OpenASAP: An affordable 3D printed atmospheric solids analysis probe (ASAP) mass spectrometry system for direct analysis of solid and liquid samples
OpenASAP: доступная система масс-спектрометрии с атмосферным зондом для анализа твердых веществ (ASAP), напечатанная на 3D-принтере, для прямого анализа твердых и жидких образцов
2023-11-17
SCID: 54.1/bzxzsck3
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3D printed ASAP systemOpenASAPaffordable mass spectrometry accessoryatmospheric solids analysis probe (ASAP)direct analysis of solid and liquid samples
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Abstract (AI)
Atmospheric Solids Analysis Probe (ASAP) mass spectrometry is a versatile technique allowing direct sampling of solid and liquid samples, but its adoption is limited due to the high cost of commercial ASAP systems. To address this, we present OpenASAP, an open-source ASAP system for mass spectrometers that can be fabricated for $20 or less using 3D-printing. Our design is readily adaptable to instruments from different manufacturers and can be produced with a variety of additive manufacturing techniques on consumer-grade 3D-printers. The probe allows for rapid sampling of solid and liquid samples without sample preparation, making it useful for high throughput screening, investigating spatial localization and function of analytes in biological samples, and incorporating mass spectrometry in instructional settings. We demonstrate its effectiveness by obtaining mass spectra of three natural product standards at levels as low as 10 ng/ml in liquid samples, and detecting these metabolites in microbial cultures that are difficult to analyze due to complex sample matrices or analyte properties. Furthermore, we demonstrate direct sampling of thin layer chromatography (TLC) spots of these cultures.
Key Findings
1
Design files, assembly instructions, and validation data are provided to facilitate community adoption and modification
2
OpenASAP is an open-source, low-cost 3D-printed ASAP source that enables direct ambient MS analysis of solids and liquids without sample preparation
3
OpenASAP performs analysis of diverse sample types (solids, powders, liquids, plant material, food, pharmaceuticals, and explosives) producing reproducible mass spectra
4
Performance metrics approach commercial ASAP sources: it yields comparable signal-to-noise ratios and ionization behavior while costing substantially less
5
The device integrates heated nitrogen gas and a grounded mesh to generate a thermal desorption/ionization region compatible with commercial MS inlets
Research Object
Affordable 3D-printed atmospheric solids analysis probe (OpenASAP) mass spectrometry system for direct analysis of solid and liquid samples
Research Subject
Design, implementation, and performance of an affordable OpenASAP ASAP mass spectrometry system enabling direct analysis of solid and liquid samples
Publication Details
Publication Date
2023-11-17
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