Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology

Aquaphotomics is a young scientific discipline based on innovative knowledge of water molecular network, which as an intrinsic part of every aqueous system is being shaped by all of its components and the properties of the environment. With a high capacity for hydrogen bonding, water molecules are e...

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Main Authors: Jelena Muncan, Roumiana Tsenkova
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/24/15/2742
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spelling doaj-c75046b266864a67b4e9a10cae9400f12020-11-25T02:20:26ZengMDPI AGMolecules1420-30492019-07-012415274210.3390/molecules24152742molecules24152742Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and TechnologyJelena Muncan0Roumiana Tsenkova1Biomedical Engineering Department, Faculty of Mechanical Engineering, University of Belgrade, 11000 Belgrade, SerbiaBiomeasurement Technology Laboratory, Graduate School of Agricultural Science, Kobe University, Hyogo 657-8501, JapanAquaphotomics is a young scientific discipline based on innovative knowledge of water molecular network, which as an intrinsic part of every aqueous system is being shaped by all of its components and the properties of the environment. With a high capacity for hydrogen bonding, water molecules are extremely sensitive to any changes the system undergoes. In highly aqueous systems—especially biological—water is the most abundant molecule. Minute changes in system elements or surroundings affect multitude of water molecules, causing rearrangements of water molecular network. Using light of various frequencies as a probe, the specifics of water structure can be extracted from the water spectrum, indirectly providing information about all the internal and external elements influencing the system. The water spectral pattern hence becomes an integrative descriptor of the system state. Aquaphotomics and the new knowledge of water originated from the field of near infrared spectroscopy. This technique resulted in significant findings about water structure-function relationships in various systems contributing to a better understanding of basic life phenomena. From this foundation, aquaphotomics started integration with other disciplines into systematized science from which a variety of applications ensued. This review will present the basics of this emerging science and its technological potential.https://www.mdpi.com/1420-3049/24/15/2742aquaphotomicswaterlightnear infrared spectroscopywater-mirror approachperturbationbiomeasurementsbiodiagnosisbiomonitoring
collection DOAJ
language English
format Article
sources DOAJ
author Jelena Muncan
Roumiana Tsenkova
spellingShingle Jelena Muncan
Roumiana Tsenkova
Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
Molecules
aquaphotomics
water
light
near infrared spectroscopy
water-mirror approach
perturbation
biomeasurements
biodiagnosis
biomonitoring
author_facet Jelena Muncan
Roumiana Tsenkova
author_sort Jelena Muncan
title Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
title_short Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
title_full Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
title_fullStr Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
title_full_unstemmed Aquaphotomics—From Innovative Knowledge to Integrative Platform in Science and Technology
title_sort aquaphotomics—from innovative knowledge to integrative platform in science and technology
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2019-07-01
description Aquaphotomics is a young scientific discipline based on innovative knowledge of water molecular network, which as an intrinsic part of every aqueous system is being shaped by all of its components and the properties of the environment. With a high capacity for hydrogen bonding, water molecules are extremely sensitive to any changes the system undergoes. In highly aqueous systems—especially biological—water is the most abundant molecule. Minute changes in system elements or surroundings affect multitude of water molecules, causing rearrangements of water molecular network. Using light of various frequencies as a probe, the specifics of water structure can be extracted from the water spectrum, indirectly providing information about all the internal and external elements influencing the system. The water spectral pattern hence becomes an integrative descriptor of the system state. Aquaphotomics and the new knowledge of water originated from the field of near infrared spectroscopy. This technique resulted in significant findings about water structure-function relationships in various systems contributing to a better understanding of basic life phenomena. From this foundation, aquaphotomics started integration with other disciplines into systematized science from which a variety of applications ensued. This review will present the basics of this emerging science and its technological potential.
topic aquaphotomics
water
light
near infrared spectroscopy
water-mirror approach
perturbation
biomeasurements
biodiagnosis
biomonitoring
url https://www.mdpi.com/1420-3049/24/15/2742
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