Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy

Abstract Head and neck tumors can be very challenging to treat because of the risk of problems or complications after surgery. Therefore, prompt and accurate diagnosis is extremely important to drive appropriate treatment decisions, which may reduce the chance of recurrence. This paper presents the...

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Autores principales: Czesława Paluszkiewicz, Maciej Roman, Natalia Piergies, Ewa Pięta, Monika Woźniak, Mariangela Cestelli Guidi, Katarzyna Miśkiewicz-Orczyk, Magdalena Marków, Wojciech Ścierski, Maciej Misiołek, Bogna Drozdzowska, Wojciech M. Kwiatek
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Publicado: Nature Portfolio 2021
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spelling oai:doaj.org-article:a486b7d9013d4d40aecc56d234b70c8e2021-12-02T17:19:16ZTracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy10.1038/s41598-021-97377-22045-2322https://doaj.org/article/a486b7d9013d4d40aecc56d234b70c8e2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41598-021-97377-2https://doaj.org/toc/2045-2322Abstract Head and neck tumors can be very challenging to treat because of the risk of problems or complications after surgery. Therefore, prompt and accurate diagnosis is extremely important to drive appropriate treatment decisions, which may reduce the chance of recurrence. This paper presents the original research exploring the feasibility of Fourier transform infrared (FT-IR) and Raman spectroscopy (RS) methods to investigate biochemical alterations upon the development of the pleomorphic adenoma. Principal component analysis (PCA) was used for a detailed assessment of the observed changes and to determine the spectroscopic basis for salivary gland neoplastic pathogenesis. It is implied that within the healthy margin, as opposed to the tumoral tissue, there are parts that differ significantly in lipid content. This observation shed new light on the crucial role of lipids in tissue physiology and tumorigenesis. Thus, a novel approach that eliminates the influence of lipids on the elucidation of biochemical changes is proposed. The performed analysis suggests that the highly heterogeneous healthy margin contains more unsaturated triacylglycerols, while the tumoral section is rich in proteins. The difference in protein content was also observed for these two tissue types, i.e. the healthy tissue possesses more proteins in the anti-parallel β-sheet conformation, whereas the tumoral tissue is dominated by proteins rich in unordered random coils. Furthermore, the pathogenic tissue shows a higher content of carbohydrates and reveals noticeable differences in nucleic acid content. Finally, FT-IR and Raman spectroscopy methods were proposed as very promising methods in the discrimination of tumoral and healthy tissues of the salivary gland.Czesława PaluszkiewiczMaciej RomanNatalia PiergiesEwa PiętaMonika WoźniakMariangela Cestelli GuidiKatarzyna Miśkiewicz-OrczykMagdalena MarkówWojciech ŚcierskiMaciej MisiołekBogna DrozdzowskaWojciech M. KwiatekNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 11, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Czesława Paluszkiewicz
Maciej Roman
Natalia Piergies
Ewa Pięta
Monika Woźniak
Mariangela Cestelli Guidi
Katarzyna Miśkiewicz-Orczyk
Magdalena Marków
Wojciech Ścierski
Maciej Misiołek
Bogna Drozdzowska
Wojciech M. Kwiatek
Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
description Abstract Head and neck tumors can be very challenging to treat because of the risk of problems or complications after surgery. Therefore, prompt and accurate diagnosis is extremely important to drive appropriate treatment decisions, which may reduce the chance of recurrence. This paper presents the original research exploring the feasibility of Fourier transform infrared (FT-IR) and Raman spectroscopy (RS) methods to investigate biochemical alterations upon the development of the pleomorphic adenoma. Principal component analysis (PCA) was used for a detailed assessment of the observed changes and to determine the spectroscopic basis for salivary gland neoplastic pathogenesis. It is implied that within the healthy margin, as opposed to the tumoral tissue, there are parts that differ significantly in lipid content. This observation shed new light on the crucial role of lipids in tissue physiology and tumorigenesis. Thus, a novel approach that eliminates the influence of lipids on the elucidation of biochemical changes is proposed. The performed analysis suggests that the highly heterogeneous healthy margin contains more unsaturated triacylglycerols, while the tumoral section is rich in proteins. The difference in protein content was also observed for these two tissue types, i.e. the healthy tissue possesses more proteins in the anti-parallel β-sheet conformation, whereas the tumoral tissue is dominated by proteins rich in unordered random coils. Furthermore, the pathogenic tissue shows a higher content of carbohydrates and reveals noticeable differences in nucleic acid content. Finally, FT-IR and Raman spectroscopy methods were proposed as very promising methods in the discrimination of tumoral and healthy tissues of the salivary gland.
format article
author Czesława Paluszkiewicz
Maciej Roman
Natalia Piergies
Ewa Pięta
Monika Woźniak
Mariangela Cestelli Guidi
Katarzyna Miśkiewicz-Orczyk
Magdalena Marków
Wojciech Ścierski
Maciej Misiołek
Bogna Drozdzowska
Wojciech M. Kwiatek
author_facet Czesława Paluszkiewicz
Maciej Roman
Natalia Piergies
Ewa Pięta
Monika Woźniak
Mariangela Cestelli Guidi
Katarzyna Miśkiewicz-Orczyk
Magdalena Marków
Wojciech Ścierski
Maciej Misiołek
Bogna Drozdzowska
Wojciech M. Kwiatek
author_sort Czesława Paluszkiewicz
title Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
title_short Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
title_full Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
title_fullStr Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
title_full_unstemmed Tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
title_sort tracking of the biochemical changes upon pleomorphic adenoma progression using vibrational microspectroscopy
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/a486b7d9013d4d40aecc56d234b70c8e
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