

出版信息

J Funct Biomater. 2023 Mar 21;14(3):168. doi: 10.3390/jfb14030168.

Abstract

Tissue adhesives constitute a great possibility to improve conventional wound closure. In contrast to sutures, they enable nearly immediate hemostasis and can prevent fluid or air leaks. In the present study, a poly(ester)urethane-based adhesive was investigated which already proved to be suitable for different indications, such as reinforcing vascular anastomosis and sealing liver tissue. Using in vitro and in vivo setups, the degradation of the adhesives was monitored over a period of up to 2 years, to evaluate long-term biocompatibility and determine degradation kinetics. For the first time, the complete degradation of the adhesive was documented. In subcutaneous locations, tissue residues were found after 12 months and in intramuscular locations, tissue degradation was complete after about 6 months. A detailed histological evaluation of the local tissue reaction revealed good biocompatibility throughout the different degradation stages. After full degradation, complete remodeling to physiological tissue was observed at the implant locations. In addition, this study critically discusses common issues related to the assessment of biomaterial degradation kinetics in the context of medical device certification. This work highlighted the importance and encouraged the implementation of biologically relevant in vitro degradation models to replace animal studies or at least reduce the number of animals in preclinical testing prior to clinical studies. Moreover, the suitability of frequently used implantation studies based on ISO 10993-6 at standard locations was critically discussed, especially in light of the associated lack of reliable predictions for degradation kinetics at the clinically relevant site of implantation.

摘要

组织粘合剂为改进传统伤口闭合提供了很大可能性。与缝线不同,它们能实现几乎即时的止血,并可防止液体或空气泄漏。在本研究中,对一种基于聚(酯)聚氨酯的粘合剂进行了研究,该粘合剂已被证明适用于不同适应症,如加强血管吻合和密封肝组织。利用体外和体内实验装置,在长达2年的时间内监测粘合剂的降解情况,以评估长期生物相容性并确定降解动力学。首次记录了粘合剂的完全降解情况。在皮下部位,12个月后发现有组织残留;在肌肉内部位,约6个月后组织降解完成。对局部组织反应进行的详细组织学评估显示,在不同降解阶段均具有良好的生物相容性。完全降解后,在植入部位观察到组织完全重塑为生理组织。此外,本研究批判性地讨论了在医疗器械认证背景下与生物材料降解动力学评估相关的常见问题。这项工作突出了生物学相关体外降解模型的重要性,并鼓励采用此类模型来替代动物研究,或至少减少临床研究前临床前测试中的动物数量。此外,还批判性地讨论了基于ISO 10993 - 6在标准部位进行的常用植入研究的适用性,特别是考虑到其在临床相关植入部位对降解动力学缺乏可靠预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40e8/10058192/54df00918415/jfb-14-00168-g001.jpg

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