Metabolic light absorption, scattering and emission (MetaLASE) microscopy

Fuente: arXiv
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Autori principali: Restall, Brendon S., Haven, Nathaniel J. M., Martell, Matthew T., Cikaluk, Brendyn D., Tejay, Saymon, Adam, Benjamin A., Stendra, Gopinath, Li, Xingyu, Zemp, Roger J.
Natura: Preprint
Pubblicazione: 2024
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author Restall, Brendon S.
Haven, Nathaniel J. M.
Martell, Matthew T.
Cikaluk, Brendyn D.
Tejay, Saymon
Adam, Benjamin A.
Stendra, Gopinath
Li, Xingyu
Zemp, Roger J.
author_facet Restall, Brendon S.
Haven, Nathaniel J. M.
Martell, Matthew T.
Cikaluk, Brendyn D.
Tejay, Saymon
Adam, Benjamin A.
Stendra, Gopinath
Li, Xingyu
Zemp, Roger J.
contents Optical imaging of metabolism can provide key information about health and disease progression in cells and tissues, however, current methods have lacked gold-standard information about histological structure. Conversely, histology and virtual histology methods have lacked metabolic contrast. Here we present a novel microscopy technology, Metabolic Light Absorption, Scattering and Emission (MetaLASE) microscopy, which rapidly provides a virtual histology and optical metabolic readout simultaneously. Photoacoustic remote sensing microscopy achieves nuclei contrast and hematoxylin contrast using ultraviolet absorption and an eosin contrast using the scattered ultraviolet light. The same ultraviolet source excites endogenous NADH, FAD and collagen autofluorescence allowing a measurable Optical Redox Ratios to see enhanced metabolism in areas of invasive carcinoma in breast and prostate tissues compared to benign regions. Benign chronic inflammation and glands also are seen to exhibit hypermetabolism. MetaLASE microscopy offers promise for future applications in intraoperative margin analysis, and in research applications where greater insights into metabolic activity should be correlated with cell and tissue types.
format Preprint
id arxiv_https___arxiv_org_abs_2401_15135
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Metabolic light absorption, scattering and emission (MetaLASE) microscopy
Restall, Brendon S.
Haven, Nathaniel J. M.
Martell, Matthew T.
Cikaluk, Brendyn D.
Tejay, Saymon
Adam, Benjamin A.
Stendra, Gopinath
Li, Xingyu
Zemp, Roger J.
Medical Physics
Optics
Optical imaging of metabolism can provide key information about health and disease progression in cells and tissues, however, current methods have lacked gold-standard information about histological structure. Conversely, histology and virtual histology methods have lacked metabolic contrast. Here we present a novel microscopy technology, Metabolic Light Absorption, Scattering and Emission (MetaLASE) microscopy, which rapidly provides a virtual histology and optical metabolic readout simultaneously. Photoacoustic remote sensing microscopy achieves nuclei contrast and hematoxylin contrast using ultraviolet absorption and an eosin contrast using the scattered ultraviolet light. The same ultraviolet source excites endogenous NADH, FAD and collagen autofluorescence allowing a measurable Optical Redox Ratios to see enhanced metabolism in areas of invasive carcinoma in breast and prostate tissues compared to benign regions. Benign chronic inflammation and glands also are seen to exhibit hypermetabolism. MetaLASE microscopy offers promise for future applications in intraoperative margin analysis, and in research applications where greater insights into metabolic activity should be correlated with cell and tissue types.
title Metabolic light absorption, scattering and emission (MetaLASE) microscopy
topic Medical Physics
Optics
url https://arxiv.org/abs/2401.15135