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Difference between revisions of "Menegollo 2019 Methods Mol Biol"

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{{Publication
{{Publication
|title=Menegollo Michela, Tessari Isabella, Bubacco Luigi, Szabadkai Gyorgy (2019) Determination of ATP, ADP, and AMP Levels by Reversed-Phase High-Performance Liquid Chromatography in Cultured Cells. Methods Mol Biol 1925:223-32.
|title=Menegollo M, Tessari I, Bubacco L, Szabadkai G (2019) Determination of ATP, ADP, and AMP Levels by Reversed-Phase High-Performance Liquid Chromatography in Cultured Cells. Methods Mol Biol 1925:223-32.
|info=[[PMID:30674030]]
|info=[[PMID:30674030]]
|authors=Menegollo Michela, Tessari Isabella, Bubacco Luigi, Szabadkai Gyorgy
|authors=Menegollo Michela, Tessari Isabella, Bubacco Luigi, Szabadkai Gyorgy
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|editor=[[Cardoso Luiza HD]]
|editor=[[Cardoso Luiza HD]]
}}
}}
== Cited by ==
== Cited by ==
{{Template:Cited by Cardoso 2021 MitoFit MgG}}
{{Template:Cited by Cardoso 2021 MitoFit MgG}}


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Latest revision as of 11:45, 9 February 2022

Publications in the MiPMap
Menegollo M, Tessari I, Bubacco L, Szabadkai G (2019) Determination of ATP, ADP, and AMP Levels by Reversed-Phase High-Performance Liquid Chromatography in Cultured Cells. Methods Mol Biol 1925:223-32.

Β» PMID:30674030

Menegollo Michela, Tessari Isabella, Bubacco Luigi, Szabadkai Gyorgy (2019) Methods Mol Biol

Abstract: Cytoplasmic and mitochondrial Ca2+ signals couple cellular ATP production to activity-related energy demand. In order to accurately determine the bioenergetic effect of Ca2+ signals, cellular energy charge, i.e., the compound ratio of the phosphorylated adenine nucleotides AMP, ADP, and ATP, should be estimated. Reversed-phase high-performance liquid chromatography (RP-HPLC) allows the rapid separation and quantitation of these molecules. Here we describe a protocol applied in our laboratories to quantify ATP, ADP, and AMP nucleotides in cellular extracts.

β€’ Bioblast editor: Cardoso Luiza HD

Cited by

  • Cardoso et al (2021) Magnesium Green for fluorometric measurement of ATP production does not interfere with mitochondrial respiration. Bioenerg Commun 2021.1. doi:10.26124/bec:2021-0001


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