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Ernst Wolvetang

Wikidata Item | Scholia Profile [curation] | Reasonator | SQID

Listed Publications

115 publications found

TitleAuthors (identified)Published InIdentifier(s)TopicPublished Date
Zika virus noncoding RNA cooperates with the viral protein NS5 to inhibit STAT1 phosphorylation and facilitate viral pathogenesis[1]Andrii Slonchak, [2]Xiaohui Wang, [3]Julio Aguado, [4]Julian D. J. Sng, [5]Harman Chaggar, [6]Morgan E Freney, [7]Kexin Yan, [8]Francisco J Torres, [9]Alberto A Amarilla, [10]Rickyle Balea, [11]Yin Xiang Setoh, [12]Nias Peng, [13]Daniel Watterson, [14]Ernst Wolvetang, [15]Andreas Suhrbier, [16]Alexander A. Khromykh [Full author list]Science Advances [curation]DOI: 10.1126/SCIADV.ADD8095
Zika virus [curation]2022-12-02
Inhibition of the cGAS-STING pathway ameliorates the premature senescence hallmarks of Ataxia-Telangiectasia brain organoids[1]Julio Aguado, [2]Harman K Chaggar, [3]Cecilia Gómez-Inclán, [4]Mohammed R Shaker, [5]Hannah C Leeson, [6]Alan Mackay-Sim, [7]Ernst Wolvetang [Full author list]Aging Cell [curation]DOI: 10.1111/ACEL.13468
PubMed: 34459078
2021-08-30
Klotho inhibits neuronal senescence in human brain organoids[1]Mohammed R Shaker, [2]Julio Aguado, [3]Harman Kaur Chaggar, [4]Ernst Wolvetang [Full author list]NPJ aging and mechanisms of disease [curation]DOI: 10.1038/S41514-021-00070-X
PubMed: 34341344
2021-08-02
Testing the Correlates of Consciousness in Brain Organoids: How Do We Know and What Do We Do?[1]Rachel Ankeny, [2]Ernst Wolvetang [Full author list]American Journal of Bioethics [curation]DOI: 10.1080/15265161.2020.1845869
PubMed: 33373561
organoid [curation]2021-01-01
Multivariate patterning of human pluripotent cells under perfusion reveals critical roles of induced paracrine factors in kidney organoid development[1]Nick R Glass, [2]Minoru Takasato, [3]Pei Xuan Er, [4]Drew M Titmarsh, [5]Alejandro Hidalgo, [6]Ernst Wolvetang, [7]Melissa Little, [8]Justin J Cooper-White [Full author list]Science Advances [curation]DOI: 10.1126/SCIADV.AAW2746
PubMed: 31934619
multivariate statistics [curation]; organoid [curation]2020-01-08
Inflammatory responses to a pathogenic West Nile virus strain[1]Bixing Huang, [2]Nic West, [3]Jelena Vider, [4]Ping Zhang, [5]Rebecca E Griffiths, [6]Ernst Wolvetang, [7]Peter Burtonclay, [8]David Warrilow [Full author list]BMC Infectious Diseases [curation]DOI: 10.1186/S12879-019-4471-8
PubMed: 31664929
West Nile virus [curation]2019-10-29
Determinants of Zika virus host tropism uncovered by deep mutational scanning[1]Yin Xiang Setoh, [2]Alberto A Amarilla, [3]Nias Peng, [4]Rebecca E Griffiths, [5]Julio Carrera, [6]Morgan E Freney, [7]Eri Nakayama, [8]Shinya Ogawa, [9]Daniel Watterson, [10]Naphak Modhiran, ..., [22]Paul R Young, [23]Jason M. Mackenzie, [24]Ernst Wolvetang, [25]Jesse D. Bloom, [26]Andreas Suhrbier, ... [Full author list]Nature Microbiology [curation]DOI: 10.1038/S41564-019-0399-4
PubMed: 30886357
Zika virus [curation]; host tropism [curation]; deep mutational scanning [curation]2019-03-18
Global Proteomic and Methylome Analysis in Human Induced Pluripotent Stem Cells Reveals Overexpression of a Human TLR3 Affecting Proper Innate Immune Response Signaling[1]Jordi Requena, [2]Ana Belen Alvarez-Palomo, [3]Montserrat Codina-Pascual, [4]Raul Delgado-Morales, [5]Sebastian Moran, [6]Manel Esteller, [7]Martí Sal, [8]Manel Juan, [9]Anna Boronat Barado, [10]Antonella Consiglio, [11]Orleigh Addeleccia Bogle, [12]Ernst Wolvetang, [13]Dmitry Ovchinnikov, [14]Inaki Alvarez, [15]Dolores Jaraquemada, [16]Jovita Mezquita-Pla, [17]Rafael Oliva, [18]Michael J Edel [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.2966
PubMed: 30664289
inflammation [curation]; cytokine [curation]; human leukocyte antigen [curation]; Neural stem cells [curation]; Human Induced Pluripotent Stem Cells [curation]2019-02-14
Platypus Induced Pluripotent Stem Cells: The Unique Pluripotency Signature of a Monotreme[1]Deanne J Whitworth, [2]Ioannis J Limnios, [3]Marie Gauthier, [4]Prasanna Weeratunga, [5]Dmitry A Ovchinnikov, [6]Gregory Baillie, [7]Sean Grimmond, [8]Jenny Graves, [9]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2018.0179
PubMed: 30417748
pluripotency [curation]2019-01-09
Evaluation of variability in human kidney organoids[1]Belinda Phipson, [2]Pei X Er, [3]Alexander N Combes, [4]Thomas Forbes, [5]Sara E Howden, [6]Luke Zappia, [7]Hsan-Jan Yen, [8]Kynan T Lawlor, [9]Lorna J Hale, [10]Jane Sun, [11]Ernst Wolvetang, [12]Minoru Takasato, [13]Alicia Oshlack, [14]Melissa Little [Full author list]Nature Methods [curation]DOI: 10.1038/S41592-018-0253-2
PubMed: 30573816
organoid [curation]2018-12-20
Author Correction: Reprogramming triggers endogenous L1 and Alu retrotransposition in human induced pluripotent stem cells[1]Sabine Klawitter, [2]Nina V Fuchs, [3]Kyle R Upton, [4]Martin Muñoz-Lopez, [5]Ruchi Shukla, [6]Jichang Wang, [7]Marta Garcia-Cañadas, [8]Cesar Lopez-Ruiz, [9]Daniel J Gerhardt, [10]Attila Sebe, ..., [19]Balázs Sarkadi, [20]Johannes Löwer, [21]Ernst Wolvetang, [22]Ulrich Martin, [23]Zoltán Ivics, ... [Full author list]Nature Communications [curation]DOI: 10.1038/S41467-018-07917-0
PubMed: 30568248
Human Induced Pluripotent Stem Cells [curation]2018-12-19
Identification of on-target mutagenesis during correction of a beta-thalassemia splice mutation in iPS cells with optimised CRISPR/Cas9-double nickase reveals potential safety concerns[1]Suad Alateeq, [2]Dmitry Ovchinnikov, [3]Timothy Tracey, [4]Deanne Whitworth, [5]Abdullah Al-Rubaish, [6]Amein Al-Ali, [7]Ernst Wolvetang [Full author list]APL Bioengineering [curation]DOI: 10.1063/1.5048625
PubMed: 31069325
CRISPR [curation]; beta thalassemia [curation]; Cas9 [curation]2018-12-03
A Simple Bioreactor-Based Method to Generate Kidney Organoids from Pluripotent Stem Cells[1]Aneta Przepiorski, [2]Veronika Sander, [3]Tracy Tran, [4]Jennifer A Hollywood, [5]Brie Sorrenson, [6]Jen-Hsing Shih, [7]Ernst Wolvetang, [8]Andrew Paul McMahon, [9]Teresa M Holm, [10]Alan J Davidson [Full author list]Stem Cell Reports [curation]DOI: 10.1016/J.STEMCR.2018.06.018
PubMed: 30033089
bioreactor [curation]; pluripotency [curation]; organoid [curation]2018-07-19
The Impact of APP on Alzheimer-like Pathogenesis and Gene Expression in Down Syndrome iPSC-Derived Neurons[1]Dmitry A Ovchinnikov, [2]Othmar Korn, [3]Isaac Virshup, [4]Christine A Wells, [5]Ernst Wolvetang [Full author list]Stem Cell Reports [curation]DOI: 10.1016/J.STEMCR.2018.05.004
PubMed: 29861166
Down syndrome [curation]2018-05-31
PCDH19 regulation of neural progenitor cell differentiation suggests asynchrony of neurogenesis as a mechanism contributing to PCDH19 Girls Clustering Epilepsy[1]Claire C Homan, [2]Stephen Pederson, [3]Thu-Hien To, [4]Chuan Tan, [5]Sandra Piltz, [6]Mark A Corbett, [7]Ernst Wolvetang, [8]Paul Q Thomas, [9]Lachlan A Jolly, [10]Jozef Gécz [Full author list]Neurobiology of Disease [curation]DOI: 10.1016/J.NBD.2018.05.004
PubMed: 29763708
cell differentiation [curation]; neurogenesis [curation]2018-05-12
Cortical Neurons Derived from Equine Induced Pluripotent Stem Cells Are Susceptible to Neurotropic Flavivirus Infection and Replication: An In Vitro Model for Equine Neuropathic Diseases[1]Patrick R J Fortuna, [2]Helle Bielefeldt-Ohmann, [3]Dmitry A Ovchinnikov, [4]Ernst Wolvetang, [5]Deanne J Whitworth [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2017.0106
PubMed: 29562867
2018-04-16
Expression Pattern of the Aspartyl-tRNA Synthetase DARS in the Human Brain[1]Dominik Fröhlich, [2]Alexandra K Suchowerska, [3]Carola Voss, [4]Ruojie He, [5]Ernst Wolvetang, [6]Georg von Jonquieres, [7]Cas Simons, [8]Thomas Fath, [9]Gary D Housley, [10]Matthias Klugmann [Full author list]Frontiers in Molecular Neuroscience [curation]DOI: 10.3389/FNMOL.2018.00081
PubMed: 29615866
2018-03-20
Modelling ischemia-reperfusion injury (IRI) in vitro using metabolically matured induced pluripotent stem cell-derived cardiomyocytes[1]Alejandro Hidalgo, [2]Nick Glass, [3]Dmitry Ovchinnikov, [4]Seung-Kwon Yang, [5]Xinli Zhang, [6]Stuart Mazzone, [7]Chen Chen, [8]Ernst Wolvetang, [9]Justin J Cooper-White [Full author list]APL Bioengineering [curation]DOI: 10.1063/1.5000746
PubMed: 31069299
reperfusion injury [curation]2018-03-20
Neuronal Lipid Metabolism: Multiple Pathways Driving Functional Outcomes in Health and Disease[1]Timothy J Tracey, [2]Frederik Steyn, [3]Ernst Wolvetang, [4]Shyuan T Ngo [Full author list]Frontiers in Molecular Neuroscience [curation]DOI: 10.3389/FNMOL.2018.00010
PubMed: 29410613
2018-01-23
Targeted, Stimuli-Responsive Delivery of Plasmid DNA and miRNAs Using a Facile Self-Assembled Supramolecular Nanoparticle System[1]Li-Yen Wong, [2]Bingzhao Xia, [3]Ernst Wolvetang, [4]Justin J Cooper-White [Full author list]Biomacromolecules [curation]DOI: 10.1021/ACS.BIOMAC.7B01462
PubMed: 29284260
nanoparticle [curation]; self-assembly [curation]2018-01-18
Induced Pluripotent Stem Cells from a Marsupial, the Tasmanian Devil (Sarcophilus harrisii): Insight into the Evolution of Mammalian Pluripotency.[1]Prasanna Weeratunga, [2]Arash Shahsavari, [2-Q96188692]Arash Shahsavari, [3]Dmitry A Ovchinnikov, [4]Ernst J Wolvetang, [4-Q38591333]Ernst Wolvetang, [5]Deanne J Whitworth, [5-Q95991592]Deanne Whitworth [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2017.0224
PubMed: 29161957
Tasmanian devil [curation]; pluripotency [curation]2017-11-22
Human iPSC-Derived Cerebellar Neurons from a Patient with Ataxia-Telangiectasia Reveal Disrupted Gene Regulatory Networks[1]Sam P Nayler, [2]Joseph E Powell, [3]Darya P Vanichkina, [4]Othmar Korn, [5]Christine A Wells, [6]Refik Kanjhan, [7]Jian Sun, [8]Ryan J Taft, [9]Martin F Lavin, [10]Ernst Wolvetang [Full author list]Frontiers in Cellular Neuroscience [curation]DOI: 10.3389/FNCEL.2017.00321
PubMed: 29081736
2017-10-13
Inhibition of DYRK1A disrupts neural lineage specification in human pluripotent stem cells[1]Stephanie F Bellmaine, [2]Dmitry A Ovchinnikov, [3]David T Manallack, [4]Claire E Cuddy, [5]Andrew Elefanty, [6]Edouard G Stanley, [7]Ernst Wolvetang, [8]Spencer J Williams, [9]Martin Pera [Full author list]eLife [curation]DOI: 10.7554/ELIFE.24502
PubMed: 28884684
2017-09-08
FANTOM5 CAGE profiles of human and mouse samples[1]Shuhei Noguchi, [2]Takahiro Arakawa, [3]Shiro Fukuda, [4]Masaaki Furuno, [5]Akira Hasegawa, [6]Fumi Hori, [7]Sachi Ishikawa-Kato, [8]Kaoru Kaida, [9]Ai Kaiho, [10]Mutsumi Kanamori-Katayama, ..., [148]Christine A Wells, [149]Louise Winteringham, [150]Ernst Wolvetang, [151]Yoko Yamaguchi, [152]Masayuki Yamamoto, ... [Full author list]Scientific Data [curation]DOI: 10.1038/SDATA.2017.112
PubMed: 28850106
2017-08-29
New concepts on the therapeutic control of complement anaphylatoxin receptors[1]Owen A Hawksworth, [2]Xaria X Li, [3]Liam G Coulthard, [4]Ernst Wolvetang, [5]Trent M. Woodruff [Full author list]Molecular Immunology [curation]DOI: 10.1016/J.MOLIMM.2017.05.015
PubMed: 28576324
2017-05-30
DNA methylation in schizophrenia in different patient-derived cell types[1]Alejandra M Vitale, [2]Nicholas Matigian, [3]Alexandre S Cristino, [4]Katia Nones, [5]Sugandha Ravishankar, [6]Bernadette Bellette, [7]Yongjun Fan, [8]Stephen A Wood, [9]Ernst Wolvetang, [10]Alan Mackay-Sim [Full author list]NPJ schizophrenia [curation]DOI: 10.1038/S41537-016-0006-0
PubMed: 28560252
schizophrenia [curation]; DNA methylation [curation]2017-05-29
Complement C5aR1 Signaling Promotes Polarization and Proliferation of Embryonic Neural Progenitor Cells through PKCζ[1]Liam G Coulthard, [2]Owen A Hawksworth, [3]Rui Li, [4]Anushree Balachandran, [5]John Lee, [6]Farshid Sepehrband, [7]Nyoman Kurniawan, [8]Angela Jeanes, [9]David Simmons, [10]Ernst Wolvetang, [11]Trent M. Woodruff [Full author list]Journal of Neuroscience [curation]DOI: 10.1523/JNEUROSCI.0525-17.2017
PubMed: 28455369
2017-04-28
The long non-coding RNA NEAT1 is responsive to neuronal activity and is associated with hyperexcitability states[1]Guy Barry, [2]James Alexander Briggs, [3]Do Won Hwang, [4]Sam P Nayler, [5]Patrick R J Fortuna, [6]Nicky Jonkhout, [7]Fabien Dachet, [8]Jesper L Maag, [9]Pieter Mestdagh, [10]Erin M Singh, ..., [28]Seth Blackshaw, [29]John S. Mattick, [30]Ernst Wolvetang [Full author list]Scientific Reports [curation]DOI: 10.1038/SREP40127
PubMed: 28054653
non-coding RNA [curation]2017-01-05
A rat model of ataxia-telangiectasia: evidence for a neurodegenerative phenotype[1]Hazel Quek, [2]John Luff, [3]KaGeen Cheung, [4]Sergei Kozlov, [5]Magtouf Gatei, [6]C Soon Lee, [7]Mark C. Bellingham, [8]Peter G. Noakes, [9]Yi Chieh Lim, [10]Nigel L Barnett, [11]Steven Dingwall, [12]Ernst Wolvetang, [13]Tomoji Mashimo, [14]Tara L Roberts, [15]Martin F Lavin [Full author list]Human Molecular Genetics [curation]DOI: 10.1093/HMG/DDW371
PubMed: 28007901
phenotype [curation]; neurodegeneration [curation]2017-01-01
Lentiviral Reprogramming of A-T Patient Fibroblasts to Induced Pluripotent Stem Cells[1]Sam Nayler, [2]Sergei V Kozlov, [3]Martin F Lavin, [4]Ernst Wolvetang [Full author list]Methods in Molecular Biology [curation]DOI: 10.1007/978-1-4939-6955-5_29
PubMed: 28477135
2017-01-01
Rats with a missense mutation in Atm display neuroinflammation and neurodegeneration subsequent to accumulation of cytosolic DNA following unrepaired DNA damage[1]Hazel Quek, [2]John Luff, [3]KaGeen Cheung, [4]Sergei Kozlov, [5]Magtouf Gatei, [6]C Soon Lee, [7]Mark C. Bellingham, [8]Peter G. Noakes, [9]Yi Chieh Lim, [10]Nigel L Barnett, [11]Steven Dingwall, [12]Ernst Wolvetang, [13]Tomoji Mashimo, [14]Tara L Roberts, [15]Martin F Lavin [Full author list]Journal of Leukocyte Biology [curation]DOI: 10.1189/JLB.4VMA0716-316R
PubMed: 27895165
inflammation [curation]; neurodegeneration [curation]; DNA damage [curation]; neuronitis [curation]2016-11-28
Therapeutic targets and investigated treatments for Ataxia-Telangiectasia[1]Martin F. Lavin, [2]Abrey J. Yeo, [3]Amanda W. Kijas, [4]Ernst Wolvetang, [5]Peter D. Sly, [6]Claire Wainwright, [7]Kate Sinclair [Full author list]Expert opinion on orphan drugs [curation]DOI: 10.1080/21678707.2016.1254618
2016-11-11
Proceedings of the Frontiers of Retrovirology Conference 2016[1]Irena Zurnic, [2]Sylvia Hütter, [3]Ute Lehmann, [4]Nicole Stanke, [5]Juliane Reh, [6]Tobias Kern, [7]Fabian Lindel, [8]Gesche Gerresheim, [9]Martin Hamann, [10]Erik Müllers, ..., [131]Anett Witthuhn, [132]Alexandra Haase, [133]Ernst Wolvetang, [134]Ulrich Martin, [135]Zoltán Ivics, ... [Full author list]Retrovirology [curation]DOI: 10.1186/S12977-016-0294-5
2016-09-26
Correction: AarF Domain Containing Kinase 3 (ADCK3) Mutant Cells Display Signs of Oxidative Stress, Defects in Mitochondrial Homeostasis and Lysosomal Accumulation[1]Jason K Cullen, [2]Norazian Abdul Murad, [3]Abrey Yeo, [4]Matthew McKenzie, [5]Micheal Ward, [6]Kok Leong Chong, [7]Nicole L Schieber, [8]Robert G Parton, [9]Yi Chieh Lim, [10]Ernst Wolvetang, [11]Ghassan Maghzal, [12]Roland Stocker, [13]Martin F Lavin [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0160162
PubMed: 27442024
2016-07-21
Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis[1]Minoru Takasato, [2]Pei X Er, [3]Han S Chiu, [4]Barbara Maier, [5]Gregory Baillie, [6]Charles Ferguson, [7]Robert G Parton, [8]Ernst Wolvetang, [9]Matthias S Roost, [10]Susana M Chuva de Sousa Lopes, [11]Melissa Little [Full author list]Nature [curation]DOI: 10.1038/NATURE17982
PubMed: 27120161
organoid [curation]; Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis [curation]2016-04-27
Induction of Human iPSC-Derived Cardiomyocyte Proliferation Revealed by Combinatorial Screening in High Density Microbioreactor Arrays[1]Drew M Titmarsh, [2]Nick R Glass, [3]Richard J Mills, [4]Alejandro Hidalgo, [5]Ernst Wolvetang, [6]Enzo R Porrello, [7]James E Hudson, [8]Justin J Cooper-White [Full author list]Scientific Reports [curation]DOI: 10.1038/SREP24637
PubMed: 27097795
2016-04-21
Reprogramming triggers endogenous L1 and Alu retrotransposition in human induced pluripotent stem cells[1]Sabine Klawitter, [2]Nina V Fuchs, [3]Kyle R Upton, [4]Martin Muñoz-López, [5]Ruchi Shukla, [6]Jichang Wang, [7]Marta Garcia-Canadas, [8]Cesar Lopez-Ruiz, [9]Daniel J Gerhardt, [10]Attila Sebe, ..., [19]Balázs Sarkadi, [20]Johannes Löwer, [21]Ernst Wolvetang, [22]Ulrich Martin, [23]Zoltán Ivics, ... [Full author list]Nature Communications [curation]DOI: 10.1038/NCOMMS10286
PubMed: 26743714
Human Induced Pluripotent Stem Cells [curation]2016-01-08
Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)[1]Daniel J. Klionsky, [2]Kotb Abdelmohsen, [3]Akihisa Abe, [4]Md Joynal Abedin, [5]Hagai Abeliovich, [6]Abraham Acevedo-Arozena, [7]Hiroaki Adachi, [8]Christopher M Adams, [9]Peter D Adams, [10]Khosrow Adeli, ..., [2292]Stephanie E Wohlgemuth, [2293]Thomas Wollert, [2294]Ernst Wolvetang, [2295]Esther Wong, [2296]G William Wong, ... [Full author list]Autophagy [curation]DOI: 10.1080/15548627.2015.1100356
PubMed: 26799652
cell biology [curation]; autophagy [curation]2016-01-02
AarF Domain Containing Kinase 3 (ADCK3) Mutant Cells Display Signs of Oxidative Stress, Defects in Mitochondrial Homeostasis and Lysosomal Accumulation[1]Jason K Cullen, [2]Norazian Abdul Murad, [3]Abrey Yeo, [4]Matthew McKenzie, [5]Micheal Ward, [6]Kok Leong Chong, [7]Nicole Schieber, [8]Robert G. Parton, [9]Yi Chieh Lim, [10]Ernst Wolvetang, [11]Ghassan Maghzal, [12]Roland Stocker, [13]Martin F Lavin [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0148213
PubMed: 26866375
2016-01-01
Mechanisms of Long Non-coding RNAs in Mammalian Nervous System Development, Plasticity, Disease, and Evolution[1]James Alexander Briggs, [2]Ernst Wolvetang, [3]John S. Mattick, [4]John L. Rinn, [5]Guy Barry [Full author list]Neuron [curation]DOI: 10.1016/J.NEURON.2015.09.045
PubMed: 26637795
nervous system [curation]2015-12-01
Serotonin Syndrome After Methylene Blue Administration During Cardiac Surgery: A Case Report and Review[1]Ernst Wolvetang, [2]Rineke Janse, [3]Maarten Ter Horst [Full author list]Journal of Cardiothoracic and Vascular Anesthesia [curation]DOI: 10.1053/J.JVCA.2015.11.019
PubMed: 27130452
cardiac surgery [curation]; serotonin syndrome [curation]2015-12-01
Kidney organoids from human iPS cells contain multiple lineages and model human nephrogenesis[1]Minoru Takasato, [2]Pei X Er, [3]Han S Chiu, [4]Barbara Maier, [5]Gregory Baillie, [6]Charles Ferguson, [7]Robert G. Parton, [8]Ernst Wolvetang, [9]Matthias S Roost, [10]Susana M Chuva de Sousa Lopes, [11]Melissa Little [Full author list]Nature [curation]DOI: 10.1038/NATURE15695
PubMed: 26444236
organoid [curation]2015-10-07
A protocol for the identification and validation of novel genetic causes of kidney disease[1]Andrew Mallett, [2]Chirag Patel, [3]Barbara Maier, [4]Julie McGaughran, [5]Michael Gabbett, [6]Minoru Takasato, [7]Anne Cameron, [8]Peter Trnka, [9]Stephen I Alexander, [10]Gopala Rangan, ..., [16]Valentine Hyland, [17]Wendy E. Hoy, [18]Ernst Wolvetang, [19]Ryan Taft, [20]Cas Simons, ... [Full author list]BMC Nephrology [curation]DOI: 10.1186/S12882-015-0148-8
PubMed: 26374634
2015-09-15
Variability of Gene Expression Identifies Transcriptional Regulators of Early Human Embryonic Development[1]Yu Hasegawa, [2]Deanne M. Taylor, [3]Dmitry A Ovchinnikov, [4]Ernst Wolvetang, [5]Laurence de Torrenté, [6]Jessica C Mar [Full author list]PLOS Genetics [curation]DOI: 10.1371/JOURNAL.PGEN.1005428
PubMed: 26288249
RNA sequencing [curation]2015-08-19
ATM-dependent phosphorylation of MRE11 controls extent of resection during homology directed repair by signalling through Exonuclease 1[1]Amanda W Kijas, [2]Yi Chieh Lim, [3]Emma Bolderson, [4]Karen Cerosaletti, [5]Magtouf Gatei, [6]Burkhard Jakob, [7]Tobias Frank, [8]Gisela Taucher-Scholz, [9]Nuri Gueven, [10]Greg Oakley, [11]Patrick Concannon, [12]Ernst Wolvetang, [13]Kum Kum Khanna, [14]Lisa Wiesmüller, [15]Martin F Lavin [Full author list]Nucleic Acids Research [curation]DOI: 10.1093/NAR/GKV754
PubMed: 26240375
phosphorylation [curation]2015-08-03
A new model to study neurodegeneration in ataxia oculomotor apraxia type 2[1]Olivier J Becherel, [2]Jane Sun, [3]Abrey Yeo, [4]Sam Nayler, [5]Brent L Fogel, [6]Fuying Gao, [7]Giovanni Coppola, [8]Chiara Criscuolo, [9]Giuseppe De Michele, [10]Ernst Wolvetang, [11]Martin F Lavin [Full author list]Human Molecular Genetics [curation]DOI: 10.1093/HMG/DDV296
PubMed: 26231220
apraxia [curation]; neurodegeneration [curation]2015-07-30
RELB Alters Proliferation of Human Pluripotent Stem Cells via IMP3- and LIN28-Mediated Modulation of the Expression of IGF2 and Other Cell-Cycle Regulators[1]Nilay Yogeshkumar Thakar, [2]Dmitry A Ovchinnikov, [3]Marcus L Hastie, [4]Jeffrey Gorman, [5]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2014.0587
PubMed: 25794352
pluripotency [curation]2015-05-05
Transcribed enhancers lead waves of coordinated transcription in transitioning mammalian cells[1]Erik Arner, [2]Carsten O Daub, [3]Kristoffer Vitting-Seerup, [4]Robin Andersson, [5]Berit Lilje, [6]Finn Drabløs, [7]Andreas Lennartsson, [8]Michelle Rönnerblad, [9]Olga Hrydziuszko, [10]Morana Vitezic, ..., [68]Andru Tomoiu, [69]Louise Winteringham, [70]Ernst Wolvetang, [71]Chiyo Yanagi-Mizuochi, [72]Misako Yoneda, ... [Full author list]Science [curation]DOI: 10.1126/SCIENCE.1259418
PubMed: 25678556
2015-02-12
High-throughput, deterministic single cell trapping and long-term clonal cell culture in microfluidic devices.[1]Huaying Chen, [2]Jane Sun, [3]Ernst Wolvetang, [4]Justin J Cooper-White [Full author list]Lab on a Chip [curation]DOI: 10.1039/C4LC01176G
PubMed: 25519528
microfluidics [curation]; microfluidic device [curation]2015-02-01
TRAF2 recruitment via T61 in CD30 drives NFκB activation and enhances hESC survival and proliferation[1]Nilay Y Thakar, [2]Dmitry A Ovchinnikov, [3]Marcus L Hastie, [4]Boštjan Kobe, [5]Jeffrey J Gorman, [6]Ernst Wolvetang [Full author list]Molecular Biology of the Cell [curation]DOI: 10.1091/MBC.E14-08-1290
PubMed: 25568342
2015-01-07
Isolation of contractile cardiomyocytes from human pluripotent stem-cell-derived cardiomyogenic cultures using a human NCX1-EGFP reporter[1]Dmitry A Ovchinnikov, [2]Alejandro Hidalgo, [3]Seung-Kwon Yang, [4]Xinli Zhang, [5]James E Hudson, [6]Stuart Mazzone, [7]Chen Chen, [8]Justin J Cooper-White, [9]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2014.0195
PubMed: 25075536
pluripotency [curation]2015-01-01
Advances in reprogramming to pluripotency[1]Suad Alateeq, [2]Patrick R J Fortuna, [3]Ernst Wolvetang [Full author list]Current Stem Cell Research and Therapy [curation]DOI: 10.2174/1574888X10666150220154820
PubMed: 25697500
pluripotency [curation]2015-01-01
Generation of Footprint-Free Induced Pluripotent Stem Cells from Human Fibroblasts Using Episomal Plasmid Vectors.[1]Dmitry A Ovchinnikov, [2]Jane Sun, [3]Ernst Wolvetang [Full author list]Methods in Molecular Biology [curation]DOI: 10.1007/978-1-4939-2848-4_4
PubMed: 26621587
Human Induced Pluripotent Stem Cells [curation]2015-01-01
Opportunities and Limitations of Modelling Alzheimer's Disease with Induced Pluripotent Stem Cells[1]Dmitry A Ovchinnikov, [2]Ernst Wolvetang [Full author list]Journal of Clinical Medicine [curation]DOI: 10.3390/JCM3041357
PubMed: 26237606
Alzheimer's disease [curation]2014-12-05
Derivation of mesenchymal stromal cells from canine induced pluripotent stem cells by inhibition of the TGFβ/activin signaling pathway[1]Deanne J Whitworth, [2]Jessica E. Frith, [3]Thomas J R Frith, [4]Dmitry A Ovchinnikov, [5]Justin J Cooper-White, [6]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2013.0634
PubMed: 25055193
2014-12-01
Brief report: complement C5a promotes human embryonic stem cell pluripotency in the absence of FGF2[1]Owen A Hawksworth, [2]Liam G Coulthard, [3]Stephen M Taylor, [4]Ernst Wolvetang, [5]Trent M. Woodruff [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.1801
PubMed: 25132103
pluripotency [curation]; human embryonic stem cell [curation]2014-12-01
Polymeric nanofibrous substrates stimulate pluripotent stem cells to form three-dimensional multilayered patty-like spheroids in feeder-free culture and maintain their pluripotency[1]Mohammad A Alamein, [2]Ernst Wolvetang, [3]Dmitry A Ovchinnikov, [4]Sebastien Stephens, [5]Katherine Sanders, [6]Patrick H Warnke [Full author list]Journal of Tissue Engineering and Regenerative Medicine [curation]DOI: 10.1002/TERM.1960
PubMed: 25423911
pluripotency [curation]2014-11-25
Metabolic profiling and flux analysis of MEL-2 human embryonic stem cells during exponential growth at physiological and atmospheric oxygen concentrations[1]Jennifer Turner, [2]Lake-Ee Quek, [3]Drew M Titmarsh, [4]Jens O Krömer, [5]Li-Pin Kao, [6]Lars Nielsen, [7]Ernst Wolvetang, [8]Justin J Cooper-White [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0112757
PubMed: 25412279
human embryonic stem cell [curation]; metabolic profiling [curation]2014-11-20
Gene expression variability as a unifying element of the pluripotency network[1]Elizabeth A Mason, [2]Jessica C Mar, [3]Andrew L Laslett, [4]Martin F Pera, [5]John Quackenbush, [6]Ernst Wolvetang, [7]Christine A Wells [Full author list]Stem Cell Reports [curation]DOI: 10.1016/J.STEMCR.2014.06.008
PubMed: 25254348
pluripotency [curation]2014-07-25
Transgenic human ES and iPS reporter cell lines for identification and selection of pluripotent stem cells in vitro[1]Dmitry A Ovchinnikov, [2]Drew M Titmarsh, [3]Patrick R J Fortuna, [4]Alejandro Hidalgo, [5]Samah Alharbi, [6]Deanne J Whitworth, [7]Justin J Cooper-White, [8]Ernst Wolvetang [Full author list]Stem Cell Research [curation]DOI: 10.1016/J.SCR.2014.05.006
PubMed: 25108530
pluripotency [curation]2014-06-08
Generation and characterization of leukemia inhibitory factor-dependent equine induced pluripotent stem cells from adult dermal fibroblasts[1]Deanne J Whitworth, [2]Dmitry A Ovchinnikov, [3]Jane Sun, [4]Patrick R J Fortuna, [5]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2013.0461
PubMed: 24555755
leukemia [curation]; cell line [curation]2014-04-01
A promoter-level mammalian expression atlas[1]Shannan J. Ho Sui, [2]Alistair Forrest, [3]Hideya Kawaji, [4]Michael Rehli, [5]John Kenneth Baillie, [6]Michiel Jl de Hoon, [7]Vanja Haberle, [8]Timo Lassmann, [9]Ivan Kulakovskiy, [10]Marina Lizio, ..., [235]Christine A Wells, [236]Louise Winteringham, [237]Ernst Wolvetang, [238]Emily J Wood, [239]Yoko Yamaguchi, ... [Full author list]Nature [curation]DOI: 10.1038/NATURE13182
PubMed: 24670764
2014-03-01
Identification of unsafe human induced pluripotent stem cell lines using a robust surrogate assay for pluripotency[1]Juan Carlos Polanco, [2]Mirabelle S H Ho, [3]Bei Wang, [4]Qi Zhou, [5]Ernst Wolvetang, [6]Elizabeth A Mason, [7]Christine A Wells, [8]Gabriel Kolle, [9]Sean Grimmond, [10]Ivan Bertoncello, [11]Carmel O'Brien, [12]Andrew L Laslett [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.1425
PubMed: 23728894
pluripotency [curation]; Human Induced Pluripotent Stem Cells [curation]2013-08-01
Will brain cells derived from induced pluripotent stem cells or directly converted from somatic cells (iNs) be useful for schizophrenia research?[1]Cheryl Filippich, [2]Ernst Wolvetang, [3]Bryan J Mowry [Full author list]Schizophrenia Bulletin [curation]DOI: 10.1093/SCHBUL/SBT103
PubMed: 23884351
schizophrenia [curation]2013-07-24
Full factorial screening of human embryonic stem cell maintenance with multiplexed microbioreactor arrays[1]Drew M Titmarsh, [2]Dmitry A Ovchinnikov, [3]Ernst Wolvetang, [4]Justin J Cooper-White [Full author list]Biotechnology Journal [curation]DOI: 10.1002/BIOT.201200375
PubMed: 23813764
human embryonic stem cell [curation]2013-07-01
The long non-coding RNA Gomafu is acutely regulated in response to neuronal activation and involved in schizophrenia-associated alternative splicing[1]Guy Barry, [2]J A Briggs, [3]Darya P Vanichkina, [4]E M Poth, [5]N J Beveridge, [6]V S Ratnu, [7]S P Nayler, [8]K Nones, [9]J Hu, [10]T W Bredy, [11]S Nakagawa, [12]F Rigo, [13]R J Taft, [14]Murray J Cairns, [15]S Blackshaw, [16]Ernst Wolvetang, [17]John S. Mattick [Full author list]Molecular Psychiatry [curation]DOI: 10.1038/MP.2013.45
PubMed: 23628989
schizophrenia [curation]; non-coding RNA [curation]; alternative mRNA splicing, via spliceosome [curation]2013-04-30
Autophagy in stem cells[1]Jun-Lin Guan, [2]Anna Katharina Simon, [3]Mark Prescott, [4]Javier A Menendez, [5]Fei Liu, [6]Fen Wang, [7]Chenran Wang, [8]Ernst Wolvetang, [9]Alejandro Vazquez-Martin, [10]Jue Zhang [Full author list]Autophagy [curation]DOI: 10.4161/AUTO.24132
PubMed: 23486312
autophagy [curation]2013-03-13
Integration-free induced pluripotent stem cells model genetic and neural developmental features of down syndrome etiology.[1]James Alexander Briggs, [2]Jane Sun, [3]Jill Shepherd, [4]Dmitry A Ovchinnikov, [5]Tung-Liang Chung, [6]Sam P Nayler, [7]Li-Pin Kao, [8]Carl A Morrow, [9]Nilay Y Thakar, [10]Set-Yen Soo, [11]Teija Peura, [12]Sean Grimmond, [13]Ernst Wolvetang [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.1297
PubMed: 23225669
Down syndrome [curation]2013-03-01
Tailorable cell culture platforms from enzymatically cross-linked multifunctional poly(ethylene glycol)-based hydrogels[1]Donna J Menzies, [2]Andrew R Cameron, [3]Trent P Munro, [4]Ernst Wolvetang, [5]Lisbeth Grøndahl, [6]Justin J Cooper-White [Full author list]Biomacromolecules [curation]DOI: 10.1021/BM301652Q
PubMed: 23259935
hydrogel [curation]2013-01-15
Microbioreactor arrays for full factorial screening of exogenous and paracrine factors in human embryonic stem cell differentiation[1]Drew M Titmarsh, [2]James E Hudson, [3]Alejandro Hidalgo, [4]Andrew Elefanty, [5]Edouard G Stanley, [6]Ernst Wolvetang, [7]Justin J Cooper-White [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0052405
PubMed: 23300662
cell differentiation [curation]; stem cell differentiation [curation]; human embryonic stem cell [curation]2012-12-26
Tumor-suppressor Gene Promoter Hypermethylation in Saliva of Head and Neck Cancer Patients[1]Dmitry A Ovchinnikov, [2]Matthew A. Cooper, [3]Pratibala Pandit, [4]William B Coman, [5]Justin J Cooper-White, [6]Patricia Keith, [7]Ernst Wolvetang, [8]Paul D Slowey, [9]Chamindie Punyadeera [Full author list]Translational Oncology [curation]DOI: 10.1593/TLO.12232
PubMed: 23066440
saliva [curation]; head and neck cancer [curation]; head and neck carcinoma [curation]; neck cancer [curation]; hypermethylation [curation]2012-10-01
Variability in the generation of induced pluripotent stem cells: importance for disease modeling[1]Alejandra M Vitale, [2]Nicholas Matigian, [3]Sugandha Ravishankar, [4]Bernadette Bellette, [5]Stephen A Wood, [6]Ernst Wolvetang, [7]Alan Mackay-Sim [Full author list]Stem Cells Translational Medicine [curation]DOI: 10.5966/SCTM.2012-0043
PubMed: 23197870
2012-09-07
Differential mesengenic potential and expression of stem cell-fate modulators in mesenchymal stromal cells from human-term placenta and bone marrow[1]Pamela A Jaramillo-Ferrada, [2]Ernst Wolvetang, [3]Justin J Cooper-White [Full author list]Journal of Cellular Physiology [curation]DOI: 10.1002/JCP.24014
PubMed: 22105866
2012-09-01
Arrayed cellular environments for stem cells and regenerative medicine[1]Drew M Titmarsh, [2]Huaying Chen, [3]Ernst Wolvetang, [4]Justin J Cooper-White [Full author list]Biotechnology Journal [curation]DOI: 10.1002/BIOT.201200149
PubMed: 22890848
regenerative medicine [curation]2012-08-14
Generation of a human embryonic stem cell line stably expressing high levels of the fluorescent protein mCherry[1]Dmitry A Ovchinnikov, [2]Jennifer P Turner, [3]Drew M Titmarsh, [4]Nilay Y Thakar, [5]Dong Choon Sin, [6]Justin J Cooper-White, [7]Ernst Wolvetang [Full author list]World Journal of Stem Cells [curation]DOI: 10.4252/WJSC.V4.I7.71
PubMed: 22993664
mCherry [curation]; cell line [curation]2012-07-01
The effect of ethidium bromide and chloramphenicol on mitochondrial biogenesis in primary human fibroblasts[1]Li-Pin Kao, [2]Dmitry A Ovchinnikov, [3]Ernst Wolvetang [Full author list]Toxicology and Applied Pharmacology [curation]DOI: 10.1016/J.TAAP.2012.03.009
PubMed: 22712077
chloramphenicol [curation]2012-05-01
Generation and characterization of LIF-dependent canine induced pluripotent stem cells from adult dermal fibroblasts[1]Deanne J Whitworth, [2]Dmitry A Ovchinnikov, [3]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2011.0608
PubMed: 22221227
2012-02-15
Small molecule mesengenic induction of human induced pluripotent stem cells to generate mesenchymal stem/stromal cells[1]Yen Shun Chen, [2]Rebecca A Pelekanos, [3]Rebecca L Ellis, [4]Rachel Horne, [5]Ernst Wolvetang, [6]Nicholas M Fisk [Full author list]Stem Cells Translational Medicine [curation]DOI: 10.5966/SCTM.2011-0022
PubMed: 23197756
Human Induced Pluripotent Stem Cells [curation]2012-02-07
Autophagy in human embryonic stem cells[1]Thien Tra, [2]Lan Gong, [3]Lin-Pin Kao, [4]Xue-Lei Li, [5]Catarina Grandela, [6]Rodney J Devenish, [7]Ernst Wolvetang, [8]Mark Prescott [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0027485
PubMed: 22110659
autophagy [curation]; human embryonic stem cell [curation]2011-11-14
Primitive cardiac cells from human embryonic stem cells[1]James E Hudson, [2]Drew M Titmarsh, [3]Alejandro Hidalgo, [4]Ernst Wolvetang, [5]Justin J Cooper-White [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2011.0254
PubMed: 21933026
human embryonic stem cell [curation]2011-11-09
Optimization of flowrate for expansion of human embryonic stem cells in perfusion microbioreactors[1]Drew M Titmarsh, [2]Alejandro Hidalgo, [3]Jennifer Turner, [4]Ernst Wolvetang, [5]Justin J Cooper-White [Full author list]Biotechnology and Bioengineering [curation]DOI: 10.1002/BIT.23260
PubMed: 21732331
human embryonic stem cell [curation]2011-07-22
Development of myocardial constructs using modulus-matched acrylated polypropylene glycol triol substrate and different nonmyocyte cell populations[1]James E Hudson, [2]Gary Brooke, [3]Chris Blair, [4]Ernst Wolvetang, [5]Justin J Cooper-White [Full author list]Tissue Engineering. Part A [curation]DOI: 10.1089/TEN.TEA.2010.0743
PubMed: 21542698
2011-06-28
Induced pluripotent stem cells: a new technology to study human diseases[1]Alejandra M Vitale, [2]Ernst Wolvetang, [3]Alan Mackay-Sim [Full author list]International Journal of Biochemistry & Cell Biology [curation]DOI: 10.1016/J.BIOCEL.2011.03.013
PubMed: 21458591
Human Induced Pluripotent Stem Cells [curation]2011-03-31
A defined medium and substrate for expansion of human mesenchymal stromal cell progenitors that enriches for osteo- and chondrogenic precursors[1]James E Hudson, [2]Richard J Mills, [3]Jessica E. Frith, [4]Gary Brooke, [5]Pamela Jaramillo-Ferrada, [6]Ernst Wolvetang, [7]Justin J Cooper-White [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2009.0497
PubMed: 20446813
hematology [curation]2010-11-09
Ascorbate promotes epigenetic activation of CD30 in human embryonic stem cells[1]Tung-Liang Chung, [2]Jennifer P Turner, [3]Nilay Y Thaker, [4]Gabriel Kolle, [5]Justin J Cooper-White, [6]Sean Grimmond, [7]Martin Pera, [8]Ernst Wolvetang [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.500
PubMed: 20715184
human embryonic stem cell [curation]2010-10-01
Vitamin C promotes widespread yet specific DNA demethylation of the epigenome in human embryonic stem cells[1]Tung-Liang Chung, [2]Romulo M Brena, [3]Gabriel Kolle, [4]Sean Grimmond, [5]Benjamin P Berman, [6]Peter W Laird, [7]Martin Pera, [8]Ernst Wolvetang [Full author list]Stem Cells [curation]DOI: 10.1002/STEM.493
PubMed: 20687155
vitamin [curation]; vitamin C [curation]; human embryonic stem cell [curation]2010-10-01
A synthetic elastomer based on acrylated polypropylene glycol triol with tunable modulus for tissue engineering applications[1]James E Hudson, [2]Jessica E. Frith, [3]Bogdan C Donose, [4]Elisabeth Rondeau, [5]Richard J Mills, [6]Ernst Wolvetang, [7]Gary P Brooke, [8]Justin J Cooper-White [Full author list]Biomaterials [curation]DOI: 10.1016/J.BIOMATERIALS.2010.07.007
PubMed: 20688386
tissue engineering [curation]2010-08-04
Long term culture of human embryonic stem cells on recombinant vitronectin in ascorbate free media[1]Andrew B J Prowse, [2]Michael R. Doran, [3]Justin J Cooper-White, [4]Fenny Chong, [5]Trent P Munro, [6]Jane Fitzpatrick, [7]Tung-Liang Chung, [8]David N Haylock, [9]Peter P Gray, [10]Ernst Wolvetang [Full author list]Biomaterials [curation]DOI: 10.1016/J.BIOMATERIALS.2010.07.037
PubMed: 20674971
human embryonic stem cell [curation]2010-08-02
Defined high protein content surfaces for stem cell culture[1]Michael R. Doran, [2]Jessica E. Frith, [3]Andrew B J Prowse, [4]Jane Fitzpatrick, [5]Ernst Wolvetang, [6]Trent P Munro, [7]Peter P Gray, [8]Justin J Cooper-White [Full author list]Biomaterials [curation]DOI: 10.1016/J.BIOMATERIALS.2010.03.015
PubMed: 20378164
2010-04-08
Multiplexed staining of live human embryonic stem cells for flow cytometric analysis of pluripotency markers.[1]Andrew B J Prowse, [2]John Wilson, [3]Geoffrey W Osborne, [4]Peter P Gray, [5]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2009.0080
PubMed: 19397457
flow cytometry [curation]; pluripotency [curation]; human embryonic stem cell [curation]2009-10-01
A rapid, cost-effective method for counting human embryonic stem cell numbers as clumps[1]Andrew Prowse, [2]Ernst Wolvetang, [3]Peter Gray [Full author list]BioTechniques [curation]DOI: 10.2144/000113151
PubMed: 19594444
human embryonic stem cell [curation]2009-07-01
Adipocyte differentiation in human embryonic stem cells transduced with Oct4 shRNA lentivirus[1]Nicholas R F Hannan, [2]Ernst Wolvetang [Full author list]Stem Cells and Development [curation]DOI: 10.1089/SCD.2008.0160
PubMed: 18764734
adipocyte [curation]; human embryonic stem cell [curation]2009-05-01
Stimulation of autophagy suppresses the intracellular survival of Burkholderia pseudomallei in mammalian cell lines[1]Meabh Cullinane, [2]Lan Gong, [3]Xuelei Li, [4]Natalie Lazar-Adler, [5]Thien Tra, [6]Ernst Wolvetang, [7]Mark Prescott, [8]John D Boyce, [9]Rodney J Devenish, [10]Ben Adler [Full author list]Autophagy [curation]DOI: 10.4161/AUTO.6246
PubMed: 18483470
Burkholderia pseudomallei [curation]; autophagy [curation]2008-05-06
p53 is required for etoposide-induced apoptosis of human embryonic stem cells[1]C Grandela, [2]Martin Pera, [3]Sean Grimmond, [4]G Kolle, [5]Ernst Wolvetang [Full author list]Stem Cell Research [curation]DOI: 10.1016/J.SCR.2007.10.003
PubMed: 19383392
human embryonic stem cell [curation]2007-10-22
Gap junction mediated transport of shRNA between human embryonic stem cells[1]Ernst Wolvetang, [2]Martin Pera, [3]Kenneth S Zuckerman [Full author list]Biochemical and Biophysical Research Communications [curation]DOI: 10.1016/J.BBRC.2007.09.035
PubMed: 17900528
human embryonic stem cell [curation]2007-09-20
CD30 is a survival factor and a biomarker for transformed human pluripotent stem cells[1]Daniella Herszfeld, [2]Ernst Wolvetang, [3]Emma Langton-Bunker, [4]Tung-Liang Chung, [5]Adam A Filipczyk, [6]Souheir Houssami, [7]Pegah Jamshidi, [8]Karen Koh, [9]Andrew L Laslett, [10]Anna Michalska, [11]Linh Nguyen, [12]Benjamin E Reubinoff, [13]Irene Tellis, [14]Jonathan M Auerbach, [15]Carol J Ording, [16]Leendert H J Looijenga, [17]Martin F Pera [Full author list]Nature Biotechnology [curation]DOI: 10.1038/NBT1197
PubMed: 16501577
biomarker [curation]; pluripotency [curation]2006-02-26
Essential roles of sphingosine-1-phosphate and platelet-derived growth factor in the maintenance of human embryonic stem cells[1]Alice Pébay, [2]Raymond C B Wong, [3]Stuart M Pitson, [4]Ernst Wolvetang, [5]Gary S-L Peh, [6]Adam Filipczyk, [7]Karen L L Koh, [8]Irene Tellis, [9]Linh T V Nguyen, [10]Martin Pera [Full author list]Stem Cells [curation]DOI: 10.1634/STEMCELLS.2004-0338
PubMed: 16081668
human embryonic stem cell [curation]2005-08-04
ets-2 promotes the activation of a mitochondrial death pathway in Down's syndrome neurons[1]Pablo Helguera, [2]Alejandra Pelsman, [3]Gustavo Pigino, [4]Ernst Wolvetang, [5]Elizabeth Head, [6]Jorge Busciglio [Full author list]Journal of Neuroscience [curation]DOI: 10.1523/JNEUROSCI.5107-04.2005
PubMed: 15745955
2005-03-01
Mitochondrial dysfunction in mouse oocytes results in preimplantation embryo arrest in vitro[1]George A Thouas, [2]Alan O Trounson, [3]Ernst Wolvetang, [4]Gayle M Jones [Full author list]Biology of Reproduction [curation]DOI: 10.1095/BIOLREPROD.104.033589
PubMed: 15286028
2004-07-30
Overexpression of the chromosome 21 transcription factor Ets2 induces neuronal apoptosis[0]Owen M Bradfield, [1]Ernst Wolvetang, [2]O M Bradfield, [3]T Hatzistavrou, [4]Peter J. Crack, [5]J Busciglio, [5-Q38359228]Paul J Hertzog, [6]I Kola, [7]P J Hertzog [Full author list]Neurobiology of Disease [curation]DOI: 10.1016/S0969-9961(03)00107-4
PubMed: 14678752
overexpression [curation]2003-12-01
Epstein-Barr virus LMP1 blocks p16INK4a-RB pathway by promoting nuclear export of E2F4/5[1]Naoko Ohtani, [2]Paul Brennan, [3]Stefan Gaubatz, [4]Elaine Sanij, [5]Paul J Hertzog, [6]Ernst Wolvetang, [7]Jacques Ghysdael, [8]Martin Rowe, [9]Eiji Hara [Full author list]Journal of Cell Biology [curation]DOI: 10.1083/JCB.200302085
PubMed: 12860972
Epstein–Barr virus [curation]; cell biology [curation]2003-07-14
Regulation of p53 by macrophage migration inhibitory factor in inflammatory arthritis[1]Michelle Leech, [2]Derek Lacey, [3]Jin Rong Xue, [4]Leilani L Santos, [5]Paul Hutchinson, [6]Ernst Wolvetang, [7]John R David, [8]Richard Bucala, [9]Eric F. Morand [Full author list]Arthritis and Rheumatism [curation]DOI: 10.1002/ART.11165
PubMed: 12847682
macrophage [curation]2003-07-01
The chromosome 21 transcription factor ETS2 transactivates the beta-APP promoter: implications for Down syndrome[0]Owen M Bradfield, [1]Ernst Wolvetang, [2]O M Bradfield, [2-Q38359228]Paul J Hertzog, [3]M Tymms, [4]S Zavarsek, [5]T Hatzistavrou, [6]I Kola, [7]P J Hertzog [Full author list]Biochimica et Biophysica Acta [curation]DOI: 10.1016/S0167-4781(03)00121-0
PubMed: 12890557
2003-07-01
Characterization of monoclonal antibodies specific to the transcription factor ETS-2 protein[1]Elaine Sanij, [2]Bernadette Scott, [3]Trevor Wilson, [4]Dakang Xu, [5]Paul J Hertzog, [6]Ernst Wolvetang [Full author list]immunology Letters [curation]DOI: 10.1016/S0165-2478(02)00258-4
PubMed: 12600747
2003-03-01
ETS2 overexpression in transgenic models and in Down syndrome predisposes to apoptosis via the p53 pathway[1]Ernst Wolvetang, [2]Wilson TJ, [3]Sanij E, [4]Busciglio J, [5]Hatzistavrou T, [6]Seth A, [7]Hertzog PJ, [8]Kola I [Full author list]Human Molecular Genetics [curation]DOI: 10.1093/HMG/DDG015
PubMed: 12554679
Down syndrome [curation]; overexpression [curation]2003-02-01
Ets-2 is induced by oxidative stress and sensitizes cells to H(2)O(2)-induced apoptosis: implications for Down's syndrome[1]Sanij E, [2]Hatzistavrou T, [3]Paul J Hertzog, [4]Kola I, [5]Ernst Wolvetang [Full author list]Biochemical and Biophysical Research Communications [curation]DOI: 10.1006/BBRC.2001.5680
PubMed: 11573964
apoptotic process [curation]2001-10-01
Didemnin B induces cell death by apoptosis: the fastest induction of apoptosis ever described[1]Grubb DR, [2]Ernst Wolvetang, [3]Lawen A [Full author list]Biochemical and Biophysical Research Communications [curation]DOI: 10.1006/BBRC.1995.2580
PubMed: 7488040
apoptotic process [curation]1995-10-01
Mitochondrial respiratory chain inhibitors induce apoptosis.[1]Ernst Wolvetang, [2]Johnson KL, [3]Krauer K, [4]Stephen J. Ralph, [5]Linnane AW [Full author list]FEBS Letters [curation]DOI: 10.1016/0014-5793(94)80380-3
PubMed: 8313978
apoptotic process [curation]1994-02-01
The universality of bioenergetic disease: the role of mitochondrial mutation and the putative inter-relationship between mitochondria and plasma membrane NADH oxidoreductase[1]A Lawen, [2]Ryan Dennis Martinus, [3]G L McMullen, [4]P Nagley, [5]F Vaillant, [6]Ernst Wolvetang, [7]A W Linnane [Full author list]Molecular Aspects of Medicine [curation]DOI: 10.1016/0098-2997(94)90009-4
PubMed: 7752823
1994-01-01
Latency of peroxisomal palmitoyl-CoA beta-oxidation in digitonin permeabilized fibroblasts: the effect of ATP on peroxisomal permeability[1]Ernst Wolvetang, [2]J. M. Tager, [3]R. J. Wanders [Full author list]Progress in Clinical and Biological Research [curation]PubMed: 14383671992-01-01
Factors influencing the latency of the peroxisomal enzyme dihydroxyacetone-phosphate acyltransferase (DHAP-AT) in permeabilized human skin fibroblasts[1]Ernst Wolvetang, [2]J M Tager, [3]R J Wanders [Full author list]Biochimica et Biophysica Acta [curation]DOI: 10.1016/0167-4889(91)90074-8
PubMed: 1657193
1991-10-01
Latency of the peroxisomal enzyme acyl-CoA:dihydroxyacetonephosphate acyltransferase in digitonin-permeabilized fibroblasts: the effect of ATP and ATPase inhibitors[1]Ernst Wolvetang, [2]Tager JM, [3]Wanders RJ [Full author list]Biochemical and Biophysical Research Communications [curation]DOI: 10.1016/0006-291X(90)90511-K
PubMed: 2143898
1990-08-01
Properties of the ATPase activity associated with peroxisome-enriched fractions from rat liver: comparison with mitochondrial F1F0-ATPase[1]Ernst Wolvetang, [2]R J Wanders, [3]R B Schutgens, [4]J A Berden, [5]J M Tager [Full author list]Biochimica et Biophysica Acta [curation]DOI: 10.1016/0304-4165(90)90166-T
PubMed: 2166576
1990-07-01
3-Methyladenine, an inhibitor of autophagy, has multiple effects on metabolism[1]L H Caro, [2]P J Plomp, [3]Ernst Wolvetang, [4]C Kerkhof, [5]A J Meijer [Full author list]FEBS Journal [curation]DOI: 10.1111/J.1432-1033.1988.TB14200.X
PubMed: 3402459
autophagy [curation]1988-08-01
Energy dependence of autophagic protein degradation in isolated rat hepatocytes[1]P J Plomp, [2]Ernst Wolvetang, [3]A K Groen, [4]A J Meijer, [5]P B Gordon, [6]Per Ottar Seglen [Full author list]FEBS Journal [curation]DOI: 10.1111/J.1432-1033.1987.TB11011.X
PubMed: 3830181
autophagy [curation]1987-04-01
Correct Q number of author item for selected works.
NO replacement author: revert to author name strings

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