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A cardiovascular occlusion method based on the use of a smart hydrogel

机译:一种基于使用智能水凝胶的心血管闭塞方法

摘要

Smart hydrogels for biomedical applications are highly researched materials. However, integrating them into a device for implantation is difficult. This paper investigates an integrated delivery device designed to deliver an electro-responsive hydrogel to a target location inside a blood vessel with the purpose of creating an occlusion. The paper describes the synthesis and characterization of a Pluronic/methacrylic acid sodium salt electro-responsive hydrogel. Application of an electrical bias decelerates the expansion of the hydrogel. An integrated delivery system was manufactured to deliver the hydrogel to the target location in the body. Ex vivo and in vivo experiments in the carotid artery of sheep were used to validate the concept. The hydrogel was able to completely occlude the blood vessel reducing the blood flow from 245 to 0 ml/min after implantation. Ex vivo experiments showed that the hydrogel was able to withstand physiological blood pressures of > 270 mm center dot Hg without dislodgement. The results showed that the electro-responsive hydrogel used in this paper can be used to create a long-term occlusion in a blood vessel without any apparent side effects. The delivery system developed is a promising device for the delivery of electro-responsive hydrogels.
机译:用于生物医学的智能水凝胶是经过高度研究的材料。然而,将它们集成到用于植入的装置中是困难的。本文研究了一种集成的输送装置,该装置旨在将电响应水凝胶输送到血管内的目标位置,以产生阻塞。本文描述了Pluronic /甲基丙烯酸钠盐电响应水凝胶的合成和表征。电偏压的施加使水凝胶的膨胀减速。制造了集成的输送系统以将水凝胶输送到体内的目标位置。绵羊颈动脉的离体和体内实验被用来验证这一概念。在植入后,水凝胶能够完全阻塞血管,从而将血液流量从245降低至0 ml / min。离体实验表明,水凝胶能够承受> 270 mm中心点Hg的生理血压而不会移位。结果表明,本文使用的电响应水凝胶可用于在血管中形成长期闭塞,而没有任何明显的副作用。开发的输送系统是用于输送电响应水凝胶的有前途的设备。

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