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一种用于实时监测大鼠穴位中一氧化氮的敏感针灸针微传感器。

A sensitive acupuncture needle microsensor for real-time monitoring of nitric oxide in acupoints of rats.

机构信息

School of Laboratory Medicine, Hubei University of Chinese Medicine, 1 Huangjia Lake West Road, Wuhan, 430065, China.

Hubei Provincial Collaborative Innovation Center of Preventive Treatment, 1 Huangjia Lake West Road, Wuhan, 430065, China.

出版信息

Sci Rep. 2017 Jul 25;7(1):6446. doi: 10.1038/s41598-017-06657-3.

Abstract

This study reports an acupuncture needle modified with an iron-porphyrin functionalized graphene composite (FGPC) for real-time monitoring of nitric oxide (NO) release in acupoints of rats. A gold film was first deposited to the needle surface to enhance the conductivity. The FGPC was prepared via hydrothermal synthesis, and subsequently applied to the tip surface of acupuncture needle by electrochemical deposition method. The functionalized needle enabled a specific and sensitive detection of NO based on the favorably catalytic properties of iron-porphyrin and the excellent conductivity of graphene. Amperometric data showed that the needle achieved not only a low detection limit down to 3.2 nM in PBS solution, but also a satisfactory selectivity. Interestingly, the functionalized needle could be inserted into the acupoints of rats for real-time monitoring of NO in vivo. It was found that a remarkable response to NO was respectively obtained in different acupoints when stimulated by -arginine (-Arg), revealing that the release of NO was detectable in acupoints. We expect this work would showcase the applications of acupuncture needle in detecting some important signaling molecules in vivo, and exploring the mechanism of acupuncture treatment.

摘要

这项研究报告了一种经过铁卟啉功能化石墨烯复合材料 (FGPC) 修饰的针灸针,用于实时监测大鼠穴位中一氧化氮 (NO) 的释放。首先在针表面沉积一层金膜以提高导电性。FGPC 通过水热合成制备,然后通过电化学沉积方法应用于针灸针的尖端表面。基于铁卟啉的良好催化性能和石墨烯的优异导电性,功能化针实现了对 NO 的特异性和灵敏检测。安培数据表明,该针在 PBS 溶液中不仅达到了低至 3.2 nM 的检测限,而且具有令人满意的选择性。有趣的是,功能化针可以插入大鼠的穴位中,用于实时监测体内的 NO。结果发现,当用 L-精氨酸 (-Arg) 刺激时,不同穴位中分别得到了对 NO 的显著响应,表明穴位中可检测到 NO 的释放。我们期望这项工作将展示针灸针在体内检测一些重要信号分子方面的应用,并探索针灸治疗的机制。

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