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Updated: Nov 23, 2025

High-throughput Detection Method for Influenza Virus
Published on: February 4, 2012
Detection and quantification of Covid-19 antiviral drugs in biological fluids and tissues
Maria A Acquavia1, Luca Foti2, Raffaella Pascale2
1Università Degli Studi Della Basilicata, Dipartimento di Scienze, Via Dell'Ateneo Lucano, 10-85100, Potenza, Italy; ALMAGISI S.r.l Corso Italia, 27-39100, Bolzano, Italy.
Abstract:
Since coronavirus disease 2019 (COVID-19) started as a fast-spreading pandemic, causing a huge number of deaths worldwide, several therapeutic options have been tested to counteract or reduce the clinical symptoms of patients infected with the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Currently, no specific drugs for COVID-19 are available, but many antiviral agents have been authorised by several national agencies. Most of them are under investigation in both preclinical and clinical trials; however, pharmacokinetic and metabolism studies are needed to identify the most suitable dose to achieve the desired effect on SARS-CoV-2. Therefore, the efforts of the scientific community have focused on the screening of therapies able to counteract the most severe effects of the infection, as well as on the search of sensitive and selective analytical methods for drug detection in biological matrices, both fluids and tissues. In the last decade, many analytical methods have been proposed for the detection and quantification of antiviral compounds currently being tested for COVID-19 treatment. In this review, a critical discussion on the overall analytical procedure is provided, i.e (a) sample pre-treatment and extraction methods such as protein precipitation (PP), solid-phase extraction (SPE), liquid-liquid extraction (LLE), ultrasound-assisted extraction (UAE) and QuEChERS (quick, easy, cheap, effective, rugged and safe), (b) detection and quantification methods such as potentiometry, spectrofluorimetry and mass spectrometry (MS) as well as (c) methods including a preliminary separation step, such as high performance liquid chromatography (HPLC) and capillary electrophoresis (CE) coupled to UV-Vis or MS detection. Further current trends, advantages and disadvantages and prospects of these methods have been discussed, to help the analytical advances in reducing the harm caused by the SARS-CoV-2 virus.
Insights
Analytical methods are crucial for detecting antiviral drugs used to treat coronavirus disease 2019 (COVID-19). This review critically discusses sample preparation, detection techniques, and separation methods for effective SARS-CoV-2 therapeutic monitoring.
Area of Science:
- Analytical Chemistry
- Pharmacology
- Infectious Diseases
Background:
- The COVID-19 pandemic necessitates effective treatments for SARS-CoV-2 infection.
- Currently, no specific antiviral drugs are universally approved, with many under investigation.
- Pharmacokinetic and metabolism studies are vital for optimizing drug dosages.
Purpose of the Study:
- To critically review analytical methods for detecting and quantifying antiviral compounds used in COVID-19 treatment.
- To discuss advancements in sample preparation, detection, and separation techniques for biological matrices.
- To provide insights into current trends, advantages, disadvantages, and future prospects of these analytical methods.
Main Methods:
- Sample pre-treatment and extraction: protein precipitation (PP), solid-phase extraction (SPE), liquid-liquid extraction (LLE), ultrasound-assisted extraction (UAE), and QuEChERS.
- Detection and quantification: potentiometry, spectrofluorimetry, and mass spectrometry (MS).
- Separation techniques coupled with detection: high-performance liquid chromatography (HPLC) and capillary electrophoresis (CE) with UV-Vis or MS detection.
Main Results:
- A comprehensive overview of various analytical procedures for antiviral drug analysis in biological samples.
- Discussion on the strengths and limitations of different extraction and detection methodologies.
- Identification of trends and future directions in analytical method development for COVID-19 therapeutics.
Conclusions:
- Sensitive and selective analytical methods are essential for monitoring SARS-CoV-2 antiviral therapies.
- Advancements in analytical techniques contribute to optimizing drug efficacy and patient safety.
- Further research is needed to refine methods for precise drug quantification in complex biological matrices.

