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Improving the Thromboresistivity of Chemical Sensors via Nitric Oxide Release: Fabrication and in Vivo Evaluation of NO-Releasing Oxygen-Sensing Catheters

机译:通过释放一氧化氮提高化学传感器的抗血栓形成能力:释放NO的氧气传感导管的制备和体内评估

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摘要

The development and in vivo analytical performance of a nitric oxide (NO)-releasing amperometric oxygen sensor with greatly enhanced thromboresistivity are reported. Gas permeable coatings formulated with cross-linked silicone rubber (SR) containing NO-generating compounds (diazeniumdiolates) are shown to release NO for extended periods of time (>20 h) while reducing platelet adhesion and activation. Oxygen-sensing catheters prepared by dip-coating the NO-releasing films over the outer SR tubes of the implantable devices display similar analytical response properties in vitro (sensitivity, selectivity, response times) when compared to analogous sensors prepared without the NO release coatings. Superior analytical accuracy (relative to blood PO_(2) values measured in vitro) and greatly reduced thrombus formation on the outer surface of the sensors are observed in vivo (in canine model) with the NO release PO_(2) sensors compared to control sensors (without NO release) implanted simultaneously within the same animals. Based on these preliminary studies, the use of NO release polymers to fabricate catheter-style chemical sensors may be a potential solution to lingering biocompatibility and concomitant performance problems encountered when attempting to employ such devices for continuous intravascular measurements of blood gases and electrolytes.
机译:报道了具有大大增强的血栓电阻率的释放一氧化氮(NO)的电流型氧传感器的开发和体内分析性能。显示出用交联硅橡胶(SR)配制的含有可生成NO的化合物(二醇二氮烯鎓盐)的透气性涂料可长时间(> 20小时)释放NO,同时减少血小板的粘附和活化。与没有NO释放涂层的类似传感器相比,通过在可植入设备的外部SR管上浸涂NO释放膜而制备的氧气传感导管在体外显示出相似的分析响应特性(灵敏度,选择性,响应时间)。与对照传感器相比,使用NO释放PO_(2)传感器可在体内(犬模型中)观察到卓越的分析精度(相对于体外测量的血液PO_(2)值),并大大减少了传感器外表面上的血栓形成。 (没有NO释放)同时植入相同的动物体内。基于这些初步研究,使用NO释放聚合物制造导管式化学传感器可能是持久的生物相容性和尝试将此类设备用于血液和电解质的连续血管内测量时遇到的伴随性能问题的潜在解决方案。

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