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首页> 外文期刊>Journal of biomedical materials research, Part A >Influence of various cell-detachment solutions on endothelial cells after catheter abrasion for prosthesis colonization prior to implantation.
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Influence of various cell-detachment solutions on endothelial cells after catheter abrasion for prosthesis colonization prior to implantation.

机译:在植入前,在为假体定植而进行导管磨损后,各种细胞分离溶液对内皮细胞的影响。

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摘要

We (1) evaluated the effectiveness of different media on the detachment of endothelial cells (ECs) from a catheter brush (Cragg thrombolytic catheter system) that was previously used for endothelial cell abrasion in 10 cm human umbilical vein (HUV) segments; (2) tested the practicability of endovascular catheter brush abrasion followed by EC detachment from the catheter brush, in vitro culture of harvested ECs, and finally endothelialization of a prosthesis; and (3) analyzed the defect created by the catheter brush in HUV segments after endovascular catheter abrasion. Best results in detachment of ECs from the catheter brush were obtained with a mixture of phosphate-buffered saline + 1% human albumin. EC vitality was time-dependent in the collected HUV segments postdelivery. Harvested EC viability decreased from (26.28 +/- 5.76)% (0-3 h postdelivery) to (17.29 +/- 4.56)% (after 4-8 h). ECs were easily cultured ex vivo within 2-3 weeks; seeded on nitinol stents, they grew to confluency and formed a monolayer on the stent surface (determined by scanning electron microscopy - SEM). Histological and SEM analysis of HUV segments that had undergone previous catheter brush abrasion revealed slight disruption of the intima but intact subintimal layers. Our findings indicate an advantageous method of capturing and culturing primary ECs for gene therapy or for the analysis and diagnosis of certain blood vessel diseases, especially in cases in which endovascular intervention is performed anyway. Moreover, and of high relevance to the biomaterial field, theoretically the procedure could be used to endothelialze a prosthesis ex vivo for implantation into the patient from whom the ECs were harvested, to reduce the inherent thrombogenicity of the prosthesis.
机译:我们(1)评估了不同介质对导管刷(Cragg溶栓导管系统)从以前用于10 cm人脐静脉(HUV)段内皮细胞磨蚀的内皮细胞(EC)分离的有效性; (2)测试了血管内导管刷磨损,EC脱离导管刷,在体外培养收获的EC以及最后进行假体内皮化的可行性。 (3)分析了血管内导管磨损后导管刷在HUV段产生的缺陷。用磷酸盐缓冲盐水和1%人白蛋白的混合物可获得EC脱离导管刷的最佳结果。 EC活力在分娩后收集的HUV节段中是时间依赖性的。收获的EC生存力从(26.28 +/- 5.76)%(分娩后0-3 h)降低到(17.29 +/- 4.56)%(4-8 h后)。 EC可以在2-3周内轻松地离体培养;接种在镍钛合金支架上,它们长到汇合并在支架表面形成单层(通过扫描电子显微镜-SEM确定)。对先前已行导管刷擦伤的HUV切片的组织学和SEM分析显示,内膜有轻微破坏,但完整的内膜下层仍完整。我们的发现表明,捕获和培养用于基因治疗或某些血管疾病的分析和诊断的初级EC的有利方法,特别是在无论如何进行血管内干预的情况下。而且,并且与生物材料领域高度相关,理论上该程序可用于离体内皮假体以植入植入EC的患者体内,以减少假体固有的血栓形成性。

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