Volska K: Difference between revisions
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== Participated at== | |||
* [[MiP2013]] | |||
Revision as of 11:26, 19 August 2013
Name | Volska Kristina, |
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Institution |
Riga Stradins University |
Address | Dzirciema Str. 16, 1007 |
City | Riga |
State/Province | |
Country | Latvia |
Weblink | |
O2k-Network Lab | LV Riga Liepins E |
Labels:
Publications
Published | Reference | |
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BEC 2020.1 doi10.26124bec2020-0001.v1 | 2020 | Gnaiger E et al ― MitoEAGLE Task Group (2020) Mitochondrial physiology. Bioenerg Commun 2020.1. https://doi.org/10.26124/bec:2020-0001.v1 |
Makrecka-Kuka 2017 Toxicol Lett | 2017 | Makrecka-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. |
Makrecka-Kuka 2017 Sci Rep | 2017 | Makrecka-Kuka M, Sevostjanovs E, Vilks K, Volska K, Antone U, Kuka J, Makarova E, Pugovics O, Dambrova M, Liepinsh E (2017) Plasma acylcarnitine concentrations reflect the acylcarnitine profile in cardiac tissues. Sci Rep 7:17528. |
Liepinsh 2016 Biochem J | 2016 | Liepinsh 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
Published | Reference | |
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Volska 2018 MiP2018 | 2018 | The mechanisms of long-chain acylcarnitine accumulation during ischemia. |
Makrecka-Kuka 2016 Abstract MitoFit Science Camp 2016 | 2016 | Long-chain acylCoAs vs acylcarnitines in mitochondrial bioenergetics: from in vitro to in vivo. |
Makrecka 2013 Abstract MiP2013 | 2013 | Makrecka-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. |
Volska 2013 Abstract MiP2013 | 2013 | Volska K, Makrecka-Kuka M, Svalbe B, Dambrova M (2013) The inhibitor of L-carnitine biosynthesis protects brain mitochondria against anoxia-reoxygenation injury. Mitochondr Physiol Network 18.08. |