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首页> 外文期刊>Tissue engineering, Part C. Methods >In Vivo Magnetic Resonance Imaging of Type I Collagen Scaffold in Rat: Improving Visualization of Bladder and Subcutaneous Implants
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In Vivo Magnetic Resonance Imaging of Type I Collagen Scaffold in Rat: Improving Visualization of Bladder and Subcutaneous Implants

机译:I型胶原支架在大鼠体内的磁共振成像:改善膀胱和皮下植入物的可视化。

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摘要

Noninvasive monitoring of implanted scaffolds is important to understand their behavior and role in tissue engineering, in particular to follow their degradation and interaction with host tissue. Magnetic resonance imaging (MRI) is well suited for this goal, but its application is often hampered by the low contrast of scaffolds that are prepared from biomaterials such as type I collagen. The aim of this study was to test iron oxide particles incorporation in improving their MRI contrasts, and to follow their degradation and tissue interactions. Scaffolds with and without iron oxide particles were implanted either subcutaneously or on the bladder of rats. At predetermined time points, in vivo MRI were obtained and tissues were then harvested for histology analysis and transmission electron microscopy. The result showed that the incorporation of iron oxide particles improved MRI contrast of the implants, providing information on their location, shapes, and degradation. Second, the host tissue reaction to the type I collagen implants could be observed in both MRI and histology. Finally, MRI also revealed that the degradation and host tissue reaction of iron particles-loaded scaffolds differed between subcutaneous and bladder implantation, which was substantiated by histology.
机译:对植入式支架的无创监测对于了解其行为和在组织工程中的作用非常重要,尤其是要跟踪其降解和与宿主组织的相互作用。磁共振成像(MRI)非常适合此目标,但是其应用通常受到由生物材料(例如I型胶原蛋白)制备的支架对比度低的阻碍。这项研究的目的是测试掺入氧化铁颗粒以改善其MRI对比度,并跟踪其降解和组织相互作用。将有或没有氧化铁颗粒的支架植入大鼠皮下或膀胱中。在预定的时间点,获得体内MRI,然后收集组织用于组织学分析和透射电子显微镜检查。结果表明,掺入氧化铁颗粒可改善植入物的MRI对比度,提供有关植入物位置,形状和降解的信息。其次,可以在MRI和组织学中观察到宿主组织对I型胶原植入物的反应。最后,MRI还显示皮下植入和膀胱植入之间铁载体支架的降解和宿主组织反应有所不同,这在组织学上得到了证实。

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