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Planta|April 15, 2015
The C. elegans dauer larva as a paradigm to study metabolic suppression and desiccation toleranceCihan Erkut, Teymuras V KurzchaliaBiochimica Et Biophysica Acta|July 16, 2005
Getting rid of caveolins: phenotypes of caveolin-deficient animalsSoazig Le Lay, Teymuras V KurzchaliaSeminars in Cell & Developmental Biology|March 31, 2005
Requirement of sterols in the life cycle of the nematode Caenorhabditis elegansEugeni V Entchev, Teymuras V KurzchaliaHistochemistry and Cell Biology|January 18, 2006
Protein kinase C-mediated endothelial barrier regulation is caveolin-1-dependentJens Waschke, Nikola Golenhofen, Teymuras V Kurzchalia, et al.Worm|September 24, 2013
How worms survive desiccation: Trehalose pro waterCihan Erkut, Sider Penkov, Karim Fahmy, et al.Frontiers in Aging|September 21, 2023
Periodic ethanol supply as a path toward unlimited lifespan of Caenorhabditis elegans dauer larvaeXingyu Zhang, Sider Penkov, Teymuras V Kurzchalia, et al.Biophysical Journal|February 22, 2022
Quantitative imaging of Caenorhabditis elegans dauer larvae during cryptobiotic transitionKyoohyun Kim, Vamshidhar R Gade, Teymuras V Kurzchalia, et al.Elife|April 20, 2016
The glyoxylate shunt is essential for desiccation tolerance in C. elegans and budding yeastCihan Erkut, Vamshidhar R Gade, Sunil Laxman, et al.Scientific Reports|August 12, 2020
C. elegans possess a general program to enter cryptobiosis that allows dauer larvae to survive different kinds of abiotic stressVamshidhar R Gade, Sofia Traikov, Jana Oertel, et al.Pageof 7