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Christina Schug

Showing results (1-10 of 17) with videos related to

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Microbial Cell (Graz, Austria)|April 11, 2020
Stable and destabilized GFP reporters to monitor calcineurin activity in <i>Saccharomyces cerevisiae</i>Jutta Diessl, Arpita Nandy, Christina Schug, et al.
Microbial Cell (Graz, Austria)|November 21, 2024
Microwave-assisted preparation of yeast cells for ultrastructural analysis by electron microscopyMoritz Mayer, Christina Schug, Stefan Geimer, et al.
Science Advances|September 13, 2021
Cristae-dependent quality control of the mitochondrial genomeChristopher Jakubke, Rodaria Roussou, Andreas Maiser, et al.
Gene Therapy|January 27, 2019
Dual-targeted NIS polyplexes-a theranostic strategy toward tumors with heterogeneous receptor expressionSarah Urnauer, Kathrin A Schmohl, Mariella Tutter, et al.
Gene Therapy|July 11, 2024
Correction: Dual-targeted NIS polyplexes-a theranostic strategy toward tumors with heterogeneous receptor expressionSarah Urnauer, Kathrin A Schmohl, Mariella Tutter, et al.
Endocrine-Related Cancer|August 20, 2018
TGFB1-driven mesenchymal stem cell-mediated NIS gene transferChristina Schug, Sarah Urnauer, Carsten Jaeckel, et al.
Thyroid : Official Journal of the American Thyroid Association|October 17, 2017
Reintroducing the Sodium-Iodide Symporter to Anaplastic Thyroid CarcinomaKathrin A Schmohl, Patrick Dolp, Christina Schug, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|May 10, 2016
Sequence-defined cMET/HGFR-targeted Polymers as Gene Delivery Vehicles for the Theranostic Sodium Iodide Symporter (NIS) GeneSarah Urnauer, Stephan Morys, Ana Krhac Levacic, et al.
Human Gene Therapy|May 5, 2018
External Beam Radiation Therapy Enhances Mesenchymal Stem Cell-Mediated Sodium-Iodide Symporter Gene DeliveryChristina Schug, Wolfgang Sievert, Sarah Urnauer, et al.
Oncotarget|December 2, 2017
EGFR-targeted nonviral NIS gene transfer for bioimaging and therapy of disseminated colon cancer metastasesSarah Urnauer, Andrea M Müller, Christina Schug, et al.
Pageof 2

Showing results (1-10 of 17) with videos related to

Sort By:
Pageof 2
Microbial Cell (Graz, Austria)|April 11, 2020
Stable and destabilized GFP reporters to monitor calcineurin activity in <i>Saccharomyces cerevisiae</i>Jutta Diessl, Arpita Nandy, Christina Schug, et al.
Microbial Cell (Graz, Austria)|November 21, 2024
Microwave-assisted preparation of yeast cells for ultrastructural analysis by electron microscopyMoritz Mayer, Christina Schug, Stefan Geimer, et al.
Science Advances|September 13, 2021
Cristae-dependent quality control of the mitochondrial genomeChristopher Jakubke, Rodaria Roussou, Andreas Maiser, et al.
Gene Therapy|January 27, 2019
Dual-targeted NIS polyplexes-a theranostic strategy toward tumors with heterogeneous receptor expressionSarah Urnauer, Kathrin A Schmohl, Mariella Tutter, et al.
Gene Therapy|July 11, 2024
Correction: Dual-targeted NIS polyplexes-a theranostic strategy toward tumors with heterogeneous receptor expressionSarah Urnauer, Kathrin A Schmohl, Mariella Tutter, et al.
Endocrine-Related Cancer|August 20, 2018
TGFB1-driven mesenchymal stem cell-mediated NIS gene transferChristina Schug, Sarah Urnauer, Carsten Jaeckel, et al.
Thyroid : Official Journal of the American Thyroid Association|October 17, 2017
Reintroducing the Sodium-Iodide Symporter to Anaplastic Thyroid CarcinomaKathrin A Schmohl, Patrick Dolp, Christina Schug, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|May 10, 2016
Sequence-defined cMET/HGFR-targeted Polymers as Gene Delivery Vehicles for the Theranostic Sodium Iodide Symporter (NIS) GeneSarah Urnauer, Stephan Morys, Ana Krhac Levacic, et al.
Human Gene Therapy|May 5, 2018
External Beam Radiation Therapy Enhances Mesenchymal Stem Cell-Mediated Sodium-Iodide Symporter Gene DeliveryChristina Schug, Wolfgang Sievert, Sarah Urnauer, et al.
Oncotarget|December 2, 2017
EGFR-targeted nonviral NIS gene transfer for bioimaging and therapy of disseminated colon cancer metastasesSarah Urnauer, Andrea M Müller, Christina Schug, et al.
Pageof 2