Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring
Health status transitions are reflected as characteristic changes in molecular composition of biofluids. Here, the authors apply infrared molecular fingerprinting and reveal that blood-based phenotypes are sufficiently stable over time, providing the basis for time- and cost-effective health monitor...
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Nature Portfolio
2021
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oai:doaj.org-article:a64d2385b6e94d4bad7511241b69e2bb2021-12-02T15:52:50ZStability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring10.1038/s41467-021-21668-52041-1723https://doaj.org/article/a64d2385b6e94d4bad7511241b69e2bb2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21668-5https://doaj.org/toc/2041-1723Health status transitions are reflected as characteristic changes in molecular composition of biofluids. Here, the authors apply infrared molecular fingerprinting and reveal that blood-based phenotypes are sufficiently stable over time, providing the basis for time- and cost-effective health monitoring.Marinus HuberKosmas V. KepesidisLiudmila VoroninaMaša BožićMichael TrubetskovNadia HarbeckFerenc KrauszMihaela ŽigmanNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021) |
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Science Q Marinus Huber Kosmas V. Kepesidis Liudmila Voronina Maša Božić Michael Trubetskov Nadia Harbeck Ferenc Krausz Mihaela Žigman Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
description |
Health status transitions are reflected as characteristic changes in molecular composition of biofluids. Here, the authors apply infrared molecular fingerprinting and reveal that blood-based phenotypes are sufficiently stable over time, providing the basis for time- and cost-effective health monitoring. |
format |
article |
author |
Marinus Huber Kosmas V. Kepesidis Liudmila Voronina Maša Božić Michael Trubetskov Nadia Harbeck Ferenc Krausz Mihaela Žigman |
author_facet |
Marinus Huber Kosmas V. Kepesidis Liudmila Voronina Maša Božić Michael Trubetskov Nadia Harbeck Ferenc Krausz Mihaela Žigman |
author_sort |
Marinus Huber |
title |
Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
title_short |
Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
title_full |
Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
title_fullStr |
Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
title_full_unstemmed |
Stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
title_sort |
stability of person-specific blood-based infrared molecular fingerprints opens up prospects for health monitoring |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/a64d2385b6e94d4bad7511241b69e2bb |
work_keys_str_mv |
AT marinushuber stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT kosmasvkepesidis stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT liudmilavoronina stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT masabozic stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT michaeltrubetskov stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT nadiaharbeck stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT ferenckrausz stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring AT mihaelazigman stabilityofpersonspecificbloodbasedinfraredmolecularfingerprintsopensupprospectsforhealthmonitoring |
_version_ |
1718385589936455680 |