Patrik Ivert
PhD student at Department of Immunology, Genetics and Pathology; Research programme: Genomics and Neurobiology; Research group Elena Kozlova
- E-mail:
- patrik.ivert@igp.uu.se
- Visiting address:
- BMC
Husargatan 3
751 23 UPPSALA - Postal address:
- IGP / BMC
Box 815
751 08 Uppsala
Publications
Recent publications
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Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
Part of INTERNATIONAL JOURNAL OF BIOPRINTING, p. 498-515, 2025
- DOI for Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
- Download full text (pdf) of Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
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Part of Scientific Reports, 2020
- DOI for Empty mesoporous silica particles significantly delay disease progression and extend survival in a mouse model of ALS
- Download full text (pdf) of Empty mesoporous silica particles significantly delay disease progression and extend survival in a mouse model of ALS
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Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
Part of Neurotherapeutics, p. 773-783, 2017
- DOI for Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
- Download full text (pdf) of Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
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Part of Regenerative Medicine, p. 339-351, 2017
All publications
Articles in journal
-
Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
Part of INTERNATIONAL JOURNAL OF BIOPRINTING, p. 498-515, 2025
- DOI for Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
- Download full text (pdf) of Differentiation of iPSC-derived neural progenitors into motor neurons in 3D-printed bioscaff olds
-
Part of Scientific Reports, 2020
- DOI for Empty mesoporous silica particles significantly delay disease progression and extend survival in a mouse model of ALS
- Download full text (pdf) of Empty mesoporous silica particles significantly delay disease progression and extend survival in a mouse model of ALS
-
Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
Part of Neurotherapeutics, p. 773-783, 2017
- DOI for Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
- Download full text (pdf) of Boundary Cap Neural Crest Stem Cells Promote Survival of Mutant SOD1 Motor Neurons
-
Part of Regenerative Medicine, p. 339-351, 2017