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Detecting Glucose Levels in Blood Plasma and Artificial Tear by Au(I) Complex on the Carbopol Polymer: A Microfluidic Paper-Based Method.
Luo, Jong-Jheng; Pan, Sheng-Wei; Yang, Jia-Hui; Chang, Tian-Lin; Lin, Peng-Yi; Wu, Chen-Liang; Liu, Wei-Fang; Huang, Xin-Ru; Koshevoy, Igor O; Chou, Pi-Tai; Ho, Mei-Lin.
Afiliação
  • Luo JJ; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. rupert123123123a@gmail.com.
  • Pan SW; Department of Chest Medicine, Taipei Veterans General Hospital, Taipei 11217, Taiwan. swpan25@gmail.com.
  • Yang JH; School of Medicine, National Yang-Ming University, Taipei 11221, Taiwan. swpan25@gmail.com.
  • Chang TL; Institute of Public Health, National Yang-Ming University, Taipei 11102, Taiwan. swpan25@gmail.com.
  • Lin PY; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. cindyyang850115@gmail.com.
  • Wu CL; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. leo011211@gmail.com.
  • Liu WF; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. 06333003@scu.edu.tw.
  • Huang XR; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. tony807761620047@gmail.com.
  • Koshevoy IO; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. yvonne0123weifang@gmail.com.
  • Chou PT; Department of Chemistry, Soochow University, No 70, LinShih Rd., Shih-Lin, Taipei 11102, Taiwan. lina19961016@gmail.com.
  • Ho ML; Department of Chemistry, University of Eastern Finland, 80101, Joensuu, Finland. igor.koshevoy@uef.fi.
Polymers (Basel) ; 10(9)2018 Sep 07.
Article em En | MEDLINE | ID: mdl-30960926
ABSTRACT
We report on a selective paper-based method and a microfluidic paper-based analytical device (µPAD) for the detection of human plasma glucose and tear glucose using carbopol polymer-encapsulated Au(I) complex (AuC2C6H4OMe)2(Ph2P(C6H4)3PPh2), (B5). To the best of our knowledge, this demonstrates for the first time the glucose sensing based on dual emission, i.e., fluorescence and phosphorescence, of a single type molecule on the carbopol polymer. Upon addition of human blood treated with anticoagulants to µPADs, plasma is separated from the blood and flows into the response region of the µPADs to react with carbopol polymer-encapsulated B5, in which the ratiometric luminescence is analyzed. The plasma glucose concentration can be quantitively detected at 1.0⁻50.0 mM on paper, and tear glucose can be detected at 0.1⁻4.0 mM on µPADs. Owing to the structural design, this device has superior ratiometric changes of dual emission over other Au(I) complexes for signal transduction. The encapsulation of carbopol polymer also offers long-term storage stability. In tear measurement, carbopol polymer is not only used to encapsulate enzyme to remain the enzyme's activity, but also played as a glue (or media) to connect microfluidic channel and response region. This further improves the sensitivity and limit of detection for glucose. Moreover, this sensor provides a faster response time, a wider range for glucose sensing than reported previously, and no statistical difference of the data from a commercial glucometer, allowing for practical diagnosis of diabetes and healthy individuals.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Polymers (Basel) Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Taiwan

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Polymers (Basel) Ano de publicação: 2018 Tipo de documento: Article País de afiliação: Taiwan