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Journal of Cellular and Molecular Medicine
|
May 6, 2009
Wnt signalling in mouse mesenchymal stem cells: impact on proliferation, invasion and MMP expression
Marisa Karow, Tanja Popp, Virginia Egea, et al.
Biological Chemistry
|
August 26, 2011
Reporter gene HEK 293 cells and WNT/Frizzled fusion proteins as tools to study WNT signaling pathways
Larisa Ring, Iris Peröbner, Marisa Karow, et al.
Stem Cell Reviews
|
September 18, 2007
The Wnt signal transduction pathway in stem cells and cancer cells: influence on cellular invasion
Peter Neth, Christian Ries, Marisa Karow, et al.
Life Science Alliance
|
January 18, 2024
Absence of the RING domain in <i>MID1</i> results in patterning defects in the developing human brain
Sarah Frank, Elisa Gabassi, Stephan Käseberg, et al.
Science Advances
|
October 25, 2024
Reprogramming astroglia into neurons with hallmarks of fast-spiking parvalbumin-positive interneurons by phospho-site-deficient Ascl1
Nicolás Marichal, Sophie Péron, Ana Beltrán Arranz, et al.
Plos One
|
May 1, 2014
Recombinase-mediated reprogramming and dystrophin gene addition in mdx mouse induced pluripotent stem cells
Chunli Zhao, Alfonso P Farruggio, Christopher R R Bjornson, et al.
Cellular Reprogramming
|
June 27, 2023
Human Induced Pluripotent Stem Cell-Derived Pericytes as Scalable and Editable Source to Study Direct Lineage Reprogramming Into Induced Neurons
Radhika Menon, Linda Petrucci, Benjamin Lohrer, et al.
EMBO Reports
|
February 17, 2026
Mechanical impact on neural stem cell lineage decisions in human brain organoids
Hanna Lampersperger, Michael Tranchina, Bastian Meth, et al.
Biological Chemistry
|
July 26, 2011
The effects of a plant proteinase inhibitor from Enterolobium contortisiliquum on human tumor cell lines
Adriana Miti Nakahata, Barbara Mayer, Christian Ries, et al.
Stem Cells (Dayton, Ohio)
|
September 8, 2011
Site-specific recombinase strategy to create induced pluripotent stem cells efficiently with plasmid DNA
Marisa Karow, Christopher L Chavez, Alfonso P Farruggio, et al.
Page
of 3
Search research articles
Search
Showing results (11-20 of 29) with videos related to
Sort By:
Page
of 3
Journal of Cellular and Molecular Medicine
|
May 6, 2009
Wnt signalling in mouse mesenchymal stem cells: impact on proliferation, invasion and MMP expression
Marisa Karow, Tanja Popp, Virginia Egea, et al.
Biological Chemistry
|
August 26, 2011
Reporter gene HEK 293 cells and WNT/Frizzled fusion proteins as tools to study WNT signaling pathways
Larisa Ring, Iris Peröbner, Marisa Karow, et al.
Stem Cell Reviews
|
September 18, 2007
The Wnt signal transduction pathway in stem cells and cancer cells: influence on cellular invasion
Peter Neth, Christian Ries, Marisa Karow, et al.
Life Science Alliance
|
January 18, 2024
Absence of the RING domain in <i>MID1</i> results in patterning defects in the developing human brain
Sarah Frank, Elisa Gabassi, Stephan Käseberg, et al.
Science Advances
|
October 25, 2024
Reprogramming astroglia into neurons with hallmarks of fast-spiking parvalbumin-positive interneurons by phospho-site-deficient Ascl1
Nicolás Marichal, Sophie Péron, Ana Beltrán Arranz, et al.
Plos One
|
May 1, 2014
Recombinase-mediated reprogramming and dystrophin gene addition in mdx mouse induced pluripotent stem cells
Chunli Zhao, Alfonso P Farruggio, Christopher R R Bjornson, et al.
Cellular Reprogramming
|
June 27, 2023
Human Induced Pluripotent Stem Cell-Derived Pericytes as Scalable and Editable Source to Study Direct Lineage Reprogramming Into Induced Neurons
Radhika Menon, Linda Petrucci, Benjamin Lohrer, et al.
EMBO Reports
|
February 17, 2026
Mechanical impact on neural stem cell lineage decisions in human brain organoids
Hanna Lampersperger, Michael Tranchina, Bastian Meth, et al.
Biological Chemistry
|
July 26, 2011
The effects of a plant proteinase inhibitor from Enterolobium contortisiliquum on human tumor cell lines
Adriana Miti Nakahata, Barbara Mayer, Christian Ries, et al.
Stem Cells (Dayton, Ohio)
|
September 8, 2011
Site-specific recombinase strategy to create induced pluripotent stem cells efficiently with plasmid DNA
Marisa Karow, Christopher L Chavez, Alfonso P Farruggio, et al.
Page
of 3