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细胞组装细胞外基质生物缝线的开发和特性研究。

Development and characterization of biological sutures made of cell-assembled extracellular matrix.

机构信息

Univ. Bordeaux, INSERM, BIOTIS, UMR1026, Bordeaux F-33000, France.

IHU Liryc, Electrophysiology and Heart Modeling Institute, Pessac, France.

出版信息

Biofabrication. 2023 Aug 31;15(4). doi: 10.1088/1758-5090/acf1cf.

Abstract

Most vascular surgical repair procedures, such as vessel anastomoses, requires using suture materials that are mechanically efficient and accepted by the patient's body. These materials are essentially composed of synthetic polymers, such as polypropylene (Prolene) or polyglactin (Vicryl). However, once implanted in patients, they are recognized as foreign bodies, and the patient's immune system will degrade, encapsulate, or even expel them. In this study, we developed innovative biological sutures for cardiovascular surgical repairs using Cell-Assembled extracellular Matrix (CAM)-based ribbons. After a mechanical characterization of the CAM-based ribbons, sutures were made with hydrated or twisted/dried ribbons with an initial width of 2 or 3 mm. These biological sutures were mechanically characterized and used to anastomoseanimal aortas. Data showed that our biological sutures display lower permeability and higher burst resistance than standard Prolenesuture material.carotid anastomoses realized in sheep demonstrated that our biological sutures are compatible with standard vascular surgery techniques. Echography confirmed the absence of thrombus and perfect homeostasis with no blood leakage was obtained within the first 10 min after closing the anastomosis. Finally, our findings confirmed the effectiveness and clinical relevance of these innovative biological sutures.

摘要

大多数血管外科修复手术,如血管吻合,都需要使用机械性能优良且被患者身体接受的缝合材料。这些材料主要由合成聚合物组成,如聚丙烯(普理灵)或聚甘醇酸(薇乔)。然而,一旦植入患者体内,它们就会被识别为异物,患者的免疫系统会降解、包裹甚至排出它们。在这项研究中,我们使用基于细胞组装的细胞外基质(CAM)的带材开发了用于心血管外科修复的创新生物缝线。在对基于 CAM 的带材进行机械特性表征后,使用水合或扭曲/干燥的带材(初始宽度为 2 或 3 毫米)制作缝线。对这些生物缝线进行了机械特性表征,并用于吻合动物的主动脉。数据表明,我们的生物缝线的渗透性低于标准普理灵缝线材料,破裂阻力高于标准普理灵缝线材料。在绵羊中进行的颈动脉吻合术表明,我们的生物缝线与标准血管外科技术兼容。超声检查证实无血栓形成,在吻合口关闭后的最初 10 分钟内获得了完美的血液动力学平衡,没有血液渗漏。最后,我们的研究结果证实了这些创新生物缝线的有效性和临床相关性。

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