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Article

Design and Synthesis of Arylboronic Acid Chemosensors for the Fluorescent-Thin Layer Chromatography (f-TLC) Detection of Mycolactone

by
Gideon Atinga Akolgo
1,
Benjamin M. Partridge
2,
Timothy D. Craggs
2,
Kingsley Bampoe Asiedu
3 and
Richard Kwamla Amewu
1,*
1
Department of Chemistry, University of Ghana, Legon-Accra P.O. Box LG56, Ghana
2
School of Physical and Mathematical Sciences, Dainton Building, University of Sheffield, Sheffield S3 7HF, UK
3
Department of Neglected Tropical Diseases, World Health Organization, 1211 Geneva, Switzerland
*
Author to whom correspondence should be addressed.
Chemosensors 2025, 13(7), 244; https://doi.org/10.3390/chemosensors13070244
Submission received: 27 February 2025 / Revised: 27 March 2025 / Accepted: 7 April 2025 / Published: 9 July 2025

Abstract

Fluorescent chemosensors are increasingly becoming relevant in recognition chemistry due to their sensitivity, selectivity, fast response time, real-time detection capability, and low cost. Boronic acids have been reported for the recognition of mycolactone, the cytotoxin responsible for tissue damage in Buruli ulcer disease. A library of fluorescent arylboronic acid chemosensors with various signaling moieties with certain beneficial photophysical characteristics (i.e., aminoacridine, aminoquinoline, azo, BODIPY, coumarin, fluorescein, and rhodamine variants) and a recognition moiety (i.e., boronic acid unit) were rationally designed and synthesised using combinatorial approaches, purified, and fully characterised using a set of complementary spectrometric and spectroscopic techniques such as NMR, LC-MS, FT-IR, and X-ray crystallography. In addition, a complete set of basic photophysical quantities such as absorption maxima (λabsmax), emission maxima (λemmax), Stokes shift (∆λ), molar extinction coefficient (ε), fluorescence quantum yield (ΦF), and brightness were determined using UV-vis absorption and fluorescence emission spectroscopy techniques. The synthesised arylboronic acid chemosensors were investigated as chemosensors for mycolactone detection using the fluorescent-thin layer chromatography (f-TLC) method. Compound 7 (with a coumarin core) emerged the best (λabsmax = 456 nm, λemmax = 590 nm, ∆λ = 134 nm, ε = 52816 M−1cm−1, ΦF = 0.78, and brightness = 41,197 M−1cm−1).
Keywords: mycolactone; Buruli ulcer; boronic acid; chemosensor; diagnosis; molecular recognition; mycolactone; Mycobacterium ulcerans mycolactone; Buruli ulcer; boronic acid; chemosensor; diagnosis; molecular recognition; mycolactone; Mycobacterium ulcerans

Share and Cite

MDPI and ACS Style

Akolgo, G.A.; Partridge, B.M.; Craggs, T.D.; Asiedu, K.B.; Amewu, R.K. Design and Synthesis of Arylboronic Acid Chemosensors for the Fluorescent-Thin Layer Chromatography (f-TLC) Detection of Mycolactone. Chemosensors 2025, 13, 244. https://doi.org/10.3390/chemosensors13070244

AMA Style

Akolgo GA, Partridge BM, Craggs TD, Asiedu KB, Amewu RK. Design and Synthesis of Arylboronic Acid Chemosensors for the Fluorescent-Thin Layer Chromatography (f-TLC) Detection of Mycolactone. Chemosensors. 2025; 13(7):244. https://doi.org/10.3390/chemosensors13070244

Chicago/Turabian Style

Akolgo, Gideon Atinga, Benjamin M. Partridge, Timothy D. Craggs, Kingsley Bampoe Asiedu, and Richard Kwamla Amewu. 2025. "Design and Synthesis of Arylboronic Acid Chemosensors for the Fluorescent-Thin Layer Chromatography (f-TLC) Detection of Mycolactone" Chemosensors 13, no. 7: 244. https://doi.org/10.3390/chemosensors13070244

APA Style

Akolgo, G. A., Partridge, B. M., Craggs, T. D., Asiedu, K. B., & Amewu, R. K. (2025). Design and Synthesis of Arylboronic Acid Chemosensors for the Fluorescent-Thin Layer Chromatography (f-TLC) Detection of Mycolactone. Chemosensors, 13(7), 244. https://doi.org/10.3390/chemosensors13070244

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