A comparison study of macrocyclic hosts functionalized reduced graphene oxide for electrochemical recognition of tadalafil.
Biosens Bioelectron
; 89(Pt 1): 361-369, 2017 Mar 15.
Article
em En
| MEDLINE
| ID: mdl-27436432
The present work described the comparison of ß-cyclodextrin (ß-CD) and p-sulfonated calix[6]arene (SCX6) functionalized reduced graphene oxide (RGO) for recognition of tadalafil. In this study, tadalafil and two macrocycles (ß-CD and SCX6) were selected as the guest and host molecules, respectively. The inclusion complexes of ß-CD/tadalafil and SCX6/tadalafil were studied by UV spectroscopy and molecular simulation calculations, proving the higher supermolecular recognition capability of SCX6 than ß-CD towards tadalafil. The ß-CD@RGO and SCX6@RGO composites were prepared by a wet-chemical route. The obtained composites were characterized by Fourier transform infrared spectrometry, thermogravimetric analysis, atomic force microscopy, and zeta potential. The SCX6@RGO showed a higher electrochemical response than ß-CD@RGO, which was caused by the higher recognition capability of SCX6 than ß-CD. By combining the merits of SCX6 and the RGO, a sensitive electrochemical sensing platform was developed based on the SCX6@RGO nanohybrids. A linear response range of 0.1-50 µM and 50-1000 µM for tadalafil with a low detection limit of 0.045 µM (S/N=3) was obtained by using this method. The constructed sensing platform was successfully used to determine tadalafil in herbal sexual health products and spiked human serum samples, suggesting its promising analytical applications for the trace level determination of tadalafil.
Palavras-chave
Texto completo:
1
Coleções:
01-internacional
Base de dados:
MEDLINE
Assunto principal:
Fenóis
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Vasodilatadores
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Calixarenos
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Beta-Ciclodextrinas
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Técnicas Eletroquímicas
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Tadalafila
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Grafite
Tipo de estudo:
Evaluation_studies
Limite:
Humans
Idioma:
En
Revista:
Biosens Bioelectron
Assunto da revista:
BIOTECNOLOGIA
Ano de publicação:
2017
Tipo de documento:
Article
País de publicação:
Reino Unido