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May 7, 2026ACS Applied Nano Materials2 citations

Aptamer-Functionalized SWCNT Optical Sensors for Selective and Robust Dopamine Detection in Physiological Media

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MSMaría Celina StefoniHYHanan YafaiARAmelia K. Ryan

Key Points

  • The aim is to improve dopamine detection in complex biological environments using aptamer-functionalized SWCNT sensors.
  • Designed SWCNT-based near-infrared fluorescent sensors for dopamine detection.
  • Evaluated three aptamer-SWCNT hybrid constructs and (GT)10-SWCNT.
  • Conducted studies in buffer and complex media like synthetic cerebrospinal fluid.
  • Tested sensors with heat, divalent cations, and various molecular passivation agents.
  • Aptamer-SWCNT sensors showed strong selectivity for dopamine over similar molecules.
  • Dynamic ranges for detection were between 30 and 200 nM.
  • Response occurred within 5 minutes after the sensor was introduced.

Abstract

Monitoring dopamine in complex biological environments is essential for understanding neurological disorders and disease diagnosis, and it presents a unique chemical challenge. In this work, we rationally designed several single-walled carbon nanotube (SWCNT)-based near-infrared fluorescent sensors for dopamine using ssDNA aptamers as selective molecular recognition elements. The performance of three dopamine-selective aptamer–SWCNT hybrids and (GT)10–SWCNT constructs was evaluated and compared for their magnitude of response, sensitivity, and selectivity to dopamine. We performed these studies in buffer, in complex media with noradrenaline and serotonin, and in synthetic cerebrospinal fluid. We evaluated sensor constructs alone, with heat + divalent cation addition, and with four different molecular passivation agents. Ultimately, sensors passivated with bovine serum albumin (BSA) demonstrated strong selectivity for dopamine compared to chemically similar molecules and increased the magnitude of response compared to (GT)10-SWCNT. Concentration–response curves in PBS, in a serotonin and noradrenaline solution, and artificial cerebrospinal fluid (aCSF) revealed dynamic ranges between 30 and 200 nM, and we found that the response occurs within 5 min. Together, these results demonstrate that dopamine aptamer-SWCNT sensors enable more selective and robust optical detection in complex biological environments compared to ssDNA-SWCNT with no inherent biological selectivity for dopamine.

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Cite This Study

Stefoni et al. (2026) studied this question.

synapsesocial.com/papers/69fbef86164b5133a91a36bchttps://doi.org/10.1021/acsanm.6c00982
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