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宽 pH 响应传感器的胃和肠道功能障碍的定量光声诊断。

Quantitative Photoacoustic Diagnosis of Gastric and Intestinal Dysfunctions with a Broad pH-Responsive Sensor.

机构信息

State Key Laboratory of Molecular Vaccinology and Molecular Diagnosis & Center for Molecular Imaging and Translational Medicine, School of Public Health , Xiamen University , Xiamen 361102 , P.R. China.

Translational Medicine Center, State Key Laboratory of Respiratory Disease, The Second Affiliated Hospital , Guangzhou Medical University , Guangzhou 510260 , P.R. China.

出版信息

ACS Nano. 2019 Aug 27;13(8):9561-9570. doi: 10.1021/acsnano.9b04541. Epub 2019 Aug 2.

Abstract

Gastrointestinal diseases affect many people in the world and significantly impair life quality and burden the healthcare system. The functional parameters of the gastrointestinal tract such as motility and pH can effectively reflect the changes of gastrointestinal activity in physiological and pathological conditions. Thus, a noninvasive method for real-time and quantitative measurement of gastrointestinal functional parameters is highly desired. At present, there are many strategies widely used for the diagnosis of gastrointestinal diseases in clinic, including X-ray barium meal examination, ultrasound imaging, radionuclide examination, endoscopy, . However, these methods are limited in determining the gastrointestinal status and cannot provide comprehensive quantitative information. Photoacoustic imaging (PAI) is a rapid noninvasive real-time imaging technique in which multiple types of functional and quantitative information can be simultaneously obtained. Unfortunately, very few ratiometric PAI contrast agents have been reported for quantification of gastrointestinal functional parameters . In this work, a broad, pH-responsive ratiometric sensor based on polyaniline and Au triangular nanoplates was developed. Utilizing the sensor as a contrast agent, PAI served as an all-in-one technique, accurately measuring the gastrointestinal functional parameters in a single test. Notably, this sensor was examined to be ultrasensitive with pH responses as fast as 0.6 s and durability as long as 24 h, and was repeatable and reversible for longitudinal monitoring. The quantitative results demonstrated a significant disorder in motility and decrease in pH for gastric and duodenal ulcers. Collectively, the combination of PAI and this broad pH-responsive sensor might be a promising candidate for quantitative diagnosis of gastrointestinal diseases.

摘要

胃肠道疾病影响着世界上的许多人,显著降低了生活质量,并给医疗保健系统带来了负担。胃肠道的功能参数,如蠕动和 pH 值,可以有效地反映生理和病理条件下胃肠道活动的变化。因此,人们非常希望有一种非侵入性的方法来实时定量测量胃肠道功能参数。目前,临床上有许多用于诊断胃肠道疾病的策略,包括 X 射线钡餐检查、超声成像、放射性核素检查、内窥镜检查等。然而,这些方法在确定胃肠道状态方面存在局限性,无法提供全面的定量信息。光声成像是一种快速、非侵入性的实时成像技术,可以同时获得多种类型的功能和定量信息。遗憾的是,用于定量胃肠道功能参数的比率型光声成像对比剂却非常少。在这项工作中,开发了一种基于聚苯胺和 Au 三角纳米片的广谱、对 pH 响应的比率型传感器。利用该传感器作为对比剂,光声成像是一种集多种功能于一体的技术,可以在单次测试中准确测量胃肠道的功能参数。值得注意的是,该传感器具有超快的 pH 响应(快至 0.6 s)和长达 24 小时的耐用性,并且具有重复性和可逆性,可进行纵向监测。定量结果表明,胃和十二指肠溃疡的蠕动明显紊乱,pH 值降低。总之,光声成像与这种广谱 pH 响应传感器的结合可能是胃肠道疾病定量诊断的一种有前途的候选方法。

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