A Conjugated Polymer‐Based Portable Smartphone Platform for Sensitive and Point‐Of‐Care Detection of Monoamine Neurotransmitter

Author:

Zehra Nehal12ORCID,Malik Akhtar H.3ORCID,Parui Retwik1ORCID,Hussain Sameer4ORCID,Krishnan Iyer Parameswar156ORCID

Affiliation:

1. Department of Chemistry Indian Institute of Technology Guwahati Guwahati 781039 India

2. Department of Chemistry Shia P.G. College Lucknow 226020 U.P. India

3. Department of Chemistry Government Degree College Sopore Sopore, J & K 193201 India

4. School of Chemistry Xi'an Jiaotong University Xi'an 710049 Shaanxi China

5. Centre for Nanotechnology Indian Institute of Technology Guwahati Guwahati 781039. India

6. School of Health Science and Technology Indian Institute of Technology Guwahati Guwahati 781039. India

Abstract

AbstractThe precise and effective detection of neurotransmitters (NTs) is crucial for clinical investigation of neuronal processes, and timely monitoring of NT‐related chronic diseases. However, sensitive detection of specific NT with unprecedented selectivity is highly challenging due to similarities in chemical and electronic structures of various interfering neurochemicals. Herein, an anionic conjugated polyelectrolyte Poly[(9,9‐bis(4’‐sulfonatobutyl)fluorene‐co‐alt‐1,4‐phenylene) sodium], PFPS was rationally designed and synthesized for amplified detection and point‐of‐care (PoC) determination of monoamine neurotransmitter, serotonin (5‐Hydroxy tryptamine or 5‐HT, also diagnostic biomarker of carcinoid tumor) in human blood plasma. The PFPS displayed a remarkable sensing response with an exceptionally high fluorescence quenching constant of 1.14×105 M−1 and an ultralow detection limit of 0.67 μM or 0.142 ppm, much below the clinical range. Furthermore, a smartphone‐enabled portable platform was constructed for real‐time onsite detection of 5‐HT by quantification of visual fluorescence response of PFPS into RGB values using a color recognizer android application. The smartphone platform could be readily applied for convenient, non‐invasive PoC testing of 5‐HT levels in complex biological fluids accurately and is expected to revolutionize clinical diagnosis and personalized health care devices.

Publisher

Wiley

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