Sofia Stenler
Senior faculty administrator at University Administration; Faculty Offices; Office for Science and Technology; Education support unit
- Telephone:
- +46 18 471 18 03
- Mobile phone:
- +46 73 469 74 84
- E-mail:
- sofia.stenler@uu.se
- Visiting address:
- Segerstedthuset, Dag Hammarskjölds väg 7
752 37 Uppsala - Postal address:
- Box 256
751 05 UPPSALA

Publications
Recent publications
Part of Molecular Pharmaceutics, p. 1564-1576, 2023
- DOI for Standardized Preclinical In Vitro Blood-Brain Barrier Mouse Assay Validates Endocytosis-Dependent Antibody Transcytosis Using Transferrin-Receptor-Mediated Pathways
- Download full text (pdf) of Standardized Preclinical In Vitro Blood-Brain Barrier Mouse Assay Validates Endocytosis-Dependent Antibody Transcytosis Using Transferrin-Receptor-Mediated Pathways
Part of Molecular Therapy Nucleic Acids, p. 379-397, 2022
- DOI for Non-uniform dystrophin re-expression after CRISPR-mediated exon excision in the dystrophin/utrophin double-knockout mouse model of DMD
- Download full text (pdf) of Non-uniform dystrophin re-expression after CRISPR-mediated exon excision in the dystrophin/utrophin double-knockout mouse model of DMD
2019
All publications
Articles in journal
Part of Molecular Pharmaceutics, p. 1564-1576, 2023
- DOI for Standardized Preclinical In Vitro Blood-Brain Barrier Mouse Assay Validates Endocytosis-Dependent Antibody Transcytosis Using Transferrin-Receptor-Mediated Pathways
- Download full text (pdf) of Standardized Preclinical In Vitro Blood-Brain Barrier Mouse Assay Validates Endocytosis-Dependent Antibody Transcytosis Using Transferrin-Receptor-Mediated Pathways
Part of Molecular Therapy Nucleic Acids, p. 379-397, 2022
- DOI for Non-uniform dystrophin re-expression after CRISPR-mediated exon excision in the dystrophin/utrophin double-knockout mouse model of DMD
- Download full text (pdf) of Non-uniform dystrophin re-expression after CRISPR-mediated exon excision in the dystrophin/utrophin double-knockout mouse model of DMD