Automated Stopped-Flow Fluorimetric Sensor for Biologically Active Adamantane Derivatives Based on Zone Fluidics.
Paraskevas D TzanavarasSofia PapadimitriouConstantinos K K ZacharisPublished in: Molecules (Basel, Switzerland) (2019)
A zone-fluidics (ZF) based automated fluorimetric sensor for the determination of pharmaceutically active adamantine derivatives, i.e., amantadine (AMA), memantine (MEM) and rimantadine (RIM) is reported. Discrete zones of the analytes and reagents (o-phthalaldehyde and N-acetylcysteine) mix and react under stopped-flow conditions to yield fluorescent iso-indole derivatives (λex/ λem = 340/455 nm). The proposed ZF sensor was developed and validated to prove suitable for quality control tests (assay and content uniformity) of commercially available formulations purchased from the Greek market (EU licensed) and from non-EU web-pharmacies at a sampling rate of 16 h-1. Interestingly, a formulation obtained through the internet and produced in a third-non-EU-country (AMA capsules, 100 mg per cap), was found to be out of specifications (mean assay of 85.3%); a validated HPLC method was also applied for confirmatory purposes.
Keyphrases
- high throughput
- quality control
- deep learning
- machine learning
- structure activity relationship
- solid phase extraction
- ms ms
- drug delivery
- quantum dots
- simultaneous determination
- photodynamic therapy
- mass spectrometry
- high performance liquid chromatography
- healthcare
- molecularly imprinted
- living cells
- high resolution
- label free