Liepins E

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MiPsociety
COST Action CA15203 MitoEAGLE
Evolution-Age-Gender-Lifestyle-Environment: mitochondrial fitness mapping


 

Liepins E


MitoPedia topics: EAGLE 

COST: Member COST WG1: WG1 COST WG2: WG2


COST Mentor: Mentor

MC Member - Management Committee MitoEAGLE
Name Liepinsh Edgars, Dr.
Institution Laboratory of Pharmaceutical Pharmacology,

Latvian Institute of Organic Synthesis, LV

Address Aizkraukles Street 21, LV-1006
City Riga
State/Province
Country Latvia
Email
Weblink
O2k-Network Lab LV Riga Makrecka-Kuka M


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Publications

 PublishedReference
Gnaiger 2019 MitoFit Preprint Arch2019Gnaiger E, Aasander Frostner E, Abdul Karim N, Abdel-Rahman EA, Abumrad NA, Acuna-Castroviejo D, Adiele RC, et al (2019) Mitochondrial respiratory states and rates. MitoFit Preprint Arch doi:10.26124/mitofit:190001.v6.
Makrecka-Kuka 2017 Toxicol Lett2017Makrecka-Kuka M, Volska K, Antone U, Vilskersts R, Grinberga S, Bandere D, Liepinsh E, Dambrova M (2017) Trimethylamine N-oxide impairs pyruvate and fatty acid oxidation in cardiac mitochondria. Toxicol Lett 267:32-8.
Liepinsh 2016 Biochem J2016Liepinsh E, Makrecka-Kuka M, Volska K, Kuka J, Makarova E, Antone U, Sevostjanovs E, Vilskersts R, Strods A, Tars K, Dambrova M (2016) Long-chain acylcarnitines determine ischaemia/reperfusion-induced damage in heart mitochondria. Biochem J 473:1191-202.

Abstracts

 PublishedReference
Wuest 2019 MiPschool Coimbra2019
Rob Wüst
Altered mitochondrial metabolism in the diabetic heart.
Lemieux 2019b MiP20192019
Hélène Lemieux
Altered mitochondrial metabolism in the diabetic heart.
Makrecka-Kuka 2018 MiPschool Tromso E12018
Marina Makrecka-Kuka
Cardiac fatty acid oxidation: from in vitro to in vivo.
Liepins 2018 MiP20182018
MiPsociety
Mitochondrial and extramitochondrial effects of long-chain acylcarnitines.
Dambrova 2018 MiP20182018
MiPsociety
L-Carnitine: from discovery to cardiometabolic risk markers.
Kuka 2018 MiP20182018
MiPsociety
The discovery of methyl-GBB - acylcarnitine lowering as an effective strategy to treat cardiometabolic diseases.
Makarova 2018 MiP20182018
MiPsociety
Plasma concentrations of fatty acids and acylcarnitines as biomarkers for diagnosis of insulin resistance in adipose and muscle tissues.
Volska 2018 MiP20182018
Kristina Volska
The mechanisms of long-chain acylcarnitine accumulation during ischemia.
Makrecka-Kuka 2018 MiP20182018
Marina Makrecka-Kuka
Fatty acid oxidation in brain: from aging to ischemia and sepsis.
Makrecka-Kuka 2017 Abstract MITOEAGLE Barcelona2017
COST Action MITOEAGLE
Fatty acid oxidation evaluation in mitochondria.
Makrecka-Kuka 2017 MiP20172017
Marina Makrecka-Kruka
Heart, brain and kidneys: who will survive? Tissue-specific changes in mitochondrial function in the experimental model of endotoxemia.
Makrecka-Kuka 2016 Abstract MitoFit Science Camp 20162016Long-chain acylCoAs vs acylcarnitines in mitochondrial bioenergetics: from in vitro to in vivo.
Makrecka 2013 Abstract MiP20132013Makrecka-Kuka M, Volska K, Kuka J, Liepins E, Dambrova M (2013) The accumulation of long chain acyl-carnitines is a major cause of mitochondrial damage during ischemia. Mitochondr Physiol Network 18.08.


MitoEAGLE Feedback

We are mostly interested in two WG: (1) Since we are working mostly with heart and muscles, we are interested in WG 2 - MitoEAGLE data repository in muscle and other tissues. (2) WG 1 - Standard operating procedures and user requirement document: Protocols, terminology, documentation. Since we have an expertise in fatty acid metabolism, we are specially interested in experimental protocols for the evaluation of mitochondrial capacities regarding fatty acid metabolism. Of course our parts of the WG are also in our interest. - Marina Makrecka-Kuka, Edgars Liepins (2016).


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