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In vitro development and in vivo application of a platinum-based electrochemical device for continuous measurements of peripheral tissue oxygen

机译:体外>斜体>开发和在体内斜晶型电化学装置的应用,用于连续测量外围组织氧气

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AbstractAcute limb ischaemia is caused by compromised tissue perfusion and requires immediate attention to reduce the occurrence of secondary complications that could lead to amputation or death. To address this, we have developed a novel platinum (Pt)-based electrochemical oxygen (O2) device for future applications in clinical monitoring of peripheral tissue ischaemia. The effect of integrating a Pt pseudo-reference electrode into the O2device was investigatedin vitrowith an optimum reduction potential of ?0.80V. A non-significant (p=0.11) decrease in sensitivity was recorded when compared against an established Pt-based O2sensor operating at ?0.65V. Furthermore, a biocompatible clinical sensor (ClinOX) was designed, demonstrating excellent linearity (R2=0.99) and sensitivity (1.41±0.02nAμM?1) for O2detection. Significant rapid decreases in the O2current duringin vivoischaemic insults in rodent limbs were reported for Pt-Pt (p<0.001) and ClinOX (p<0.01) and for ClinOX (p<0.001) in porcine limbs.Ex vivosensocompatibility investigations identified no significant difference (p=0.08) in sensitivity values over 14days of exposure to tissue homogenate. The Pt-Pt based O2design demonstrated high sensitivity for tissue ischaemia detection and thus warrants future clinical investiga
机译:<![CDATA [ 抽象 急性肢体缺血是由受损组织灌注引起的,需要立即注意减少继发性并发症,可能导致发生截肢或死亡。为了解决这个问题,我们已经开发出一种新颖的铂(Pt)为基础的电化学氧(O 2 ),用于临床监测外周组织缺血的未来的应用设备。的Pt伪参比电极集成到将O的效果 2 设备进行了研究体外以最佳的还原的?0.80V潜力。非显著( P = 0.11),当针对已建立的Pt-O相比,灵敏度下降,记录 2 在?0.65V传感器操作。此外,生物相容的临床传感器(ClinOX)的设计,这表明优异的线性度(R 2 = 0.99)和灵敏度(1.41±0.02nAμM 1 )O 2 检测。 <:INF LOC = “POST” CE> 2在将O显著迅速降低期间的电流体内在啮齿动物肢体缺血损伤报告了铂的Pt( p <0.001)和ClinOX( p <0.01)和ClinOX( p < 0.001)在猪四肢。离体:p = 0.08)中的灵敏度值在暴露的14天到组织识别无显著差异(<斜体CE> sensocompatibility调查匀浆。将Pt-Pt系0 2 设计证明了组织缺血检测,灵敏度高从而保证未来临床investiga

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