A cellulose-based photoacoustic sensor to measure heparin concentration and activity in human blood samples

Heparin is an indispensable drug in anticoagulation therapy but with a narrow therapeutic window, which dictates regular testing and dose adjustment. However, current monitoring tools have a long turnaround time or are operator intensive. In this work, we describe a cellulose-based photoacoustic sen...

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Veröffentlicht in:Biosensors & bioelectronics 2019-02, Vol.126, p.831-837
Hauptverfasser: Jeevarathinam, Ananthakrishnan Soundaram, Pai, Navin, Huang, Kevin, Hariri, Ali, Wang, Junxin, Bai, Yuting, Wang, Lu, Hancock, Tiffany, Keys, Stanley, Penny, William, Jokerst, Jesse V.
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Sprache:eng
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Zusammenfassung:Heparin is an indispensable drug in anticoagulation therapy but with a narrow therapeutic window, which dictates regular testing and dose adjustment. However, current monitoring tools have a long turnaround time or are operator intensive. In this work, we describe a cellulose-based photoacoustic sensor for heparin. The sensors have a turnaround time of 6 min for whole blood samples and 3 min for plasma samples regardless of heparin concentration. These sensors have a limit of detection of 0.28 U/ml heparin in human plasma and 0.29 U/ml in whole blood with a linear response (Pearson's r = 0.99) from 0 to 2 U/ml heparin in plasma and blood samples. The relative standard deviation was
ISSN:0956-5663
1873-4235
DOI:10.1016/j.bios.2018.11.052