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首页> 外文期刊>Cardiovascular and Interventional Radiology: A Journal of Imaging in Diagnosis and Treatment >Novel MR-Visible, Biodegradable Microspheres for Transcatheter Arterial Embolization: Experimental Study in a Rabbit Renal Model
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Novel MR-Visible, Biodegradable Microspheres for Transcatheter Arterial Embolization: Experimental Study in a Rabbit Renal Model

机译:用于经截面动脉栓塞的新型MR可见,可生物降解的微球:兔肾模型的实验研究

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摘要

Purpose To assess feasibility, embolization success, biodegradability, reperfusion, biocompatibility and in vivo visibility of novel temporary microspheres (MS) for transcatheter arterial embolization. Material and Methods In 9 New Zealand white rabbits unilateral superselective embolization of the lower kidney pole was performed with biodegradable MS made of polydioxanone (PDO) (size range 90-300 and 200-500 mu m) impregnated with super-paramagnetic iron oxide (SPIO). Magnetic resonance imaging (MRI) was performed post-interventionally to assess in vivo visibility. Embolization success was assessed on digital subtraction angiography, MRI and gross pathology. One animal was killed immediately after embolization to assess original particle appearance. 8 animals were randomly assigned to different observation periods (1, 4, 8, 12 and 16 weeks), after which control angiography and MRI were obtained to determine recanalization. Histopathological analysis was performed to determine biodegradability and biocompatibility by using dedicated quantitative assessment analysis. Results Ease of injection was moderate. Embolization was technically successful in 7 of 8 animals, one rabbit received non-selective embolization of the whole kidney and abdominal off-target embolization. Arterial occlusion was achieved in all kidneys, infarct areas in macro- and microscopic analysis confirmed embolization success. Control angiograms showed evidence of partial reperfusion. The microspheres showed extensive degradation over the course of time along with increasing inflammatory response and giant cell formation. SPIO-loaded MS were visible on MRI at all time points. Conclusions SPIO-impregnated biodegradable PDO-MS achieved effective embolization with in vivo visibility on MRI and increasing biodegradation over time while demonstrating good biocompatibility, i.e., a physiologically immune response without transformation into chronic inflammation. Further studies are needed to provide clinical applicability.
机译:目的评估用于经导管动脉栓塞的新型临时微球(MS)的可行性、栓塞成功率、生物降解性、再灌注、生物相容性和体内可见度。材料和方法在9只新西兰大白兔上,用可生物降解的聚二氧六环酮(PDO)(大小范围90-300和200-500μm)制成的MS,浸渍超顺磁性氧化铁(SPIO),对下肾极进行单侧超选择性栓塞。干预后进行磁共振成像(MRI)以评估体内可见度。通过数字减影血管造影、MRI和大体病理学评估栓塞成功率。栓塞后立即处死一只动物,以评估原始颗粒外观。将8只动物随机分配到不同的观察期(1、4、8、12和16周),然后获得对照血管造影和MRI以确定再通情况。通过专门的定量评估分析,进行组织病理学分析,以确定生物降解性和生物相容性。结果注射方便度适中。8只动物中有7只栓塞技术成功,1只兔子接受了非选择性全肾栓塞和腹部非靶向栓塞。所有肾脏均实现动脉闭塞,宏观和微观分析证实梗死区域栓塞成功。对照组血管造影显示部分再灌注。随着炎症反应和巨细胞形成的增加,微球在一段时间内表现出广泛的降解。SPIO负载的MS在所有时间点的MRI上都可见。结论SPIO浸渍的可生物降解PDO-MS可实现有效的栓塞,在MRI上显示体内可见度,并随着时间的推移增加生物降解,同时显示出良好的生物相容性,即生理免疫反应而不转化为慢性炎症。需要进一步的研究来提供临床适用性。

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