4.6 Review

Biosensors for Managing the COVID-19 Cytokine Storm: Challenges Ahead

Journal

ACS SENSORS
Volume 5, Issue 6, Pages 1506-1513

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acssensors.0c00979

Keywords

SARS-CoV-2; IL-6; immunosensor; rapid diagnostic test; sepsis; inflammation; precision medicine

Funding

  1. FEDER/Ministerio de Ciencia, Innovacion y Universidades/Agencia Estatal de Investigacion [CTQ2017-82432R, CTQ2017-92226-EXP]
  2. Radix fellowship from IdISBa/Impost turisme sostenible/Govern de les Illes Balears
  3. Miguel Servet Program, Instituto de Salud Carlos III (ISCIII), Madrid [MS19/00201]

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The global COVID-19 pandemic has oversaturated many intensive care units to the point of collapse, leading to enormous spikes in death counts. Before critical care becomes a necessity, identifying patients who are likely to become critically ill and providing prompt treatment is a strategy to avoid ICU oversaturation. There is a consensus that a hyperinflammatory syndrome or a cytokine storm is responsible for poor outcomes in COVID-19. Measuring cytokine levels at the point of care is required in order to better understand this process. In this Perspective, we summarize the main events behind the cytokine storm in COVID-19 as well as current experimental treatments. We advocate for a new biosensor-enabled paradigm to personalize the management of COVID-19 and stratify patients. Biosensor-guided dosing and timing of immunomodulatory therapies could maximize the benefits of these anti-inflammatory treatments while minimizing deleterious effects. Biosensors will also be essential in order to detect complications such as coinfections and sepsis, which are common in immunosuppressed patients. Finally, we propose the ideal features of these biosensors using some prototypes from the recent literature as examples. Multisensors, lateral flow tests, mobile biosensors, and wearable biosensors are seen as key players for precision medicine in COVID-19.

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