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Article in English | MEDLINE | ID: mdl-33938398

ABSTRACT

Phosphodiesterase type 5 (PDE-5) inhibitors are commonly used to treat erectile dysfunction. There is a problem with synthesis and illegal use of a wide range of analogues of the licenced drugs and a simple class-wide analytical method is required. In this work, based on structural modelling, we developed an immunological method using norneovardenafil as a hapten as it contains only the general sub-structure and the common features of sildenafil-like adulterants, such as hydrophobic centres, hydrogen-bond donor atoms and hydrogen-bond acceptor atoms. Thus theoretically it could induce production of antibody which could recognise multiple sildenafil-like adulterants. By immunising rabbits, a group-specific polyclonal antibody was obtained with the desired broad-spectrum molecular recognition performance against sildenafil-like adulterants. Then, an indirect competitive enzyme-linked immunosorbent assay (icELISA) was developed for the detection of sildenafil-like adulterants in herbal spirit drinks. Under the optimised conditions, the icELISA method showed broad linear ranges for acetildenafil, sildenafil and vardenafil respectively of 0.7 to 27.7 µg/kg, 1.0 to 70.7 µg/kg and 1.5 to 22.7 µg/kg, with half-maximal inhibition concentration (IC50) values of 4.5 µg/kg, 8.3 µg/kg and 5.7 µg/kg, respectively. For eleven herbal spirit drinks, there was good agreement between total levels of sildenafil-like adulterants measured by icELISA and levels of each of four individual adulterants determined by LC-MS/MS. In short, the developed icELISA can be employed for rapid and simple screening for adulteration of herbal spirit drinks with sildenafil-like compounds.


Subject(s)
Antibodies/chemistry , Artificially Sweetened Beverages/analysis , Dietary Supplements/analysis , Food Additives/analysis , Food Contamination/analysis , Sildenafil Citrate/chemistry , Animals , Biosensing Techniques , Chromatography, High Pressure Liquid , Drug Contamination , Enzyme-Linked Immunosorbent Assay , Haptens/chemistry , Humans , Limit of Detection , Models, Molecular , Rabbits , Tandem Mass Spectrometry
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