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将液体疗法精确递送至动脉壁以治疗外周动脉疾病。

Precision delivery of liquid therapy into the arterial wall for the treatment of peripheral arterial disease.

机构信息

Department of Mechanical Engineering, University of South Alabama, Mobile, AL, 36688, USA.

Savoie Mont-Blanc University, Polytech Annecy-Chambéry, Le Bourget du Lac, France.

出版信息

Sci Rep. 2021 Sep 21;11(1):18676. doi: 10.1038/s41598-021-98063-z.

Abstract

Perfusion catheters have recently emerged as a novel approach to deliver liquid anti-proliferative agents into flow obstructed arterial segments. The purpose of this study was to determine the impact of luminal delivery pressure on liquid drug penetration into the vessel wall. An ex vivo model using harvested porcine carotid arteries and a two-dimensional computational model were utilized to determine the impact of delivery pressure of liquid therapy into the arterial wall. A pig peripheral injury model determined the impact of intra-luminal delivery pressure on drug retention. Ex vivo results demonstrated that depth of fluid penetration varies from 6.93 ± 1.90% at 0 atm to 27.75 ± 6.61% penetration of the medial layer at 0.4 atm. Computational results had similar outcomes, as penetration varied between 4.4% and 22.84%. The in vivo results demonstrated significant increase in drug delivery to the arterial tissue at 0.4 atm versus 0.1 atm at 1 h (23.43 ± 13.59 ng/mg vs. 2.49 ± 1.81 ng/mg, p = 0.026) and 7 days (0.50 ± 0.39 ng/mg vs. 0.018 ± 0.023 ng/mg, p = 0.0496). The result of this study provides an innovative strategic and technical approach to enable targeted liquid therapy.

摘要

灌注导管最近已成为一种向血流阻塞的动脉段输送液体抗增殖剂的新方法。本研究的目的是确定腔内输送压力对液体药物渗透到血管壁的影响。采用离体猪颈动脉模型和二维计算模型,确定液体治疗进入动脉壁的输送压力的影响。猪外周损伤模型确定了腔内输送压力对药物保留的影响。离体结果表明,在 0atm 时,液体渗透深度从 6.93±1.90%变化到在 0.4atm 时中膜层的 27.75±6.61%渗透。计算结果也有类似的结果,渗透在 4.4%和 22.84%之间变化。体内结果表明,在 1 小时时,0.4atm 与 0.1atm 相比,药物输送到动脉组织的量显著增加(23.43±13.59ng/mg 与 2.49±1.81ng/mg,p=0.026),在 7 天时,0.4atm 与 0.1atm 相比,药物输送到动脉组织的量也显著增加(0.50±0.39ng/mg 与 0.018±0.023ng/mg,p=0.0496)。这项研究的结果为实现靶向液体治疗提供了一种创新的策略和技术方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5778/8455692/2fbf985c6e3c/41598_2021_98063_Fig1_HTML.jpg

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