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Impact of Coenzyme Q 10 on Mitochondrial Metabolism: A Complementary Study Using Fluorescence Lifetime Imaging and Electron Microscopy
by
Naskar, Nilanjon
, Dos Santos, Daniela Nobre Sarmento
, Blatt, Thomas
, Weise, Julia M
, Reess, Kirsten
, Wieland, Johannes Georg
, Kordes, Sebastian
, Walther, Paul
, Rück, Angelika
in
Cells, Cultured
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibroblasts - ultrastructure
/ Humans
/ Microscopy, Electron - methods
/ Microscopy, Electron, Transmission
/ Microscopy, Fluorescence - methods
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mitochondria - ultrastructure
/ NAD - metabolism
/ Oxidative Phosphorylation - drug effects
/ Ubiquinone - analogs & derivatives
/ Ubiquinone - metabolism
/ Ubiquinone - pharmacology
2024
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Impact of Coenzyme Q 10 on Mitochondrial Metabolism: A Complementary Study Using Fluorescence Lifetime Imaging and Electron Microscopy
by
Naskar, Nilanjon
, Dos Santos, Daniela Nobre Sarmento
, Blatt, Thomas
, Weise, Julia M
, Reess, Kirsten
, Wieland, Johannes Georg
, Kordes, Sebastian
, Walther, Paul
, Rück, Angelika
in
Cells, Cultured
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibroblasts - ultrastructure
/ Humans
/ Microscopy, Electron - methods
/ Microscopy, Electron, Transmission
/ Microscopy, Fluorescence - methods
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mitochondria - ultrastructure
/ NAD - metabolism
/ Oxidative Phosphorylation - drug effects
/ Ubiquinone - analogs & derivatives
/ Ubiquinone - metabolism
/ Ubiquinone - pharmacology
2024
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Impact of Coenzyme Q 10 on Mitochondrial Metabolism: A Complementary Study Using Fluorescence Lifetime Imaging and Electron Microscopy
by
Naskar, Nilanjon
, Dos Santos, Daniela Nobre Sarmento
, Blatt, Thomas
, Weise, Julia M
, Reess, Kirsten
, Wieland, Johannes Georg
, Kordes, Sebastian
, Walther, Paul
, Rück, Angelika
in
Cells, Cultured
/ Fibroblasts - drug effects
/ Fibroblasts - metabolism
/ Fibroblasts - ultrastructure
/ Humans
/ Microscopy, Electron - methods
/ Microscopy, Electron, Transmission
/ Microscopy, Fluorescence - methods
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mitochondria - ultrastructure
/ NAD - metabolism
/ Oxidative Phosphorylation - drug effects
/ Ubiquinone - analogs & derivatives
/ Ubiquinone - metabolism
/ Ubiquinone - pharmacology
2024
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Impact of Coenzyme Q 10 on Mitochondrial Metabolism: A Complementary Study Using Fluorescence Lifetime Imaging and Electron Microscopy
Journal Article
Impact of Coenzyme Q 10 on Mitochondrial Metabolism: A Complementary Study Using Fluorescence Lifetime Imaging and Electron Microscopy
2024
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Overview
Coenzyme Q
(CoQ
), also known as ubiquinone-10, is an important molecule of the mitochondrial respiratory chain that acts as an electron carrier between complexes I, II, and III and additionally functions as an antioxidant. Due to its bioenergetic properties, CoQ
is of high interest for therapeutic and cosmetic use. This study aims to characterize the metabolic impact of CoQ
on primary human dermal fibroblasts (HDF) using fluorescence lifetime imaging microscopy (FLIM) and electron microscopy.
FLIM of nicotinamide adenine dinucleotide (NADH) is a robust method to characterize cellular energy metabolism that also provides spatial information. Electron microscopy offers a way to characterize the ultrastructure of mitochondria and reveal features not visible in FLIM.
We reported a shift towards longer lifetimes of NADH in primary fibroblasts from ten different donors upon treatment with CoQ
, which indicates the stimulation of oxidative phosphorylation. This is confirmed by phasor-based metabolic pattern segmentation, which showed localization of longer NADH lifetimes in CoQ
-treated cells, indicating activated mitochondria in the cytoplasm. In addition, a complementary investigation of the mitochondrial ultrastructure using transmission electron microscopy (TEM) and scanning transmission electron microscopy (STEM) tomography showed a reduction in stress granules in CoQ
-treated cells.
Together, FLIM and electron microscopy (EM) imaging strongly imply that CoQ
stimulates cellular energy metabolism.
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