Functionalized orthopaedic implant as pH electrochemical sensing tool for smart diagnosis of hardware infection†

IF 3.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analyst Pub Date : 2024-04-29 DOI:10.1039/D4AN00253A
Luca Fiore, Vincenzo Mazzaracchio, Christian Gosti, Leonardo Duranti, Raffaele Vitiello, Giulio Maccauro and Fabiana Arduini
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Abstract

In the orthopaedic surgery field, the use of medical implants to treat a patient's bone fracture is nowadays a common practice, nevertheless, it is associated with possible cases of infection. The consequent hardware infection can lead to implant failure and systemic infections, with prolonged hospitalization, time-consuming rehabilitation treatments, and extended antibiotic therapy. Hardware infections are strictly related to bacterial adhesion to the implant, leading to infection occurrence and consequent pH decreasing from physiological level to acid pH. Here, we demonstrate the new strategy to use an orthopaedic implant functionalized with iridium oxide film as the working electrode for the potentiometric monitoring of pH in hardware infection diagnosis. A functional investigation was focused on selecting the implant material, namely titanium, titanium alloy, and stainless steel, and the component, namely screws and implants. After selecting the titanium-based implant as the working electrode and a silver wire as the reference electrode in the final configuration of the smart sensing orthopaedic implant, a calibration curve was performed in standard solutions. An equation equal to y = (0.76 ± 0.02) − (0.068 ± 0.002) x, R2 = 0.996, was obtained in the pH range of 4–8. Subsequently, hysteresis, interference, matrix effect, recovery study, and storage stability were investigated to test the overall performance of the sensing device, demonstrating the tremendous potential of electrochemical sensors to deliver the next generation of smart orthopaedic implants.

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功能化骨科植入物作为 pH 电化学传感工具,用于硬件感染的智能诊断
在骨科手术领域,使用医用植入物治疗患者骨折已成为一种常见的做法,但这也与可能出现的感染病例有关。随之而来的硬件感染可能会导致植入失败和全身感染,延长住院时间、耗时的康复治疗和抗生素治疗。硬件感染与植入物上的细菌粘附密切相关,细菌粘附会导致感染的发生,进而导致 pH 值从生理水平下降到酸性 pH 值。在此,我们展示了在硬件感染诊断中使用氧化铱薄膜功能化骨科植入物作为工作电极进行 pH 值电位监测的新策略。功能调查的重点是选择植入物材料(即钛、钛合金和不锈钢)和组件(即螺钉和植入物)。在智能传感骨科植入物的最终配置中,选择钛基植入物作为工作电极,银丝作为参比电极,然后在标准溶液中绘制校准曲线。在 pH 值为 4-8 的范围内,得到的等式为 y = (0.76 ± 0.02) - (0.068 ± 0.002) x,R2 = 0.996。随后,对滞后、干扰、基质效应、恢复研究和储存稳定性进行了研究,以测试传感装置的整体性能,证明了电化学传感器在提供下一代智能骨科植入物方面的巨大潜力。
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来源期刊
Analyst
Analyst 化学-分析化学
CiteScore
7.80
自引率
4.80%
发文量
636
审稿时长
1.9 months
期刊介绍: The home of premier fundamental discoveries, inventions and applications in the analytical and bioanalytical sciences
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