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基于泡沫的外周闭塞装置的愈合和有效性的微观评估。

Microscopic Assessment of Healing and Effectiveness of a Foam-Based Peripheral Occlusion Device.

机构信息

Department of Veterinary Pathobiology, Texas A&M University, College Station, Texas 77845-4467, United States.

Department of Biomedical Engineering, Texas A&M University, College Station, Texas 77843-3120, United States.

出版信息

ACS Biomater Sci Eng. 2020 May 11;6(5):2588-2599. doi: 10.1021/acsbiomaterials.9b00895. Epub 2019 Sep 23.

Abstract

The IMPEDE Embolization Plug is a catheter-delivered vascular occlusion device that utilizes a porous shape memory polymer foam as a scaffold for thrombus formation and distal coils to anchor the device within the vessel. In this study, we investigated the biological response of porcine arteries to the IMPEDE device by assessing the extent of healing and overall effectiveness in occluding the vessel at 30, 60, and 90 days. Compared to control devices (Amplatzer Vascular Plug and Nester Embolization Coils), the host response to IMPEDE showed increased cellular infiltration (accommodated by the foam scaffold), which led to advanced healing of the initial thrombus to mature collagenous connective tissue (confirmed by transmission electron microscopy (TEM)). Over time, the host response to the IMPEDE device included degradation of the foam by multinucleated giant cells, which promoted fibrin and polymer degradation and advanced the healing response. Device effectiveness, in terms of vessel occlusion, was evaluated histologically by assessing the degree of recanalization. Although instances of recanalization were often observed at all time points for both control and test articles, the mature connective tissue within the foam scaffold of the IMPEDE devices improved percent vessel occlusion; when recanalization was observed in IMPEDE-treated vessels, channels were exclusively peri-device rather than intradevice, as often observed in the controls, and the vessels mostly remained >75% occluded. Although total vessel occlusion provides the optimal ischemic effect, in cardiovascular pathology, there is a progressive ischemic effect on the downstream vasculature as a vessel narrows. As such, we expect a sustained ischemic therapeutic effect to be observed in vessels greater than 75% occluded. Overall, the current study suggests the IMPEDE device presents advantages over controls by promoting an enhanced degree of healing within the foam scaffold, which decreases the likelihood of intradevice recanalization and ultimately may lead to a sustained ischemic therapeutic effect.

摘要

IMPEDE 栓塞塞是一种通过导管输送的血管闭塞装置,它利用多孔形状记忆聚合物泡沫作为支架促进血栓形成,并利用远端的线圈将装置锚定于血管内。在这项研究中,我们通过评估 30、60 和 90 天时的愈合程度和血管闭塞的总体效果,研究了猪动脉对 IMPEDE 装置的生物学反应。与对照装置(Amplatzer 血管塞和 Nester 栓塞线圈)相比,IMPEDE 引起的宿主反应显示出细胞浸润的增加(由泡沫支架容纳),这导致初始血栓向成熟胶原结缔组织的愈合(通过透射电子显微镜(TEM)证实)。随着时间的推移,宿主对 IMPEDE 装置的反应包括多核巨细胞对泡沫的降解,这促进了纤维蛋白和聚合物的降解,并促进了愈合反应。通过评估再通程度,从血管闭塞的角度评估了装置的有效性。尽管在所有时间点都观察到对照和试验物品的再通实例,但 IMPEDE 装置中的泡沫支架内成熟的结缔组织改善了血管闭塞的百分比;当在 IMPEDE 处理的血管中观察到再通时,通道仅位于设备周围,而不是设备内,这与对照物中经常观察到的情况一样,并且血管大多保持 >75%闭塞。尽管完全血管闭塞提供了最佳的缺血效果,但在心血管病理学中,随着血管变窄,下游血管会逐渐出现缺血效果。因此,我们预计在闭塞程度大于 75%的血管中会观察到持续的缺血治疗效果。总的来说,目前的研究表明,与对照物相比,IMPEDE 装置通过促进泡沫支架内愈合程度的提高,降低了设备内再通的可能性,并最终可能导致持续的缺血治疗效果,具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ae2/7380656/d5d4e9060718/nihms-1607899-f0002.jpg

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