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首页> 外文期刊>Biomaterials >USPIO-labeled textile materials for non-invasive MR imaging of tissue-engineered vascular grafts
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USPIO-labeled textile materials for non-invasive MR imaging of tissue-engineered vascular grafts

机译:USPIO标记的纺织材料,用于组织工程化血管移植物的非侵入性MR成像

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摘要

Non-invasive imaging might assist in the clinical translation of tissue-engineered vascular grafts (TEVG). It can e.g. be used to facilitate the implantation of TEVG, to longitudinally monitor their localization and function, and to provide non-invasive and quantitative feedback on their remodeling and resorption. We here incorporated ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles into polyvinylidene fluoride (PVDF)-based textile fibers, and used them to prepare imageable tissue-engineered vascular grafts (iTEVG). The USPIO-labeled scaffold materials were molded with a mixture of fibrin, fibroblasts and smooth muscle cells, and then endothelialized in a bioreactor under physiological flow conditions. The resulting grafts could be sensitively detected using T1-, T2- and T2*-weighted MRI, both during bioreactor cultivation and upon surgical implantation into sheep, in which they were used as an arteriovenous shunt between the carotid artery and the jugular vein. In vivo, the iTEVG were shown to be biocompatible and functional. Post-mortem ex vivo analyses provided evidence for efficient endothelialization and for endogenous neo-vascularization within the biohybrid vessel wall. These findings show that labeling polymer-based textile materials with MR contrast agents is straightforward and safe, and they indicate that such theranostic tissue engineering approaches might be highly useful for improving the production, performance, personalization and translation of biohybrid vascular grafts. (C) 2014 Elsevier Ltd. All rights reserved.
机译:非侵入性成像可能有助于组织工程血管移植物(TEVG)的临床翻译。它可以例如可用于促进TEVG的植入,纵向监测其定位和功能,并提供有关其重塑和吸收的非侵入性和定量反馈。我们在这里将超小型超顺磁性氧化铁(USPIO)纳米颗粒掺入基于聚偏二氟乙烯(PVDF)的纺织纤维中,并用它们来制备可成像的组织工程化血管移植物(iTEVG)。将USPIO标记的支架材料与血纤蛋白,成纤维细胞和平滑肌细胞的混合物一起成型,然后在生物反应器中在生理流动条件下进行内皮化。在生物反应器培养期间以及外科植入绵羊后,都可以使用T1,T2和T2 *加权MRI灵敏地检测到所得的移植物,其中它们被用作颈动脉和颈静脉之间的动静脉分流器。在体内,iTEVG被证明具有生物相容性和功能性。死后离体分析为生物混合血管壁内有效的内皮化和内源性新血管形成提供了证据。这些发现表明,用MR造影剂标记基于聚合物的纺织材料是直接且安全的,并且它们表明,这种治疗学组织工程学方法对于改善生物杂交血管移植物的生产,性能,个性化和翻译可能非常有用。 (C)2014 Elsevier Ltd.保留所有权利。

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