首页> 外文期刊>Analytical and bioanalytical chemistry >Minimally invasive technique for measuring transdermal glucose with a fluorescent biosensor
【24h】

Minimally invasive technique for measuring transdermal glucose with a fluorescent biosensor

机译:用荧光生物传感器测量透皮葡萄糖的微创技术

获取原文
获取原文并翻译 | 示例
           

摘要

There is a need for blood glucose monitoring techniques that eliminate the painful and invasive nature of current methods, while maintaining the reliability and accuracy of established medical technology. This research aims to ultimately address these shortcomings in critically ill pediatric patients. Presented in this work is an alternative, minimally invasive technique that uses microneedles (MN) for the collection of transdermal glucose (TG). Due to their comparable skin properties, diffusion studies were performed on full thickness Yucatan miniature pig skin mounted to an in-line diffusion flow cell and on different skin sites of human subjects. Collected TG samples were measured with a L255C mutant of the E. coli glucose-binding protein (GBP) with an attached fluorescent probe. The binding constant (K-d = 0.67 mu M) revealed the micromolar sensitivity and high selectivity of the his-tagged GBP biosensor for glucose, making it suitable for TG measurements. In both the animal and human models, skin permeability and TG diffusion across the skin increased with MN application. For intact and MN-treated human skin, a significant positive linear correlation (r 0.95, p 0.01) existed between TG and BG. The micromolar sensitivity of GBP minimized the volume required for interstitial fluid glucose analysis allowing MN application time (30 s) to be shortened compared to other studies. This time reduction can help in eliminating skin irritation issues and improving practical use of the technique by caregivers in the hospital. In addition, the his-tagged optical biosensor used in this work can be immobilized and used with a portable sensing fluorometer device at the point of care (POC) making this minimally invasive technology more ideal for use in the pediatric intensive care unit.
机译:需要血糖监测技术,可消除当前方法的痛苦和侵入性,同时保持既定医疗技术的可靠性和准确性。本研究旨在最终解决批判性儿科患者的这些缺点。在这项工作中提出是一种替代的,微创技术,其使用微针(MN)来集合透皮葡萄糖(TG)。由于其可比性性质,在安装在线扩散流动细胞和人受试者的不同皮肤部位的全厚度尤卡坦微型猪皮肤上进行扩散研究。用Coli葡萄糖结合蛋白(GBP)的L255C突变体测量收集的Tg样品,其中包含连接的荧光探针。结合常数(K-D =0.67μm)揭示了His标记的GBP生物传感器的微摩尔敏感性和高选择性,用于葡萄糖,使其适用于TG测量。在动物和人体模型中,皮肤渗透率和TG扩散随MN应用而增加。对于完整和Mn处理的人体皮肤,在TG和BG之间存在显着的正线性相关(R> 0.95,P <0.01)。 GBP的微摩尔敏感性最小化了间质流体葡萄糖分析所需的体积,允许与其他研究相比缩短Mn施加时间(30秒)。这次减少可以帮助消除皮肤刺激问题并通过医院的护理人员改善技术的实际使用。此外,在本工作中使用的他标记的光学生物传感器可以固定并与便携式传感荧光计装置一起使用,在护理点(POC),使得这种微创技术更适合用于儿科重症监护单元。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号