Publication detail

Fluorescence lifetime microscopy of NADH distinguishes alterations in cerebral metabolism in vivo

YASEEN, M. SUTIN, J. WU, W. FU, B. UHLÍŘOVÁ, H. DEVOR, A. BOAS, D. SAKADŽIC, S.

Original Title

Fluorescence lifetime microscopy of NADH distinguishes alterations in cerebral metabolism in vivo

Type

journal article in Web of Science

Language

English

Original Abstract

Evaluating cerebral energy metabolism at microscopic resolution is important for comprehensively understanding healthy brain function and its pathological alterations. Here, we resolve specific alterations in cerebral metabolism in vivo in Sprague Dawley rats utilizing minimally-invasive 2-photon fluorescence lifetime imaging (2P-FLIM) measurements of reduced nicotinamide adenine dinucleotide (NADH) fluorescence. Time-resolved fluorescence lifetime measurements enable distinction of different components contributing to NADH autofluorescence. Ostensibly, these components indicate different enzyme-bound formulations of NADH. We observed distinct variations in the relative proportions of these components before and after pharmacological-induced impairments to several reactions involved in glycolytic and oxidative metabolism. Classification models were developed with the experimental data and used to predict the metabolic impairments induced during separate experiments involving bicuculline-induced seizures. The models consistently predicted that prolonged focal seizure activity results in impaired activity in the electron transport chain, likely the consequence of inadequate oxygen supply. 2P-FLIM observations of cerebral NADH will help advance our understanding of cerebral energetics at a microscopic scale. Such knowledge will aid in our evaluation of healthy and diseased cerebral physiology and guide diagnostic and therapeutic strategies that target cerebral energetics.

Keywords

Medical optics and biotechnology; Nonlinear microscopy; Lifetimebased sensing.

Authors

YASEEN, M.; SUTIN, J.; WU, W.; FU, B.; UHLÍŘOVÁ, H.; DEVOR, A.; BOAS, D.; SAKADŽIC, S.

Released

1. 5. 2017

ISBN

2156-7085

Periodical

Biomedical Optics Express

Year of study

8

Number

5

State

United States of America

Pages from

2368

Pages to

2385

Pages count

18

BibTex

@article{BUT141858,
  author="Mohammad A. {Yaseen} and Jason {Sutin} and Weicheng {Wu} and Buyin {Fu} and Hana {Uhlířová} and Anna {Devor} and David A. {Boas} and Sava {Sakadžic}",
  title="Fluorescence lifetime microscopy of NADH distinguishes alterations in cerebral metabolism in vivo",
  journal="Biomedical Optics Express",
  year="2017",
  volume="8",
  number="5",
  pages="2368--2385",
  doi="10.1364/BOE.8.002368",
  issn="2156-7085"
}