4.6 Article

A lipophilic ionic liquid-based dye for anion optodes: importance of dye lipophilicity and application to heparin measurement

Journal

ANALYST
Volume 145, Issue 16, Pages 5430-5437

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0an00335b

Keywords

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Funding

  1. JSPS KAKENHI [JP19J14315, 20H02770]
  2. Nakatani Foundation
  3. Izumi Science and Technology Foundation
  4. Masuya Memorial Basic Research Foundation
  5. Sumitomo Foundation
  6. Uehara Memorial Foundation
  7. Takahashi Industrial and Economic Research Foundation
  8. Grants-in-Aid for Scientific Research [20H02770] Funding Source: KAKEN

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Herein, a fully lipophilic ionic liquid (IL) comprising a lipophilic fluorescein anion and a trihexyltetradecylphosphonium cation was synthesized and used as the plasticizer for a plasticized poly(vinyl chloride) (PVC) membrane optode. Systematic investigation of the alkyl chain length of the fluorescein anion proved the significance of lipophilicity for obtaining the reversible absorbance measurements. A PVC membrane fabricated with the synthesized lipophilic IL was observed to comprise an unusually high dye concentration (915 mmol kg(-1)) and exhibited good sensitivity as well as response time in its sensor performance. The sensitivity of the presented PVC membrane was 26-fold higher than that of a conventional optode membrane with the same membrane thickness and the same lipophilic dye of typical dye content (1 wt%). The response time was observed to be >120-fold faster by using a significantly thinner PVC membrane (approx. 140 nm). Heparin is known to be a polyanionic anticoagulant, and the presented PVC membrane exhibited an extremely fast response (20-150 seconds) to the heparin in diluted serum within the required concentration region. Thus, the lipophilic IL-based dye could significantly improve the sensor performance in conventional optodes, especially for an analyte showing slow diffusion, such as macromolecular heparin.

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