This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Concordia University directory, so their courses and email address may be missing. Find their university profile.
Latest papers
Very-long-chain fatty acid metabolic capacity of 17-beta-hydroxysteroid dehydrogenase type 12 (HSD17B12) promotes replication of hepatitis C virus and related flaviviruses.
Scientific reports · 2020
Guidelines and recommendations on yeast cell death nomenclature.
Microbial cell (Graz, Austria) · 2018
Remodeling of lipid bodies by docosahexaenoic acid in activated microglial cells.
Journal of neuroinflammation · 2016
Latest funding
- $104,715
Discovery of chemical compounds with high aging-delaying, health-improving and lifespan-extending efficiencies and characterization of their action mechanisms
NSERC · 2017 · Principal investigator
- $136,736
An ultracentrifuge and rotors to support multiple NSERC-funded programs
NSERC · 2015 · Co-investigator
- $305,000
Mechanisms linking lipid metabolism to cellular aging in yeast
NSERC · 2014 · Principal investigator
3 publications.
Very-long-chain fatty acid metabolic capacity of 17-beta-hydroxysteroid dehydrogenase type 12 (HSD17B12) promotes replication of hepatitis C virus and related flaviviruses.
Mohamed B, Mazeaud C, Baril M, Poirier D, Sow AA, Chatel-Chaix L, Titorenko V, Lamarre D
Guidelines and recommendations on yeast cell death nomenclature.
Carmona-Gutierrez D, Bauer MA, Zimmermann A, Aguilera A, Austriaco N, Ayscough K, Balzan R, Bar-Nun S, Barrientos A, Belenky P, Blondel M, Braun RJ, Breitenbach M, Burhans WC, Büttner S, Cavalieri D, Chang M, Cooper KF, Côrte-Real M, Costa V, Cullin C, Dawes I, Dengjel J, Dickman MB, Eisenberg T, Fahrenkrog B, Fasel N, Fröhlich KU, Gargouri A, Giannattasio S, Goffrini P, Gourlay CW, Grant CM, Greenwood MT, Guaragnella N, Heger T, Heinisch J, Herker E, Herrmann JM, Hofer S, Jiménez-Ruiz A, Jungwirth H, Kainz K, Kontoyiannis DP, Ludovico P, Manon S, Martegani E, Mazzoni C, Megeney LA, Meisinger C, Nielsen J, Nyström T, Osiewacz HD, Outeiro TF, Park HO, Pendl T, Petranovic D, Picot S, Polčic P, Powers T, Ramsdale M, Rinnerthaler M, Rockenfeller P, Ruckenstuhl C, Schaffrath R, Segovia M, Severin FF, Sharon A, Sigrist SJ, Sommer-Ruck C, Sousa MJ, Thevelein JM, Thevissen K, Titorenko V, Toledano MB, Tuite M, Vögtle FN, Westermann B, Winderickx J, Wissing S, Wölfl S, Zhang ZJ, Zhao RY, Zhou B, Galluzzi L, Kroemer G, Madeo F
Remodeling of lipid bodies by docosahexaenoic acid in activated microglial cells.
Tremblay ME, Zhang I, Bisht K, Savage JC, Lecours C, Parent M, Titorenko V, Maysinger D
Discovery of chemical compounds with high aging-delaying, health-improving and lifespan-extending efficiencies and characterization of their action mechanisms
Principal investigators: Titorenko, Vladimir
An ultracentrifuge and rotors to support multiple NSERC-funded programs
Principal investigators: Zerges, William
Mechanisms linking lipid metabolism to cellular aging in yeast
Principal investigators: Titorenko, Vladimir
Continuation of the project on using an assay for yeast lifespan measurement as a robust approach for assessing the anti-aging efficiencies of numerous natural products
Principal investigators: Titorenko, Vladimir
Development and validation of an assay for yeast lifespan measurement as a robust experimental approach for assessing the anti-aging efficiencies of numerous natural products
Principal investigators: Titorenko, Vladimir
Molecular Mechanisms Underlying A Previously Unknown Form of Cell Death
Principal investigators: Beach, Adam
Keywords: Caloric Restriction; Dietary; Lipid Dynamics; Lipid Metabolism; Molecular Mechanisms; Pharmacological Interventions Remodel
Molecular mechanisms underlying the ability of an anti-aging compound to extend longevity by altering mitochondrial composition, structure and function
Principal investigators: Beach, Adam
Keywords: Cell Biology; Cellular Aging; Chemical Biology; Lipidomics; Mechanisms Of Aging; Mitochondria; Molecular Biology; Proteomics; Subcellular Fractionation; Systems Biology
Mechanism through which a novel life-extending compound delays aging by controlling a nutrition sensing signaling network governed by the nutrient-sensory protein kinases PKA and Rim15p
Principal investigators: Richard, Vincent R
Keywords: Biochemistry; Biological Networks; Cell Biology; Longevity; Mechanisms Of Aging; Microscopy; Nutrient Sensing; Protein Kinases; Proteomics; Signal Transduction
Mechanisms underlying the ability of a novel anti-aging compound to extend life span by modulating longevity- and disease-related processes in mitochondria
Principal investigators: Burstein, Michelle
Keywords: Biochemistry; Cell Biology; Cell Culture; Cellular Aging; Electrophoresis; Mechanisms Of Aging; Microscopy; Molecular Biology; Pharmacology; Systems Biology
Mechanism through which a novel life-extending compound delays aging by controlling a nutrition sensing signaling network governed by the nutrient-sensory protein kinases PKA and Rim15p
Principal investigators: Richard, Vincent R
Keywords: Biochemistry; Biological Networks; Cell Biology; Cellular Aging; Mechanisms Of Aging; Microscopy; Nutrient Sensing; Protein Kinases; Proteomics; Signal Transduction
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Marie-Ève Tremblay and Martin Parent: 2 shared papers
- Donald Poirier and Daniel Lamarre: 1 shared paper
- Donald Poirier and Laurent Chatel-Chaix: 1 shared paper
- Donald Poirier and Vladimir Titorenko: 1 shared paper
- Marie-Ève Tremblay and Dusica Maysinger: 1 shared paper
- Marie-Ève Tremblay and Vladimir Titorenko: 1 shared paper
- Dusica Maysinger and Martin Parent: 1 shared paper
- Dusica Maysinger and Vladimir Titorenko: 1 shared paper
- Daniel Lamarre and Laurent Chatel-Chaix: 1 shared paper
- Daniel Lamarre and Vladimir Titorenko: 1 shared paper
- Laurent Chatel-Chaix and Vladimir Titorenko: 1 shared paper
- Martin Parent and Vladimir Titorenko: 1 shared paper
- Biology
- Médecine
- Molecular Medicine
- Pharmacology and Therapeutics
- Centre Armand-Frappier Santé Biotechnologie
- Science, Faculty of
- Psychiatrie et neurosciences
Co-authors at Concordia University, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
Donald Poirier
Molecular Medicine
1 shared papers, latest 2020
Marie-Ève Tremblay
Science, Faculty of
1 shared papers, latest 2016
Dusica Maysinger
Pharmacology and Therapeutics
1 shared papers, latest 2016
Daniel Lamarre
Médecine
1 shared papers, latest 2020
Laurent Chatel-Chaix
Centre Armand-Frappier Santé Biotechnologie
1 shared papers, latest 2020
Martin Parent
Psychiatrie et neurosciences
1 shared papers, latest 2016
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