CZ Olomouc Modriansky M: Difference between revisions
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{{ | {{O2k-Network Lab | ||
|institution=Department of Medical Chemistry and Biochemistry | |institution=Department of Medical Chemistry and Biochemistry | ||
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|country=Czech Republic | |country=Czech Republic | ||
|Contact=Modriansky Martin | |Contact=Modriansky Martin | ||
|MiPNetLab=Gabrielova Eva | |MiPNetLab=Gabrielova Eva, Moukova Anna | ||
|Status=O2k 2010- | |Status=O2k 2010- | ||
|info= [[IOC61]] | |||
|keyword=Natural substances (e.g. polyphenols) - influence on mitochondrial physiology and OXPHOS | |keyword=Natural substances (e.g. polyphenols) - influence on mitochondrial physiology and OXPHOS | ||
|keywords=Influence of natural substances, e.g. polyphenols, on mitochondrial physiology and OXPHOS; including hypoxic conditions and effects on resulting reperfusion damage. | |keywords=Influence of natural substances, e.g. polyphenols, on mitochondrial physiology and OXPHOS; including hypoxic conditions and effects on resulting reperfusion damage. | ||
}} | }} |
Latest revision as of 11:55, 21 September 2022
CZ Olomouc Modriansky M
O2k-Network Lab | Department of Medical Chemistry and Biochemistry
Faculty of Medicine and Dentistry Palacky University in Olomouc |
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Address | Hnevotinska 3, 775 15 |
City | Olomouc |
State/Prov | |
Country | Czech Republic |
Weblink | |
Contact | Modriansky Martin |
Team | Gabrielova Eva, Moukova Anna |
Team previous | |
Status | O2k 2010- |
Oroboros Events | IOC61 |
Topics | Natural substances (e.g. polyphenols) - influence on mitochondrial physiology and OXPHOS |
O2k-Publications
Published | Reference | |
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Pola 2020 Invest New Drugs | 2020 | Pola M, Kolarova H, Ruzicka J, Zholobenko A, Modriansky M, Mosinger J, Bajgar R (2020) Effects of zinc porphyrin and zinc phthalocyanine derivatives in photodynamic anticancer therapy under different partial pressures of oxygen in vitro. Invest New Drugs 39:89-97. |
Zholobenko 2017 PLOS ONE | 2017 | Zholobenko AV, Mouithys-Mickalad A, Dostal Z, Serteyn D, Modriansky M (2017) On the causes and consequences of the uncoupler-like effects of quercetin and dehydrosilybin in H9c2 cells. PLOS ONE 12:e0185691. |
O2k-Abstracts
update please