Two-Step Energy Transfer Dynamics in Conjugated Polymer and Dye-Labeled Aptamer-Based Potassium Ion Detection Assay

  • Kim, Inhong
  • Jung, Ji-Eun
  • Lee, Woojin
  • Park, Seongho
  • Kim, Heedae
  • ... Woo, Han Young
  • 외 2명
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초록

We recently implemented highly sensitive detection systems for photo-sensitizing potassium ions (K+) based on two-step Forster resonance energy transfer (FRET). As a successive study for quantitative understanding of energy transfer processes in terms of the exciton population, we investigated the fluorescence decay dynamics in conjugated polymers and an aptamer-based 6-carboxyfluorescein (6-FAM)/6-carboxytetramethylrhodamine (TAMRA) complex. In the presence of K+ ions, the Guanine-rich aptamer enabled efficient two-step resonance energy transfer from conjugated polymers to dyed pairs of 6-FAM and TAMRA through the G-quadruplex phase. Although the fluorescence decay time of TAMRA barely changed, the fluorescence intensity was significantly increased. We also found that 6-FAM showed a decreased exciton population due the compensation of energy transfer to TAMRA by FRET from conjugated polymers, but a fluorescence quenching also occurred concomitantly. Consequently, the fluorescence intensity of TAMRA showed a 4-fold enhancement, where the initial transfer efficiency (similar to 300%) rapidly saturated within similar to 0.5 ns and the plateau of transfer efficiency (similar to 230%) remained afterward.

키워드

FRETtime-resolved photoluminescencetwo-step FRETpotassium ion detectionG-QUADRUPLEXFRETSINGLEPOLYELECTROLYTEEFFICIENCYACCEPTORS
제목
Two-Step Energy Transfer Dynamics in Conjugated Polymer and Dye-Labeled Aptamer-Based Potassium Ion Detection Assay
저자
Kim, InhongJung, Ji-EunLee, WoojinPark, SeonghoKim, HeedaeJho, Young-DahlWoo, Han YoungKyhm, Kwangseuk
DOI
10.3390/polym11071206
발행일
2019-07
유형
Article
저널명
Polymers
11
7