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Factors that affect mass transport from drug eluting stents into the artery wall

机译:影响从药物洗脱支架到动脉壁的大量运输的因素

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摘要

Coronary artery disease can be treated by implanting a stent into the blocked region of an artery, thus enabling blood perfusion to distal vessels. Minimally invasive procedures of this nature often result in damage to the arterial tissue culminating in the re-blocking of the vessel. In an effort to alleviate this phenomenon, known as restenosis, drug eluting stents were developed. They are similar in composition to a bare metal stent but encompass a coating with therapeutic agents designed to reduce the overly aggressive healing response that contributes to restenosis. There are many variables that can influence the effectiveness of these therapeutic drugs being transported from the stent coating to and within the artery wall, many of which have been analysed and documented by researchers. However, the physical deformation of the artery substructure due to stent expansion, and its influence on a drugs ability to diffuse evenly within the artery wall have been lacking in published work to date. The paper highlights previous approaches adopted by researchers and proposes the addition of porous artery wall deformation to increase model accuracy.
机译:可以通过将支架植入动脉的阻塞区域来治疗冠状动脉疾病,从而使血液能够灌注到远端血管。这种性质的微创程序通常会导致动脉组织受损,最终导致血管再次阻塞。为了减轻这种被称为再狭窄的现象,开发了药物洗脱支架。它们的成分与裸金属支架相似,但包含带有治疗剂的涂层,该治疗剂旨在减少有助于再狭窄的过度侵袭性愈合反应。有许多变量会影响这些治疗药物从支架涂层传输至动脉壁并在动脉壁内传输的有效性,研究人员已对其中许多进行了分析和记录。然而,迄今为止,在公开的工作中还缺乏由于支架扩张引起的动脉亚结构的物理变形及其对药物在动脉壁内均匀扩散的能力的影响。该论文重点介绍了研究人员以前采用的方法,并提出了增加多孔动脉壁变形的方法,以提高模型的准确性。

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