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Paper spray ionization

Technique used in mass spectrometry From Wikipedia, the free encyclopedia

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Paper spray ionization is a technique used in mass spectrometry to produce ions from a sample to be analyzed. It is a variant of electrospray ionization.[1] The sample (for instance a few microlitres of blood or urine) is applied to a piece of paper and solvent is added. Then a high voltage is applied, which creates the ions to be analyzed with a mass spectrometer. The method, first described in 2010,[2] is relatively easy to use and can detect and measure the presence of various substances in the sample. This technique shows great potential for point-of-care clinical applications, in that important tests may be run and results obtained within a reasonable amount of time in proximity to the patient in a single visit.[3] In 2017 it was reported that a test based on paper spray ionization mass spectrometry can detect cocaine use from a subject's fingerprint.[4] It was also used to detect pesticides from the surfaces of fruits.[5]

More recently, an advanced form of Paper Spray, termed Paper Arrow, was developed. This universal approach seamlessly hyphenates Paper Chromatography and Mass Spectrometry, facilitated by on-paper ionization without requiring visual indicators. The entire process of Paper Arrow was shown to be simple and fast, requiring only 2 μL of raw biological sample. Its analytical performance is in accordance with stringent clinical guidelines, and it demonstrated superior figures of merit compared to LC-MS.[6] Paper Arrow is one of the few ambient ionization sources that has been clinically validated. In a study with 17 volunteers, blood and saliva samples were collected before and at 15, 30, 60 and 240 min after ingesting 1 g of paracetamol. Detection from stimulated saliva and plasma with PA-MS provided a reliable result that can aid in making timely treatment decisions. Moreover, participants’ views of blood and saliva sampling procedures were assessed qualitatively, showing a preference for non-invasive sampling.[7]

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