Cargando…

Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets

Significance: The creation of fundamentally new approaches to storing various biomaterial and estimation parameters, without irreversible loss of any biomaterial, is a pressing challenge in clinical practice. We present a technology for studying samples of diabetic and non-diabetic human blood plasm...

Descripción completa

Detalles Bibliográficos
Autores principales: Lykina, Anastasiya A., Nazarov, Maksim M., Konnikova, Maria R., Mustafin, Ilia A., Vaks, Vladimir L., Anfertev, Vladimir A., Domracheva, Elena G., Chernyaeva, Mariya B., Kistenev, Yuri V., Vrazhnov, Denis A., Prischepa, Vladimir V., Kononova, Yulia A., Korolev, Dmitry V., Cherkasova, Olga P., Shkurinov, Alexander P., Babenko, Alina Y., Smolyanskaya, Olga A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society of Photo-Optical Instrumentation Engineers 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7880624/
https://www.ncbi.nlm.nih.gov/pubmed/33580640
http://dx.doi.org/10.1117/1.JBO.26.4.043006
_version_ 1783650733411794944
author Lykina, Anastasiya A.
Nazarov, Maksim M.
Konnikova, Maria R.
Mustafin, Ilia A.
Vaks, Vladimir L.
Anfertev, Vladimir A.
Domracheva, Elena G.
Chernyaeva, Mariya B.
Kistenev, Yuri V.
Vrazhnov, Denis A.
Prischepa, Vladimir V.
Kononova, Yulia A.
Korolev, Dmitry V.
Cherkasova, Olga P.
Shkurinov, Alexander P.
Babenko, Alina Y.
Smolyanskaya, Olga A.
author_facet Lykina, Anastasiya A.
Nazarov, Maksim M.
Konnikova, Maria R.
Mustafin, Ilia A.
Vaks, Vladimir L.
Anfertev, Vladimir A.
Domracheva, Elena G.
Chernyaeva, Mariya B.
Kistenev, Yuri V.
Vrazhnov, Denis A.
Prischepa, Vladimir V.
Kononova, Yulia A.
Korolev, Dmitry V.
Cherkasova, Olga P.
Shkurinov, Alexander P.
Babenko, Alina Y.
Smolyanskaya, Olga A.
author_sort Lykina, Anastasiya A.
collection PubMed
description Significance: The creation of fundamentally new approaches to storing various biomaterial and estimation parameters, without irreversible loss of any biomaterial, is a pressing challenge in clinical practice. We present a technology for studying samples of diabetic and non-diabetic human blood plasma in the terahertz (THz) frequency range. Aim: The main idea of our study is to propose a method for diagnosis and storing the samples of diabetic and non-diabetic human blood plasma and to study these samples in the THz frequency range. Approach: Venous blood from patients with type 2 diabetes mellitus and conditionally healthy participants was collected. To limit the impact of water in the THz spectra, lyophilization of liquid samples and their pressing into a pellet were performed. These pellets were analyzed using THz time-domain spectroscopy. The differentiation between the THz spectral data was conducted using multivariate statistics to classify non-diabetic and diabetic groups’ spectra. Results: We present the density-normalized absorption and refractive index for diabetic and non-diabetic pellets in the range 0.2 to 1.4 THz. Over the entire THz frequency range, the normalized index of refraction of diabetes pellets exceeds this indicator of non-diabetic pellet on average by 9% to 12%. The non-diabetic and diabetic groups of the THz spectra are spatially separated in the principal component space. Conclusion: We illustrate the potential ability in clinical medicine to construct a predictive rule by supervised learning algorithms after collecting enough experimental data.
format Online
Article
Text
id pubmed-7880624
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Society of Photo-Optical Instrumentation Engineers
record_format MEDLINE/PubMed
spelling pubmed-78806242021-02-16 Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets Lykina, Anastasiya A. Nazarov, Maksim M. Konnikova, Maria R. Mustafin, Ilia A. Vaks, Vladimir L. Anfertev, Vladimir A. Domracheva, Elena G. Chernyaeva, Mariya B. Kistenev, Yuri V. Vrazhnov, Denis A. Prischepa, Vladimir V. Kononova, Yulia A. Korolev, Dmitry V. Cherkasova, Olga P. Shkurinov, Alexander P. Babenko, Alina Y. Smolyanskaya, Olga A. J Biomed Opt Special Series on Advances in Terahertz Biomedical Science and Applications Significance: The creation of fundamentally new approaches to storing various biomaterial and estimation parameters, without irreversible loss of any biomaterial, is a pressing challenge in clinical practice. We present a technology for studying samples of diabetic and non-diabetic human blood plasma in the terahertz (THz) frequency range. Aim: The main idea of our study is to propose a method for diagnosis and storing the samples of diabetic and non-diabetic human blood plasma and to study these samples in the THz frequency range. Approach: Venous blood from patients with type 2 diabetes mellitus and conditionally healthy participants was collected. To limit the impact of water in the THz spectra, lyophilization of liquid samples and their pressing into a pellet were performed. These pellets were analyzed using THz time-domain spectroscopy. The differentiation between the THz spectral data was conducted using multivariate statistics to classify non-diabetic and diabetic groups’ spectra. Results: We present the density-normalized absorption and refractive index for diabetic and non-diabetic pellets in the range 0.2 to 1.4 THz. Over the entire THz frequency range, the normalized index of refraction of diabetes pellets exceeds this indicator of non-diabetic pellet on average by 9% to 12%. The non-diabetic and diabetic groups of the THz spectra are spatially separated in the principal component space. Conclusion: We illustrate the potential ability in clinical medicine to construct a predictive rule by supervised learning algorithms after collecting enough experimental data. Society of Photo-Optical Instrumentation Engineers 2021-02-12 2021-04 /pmc/articles/PMC7880624/ /pubmed/33580640 http://dx.doi.org/10.1117/1.JBO.26.4.043006 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/ Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
spellingShingle Special Series on Advances in Terahertz Biomedical Science and Applications
Lykina, Anastasiya A.
Nazarov, Maksim M.
Konnikova, Maria R.
Mustafin, Ilia A.
Vaks, Vladimir L.
Anfertev, Vladimir A.
Domracheva, Elena G.
Chernyaeva, Mariya B.
Kistenev, Yuri V.
Vrazhnov, Denis A.
Prischepa, Vladimir V.
Kononova, Yulia A.
Korolev, Dmitry V.
Cherkasova, Olga P.
Shkurinov, Alexander P.
Babenko, Alina Y.
Smolyanskaya, Olga A.
Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title_full Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title_fullStr Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title_full_unstemmed Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title_short Terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
title_sort terahertz spectroscopy of diabetic and non-diabetic human blood plasma pellets
topic Special Series on Advances in Terahertz Biomedical Science and Applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7880624/
https://www.ncbi.nlm.nih.gov/pubmed/33580640
http://dx.doi.org/10.1117/1.JBO.26.4.043006
work_keys_str_mv AT lykinaanastasiyaa terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT nazarovmaksimm terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT konnikovamariar terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT mustafiniliaa terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT vaksvladimirl terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT anfertevvladimira terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT domrachevaelenag terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT chernyaevamariyab terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT kistenevyuriv terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT vrazhnovdenisa terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT prischepavladimirv terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT kononovayuliaa terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT korolevdmitryv terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT cherkasovaolgap terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT shkurinovalexanderp terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT babenkoalinay terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets
AT smolyanskayaolgaa terahertzspectroscopyofdiabeticandnondiabetichumanbloodplasmapellets