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反向离子电渗疗法:一种用于血糖监测的非侵入性方法的开发。

Reverse iontophoresis: development of a noninvasive approach for glucose monitoring.

作者信息

Rao G, Glikfeld P, Guy R H

机构信息

Department of Pharmacy, University of California, San Francisco 94143-0446.

出版信息

Pharm Res. 1993 Dec;10(12):1751-5. doi: 10.1023/a:1018926215306.

Abstract

Solvent flow generated during iontophoresis can be used to convect neutral molecules through the skin, thereby greatly enhancing their flux. This concept was exploited to realize noninvasive glucose measurement by its iontophoretic extraction from the subcutaneous tissue. The hypothesis was tested in vitro using hairless mouse skin. The dermal surface was bathed with a glucose solution; chambers on the epidermal surface housed the current delivery electrodes. Iontophoresis (at 0.36 mA/cm2) was performed for 2 hr, at the end of which the solutions in contact with the electrodes were analyzed. The amount extracted was proportional to the glucose solution concentration bathing the dermis. Higher radioactivity levels were found at the anode than at the cathode, possibly because of glucose metabolism during its outward transport across the skin. Glucose biotransformation results in negatively charged metabolites which migrate to the anode. Two sensitive glucose sensors were developed; one was selective for glucose, the other for glucose and related compounds. Both sensors indicated the presence of glucose at the cathode but an abnormally high value was also recorded at the anode. This signal, however, was not due to glucose but rather to electroactive ascorbate withdrawn from the skin. Finally, a system has been developed with which glucose can be extracted noninvasively from the subcutaneous tissue and unambiguously measured. Whether iontophoretic glucose sampling in vivo will be equally successful remains to be answered.

摘要

离子电渗疗法过程中产生的溶剂流可用于将中性分子对流通过皮肤,从而极大地提高它们的通量。这一概念被用于通过从皮下组织进行离子电渗提取来实现无创血糖测量。该假设在体外使用无毛小鼠皮肤进行了测试。真皮表面用葡萄糖溶液冲洗;表皮表面的腔室放置电流输送电极。以0.36 mA/cm²的电流进行离子电渗2小时,结束时分析与电极接触的溶液。提取的量与冲洗真皮的葡萄糖溶液浓度成正比。在阳极发现的放射性水平高于阴极,这可能是由于葡萄糖在向外穿过皮肤的运输过程中发生了代谢。葡萄糖生物转化产生带负电荷的代谢物,这些代谢物迁移到阳极。开发了两种灵敏的葡萄糖传感器;一种对葡萄糖具有选择性,另一种对葡萄糖及相关化合物具有选择性。两种传感器都表明阴极存在葡萄糖,但阳极也记录到异常高的值。然而,该信号并非由葡萄糖引起,而是由从皮肤中提取的电活性抗坏血酸引起。最后,开发了一种系统,利用该系统可以从皮下组织无创提取并明确测量葡萄糖。离子电渗葡萄糖采样在体内是否同样成功仍有待解答。

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