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Laralynne Przybyla

Target (United States) · US
Area of research
Molecular Biology · Cell Biology
Research interest
Research interests include Pluripotent Stem Cells Research, Cellular Mechanics and Interactions, 3D Printing in Biomedical Research, and CRISPR and Genetic Engineering.
h-index
18
citations
3,125
works
41
NIH funding
primary concept
email

Recent publications

MorPhiC Consortium: towards functional characterization of all human genes
Nature 2025cited by 12position: middledoi
Variants in tubule epithelial regulatory elements mediate most heritable differences in human kidney function
Nature Genetics 2024cited by 23position: middledoi
A new era in functional genomics screens
Nature Reviews Genetics 2021cited by 288position: firstdoi
Rescue of a lysosomal storage disorder caused by Grn loss of function with a brain penetrant progranulin biologic
Cell 2021cited by 224position: middledoi
A tension-mediated glycocalyx–integrin feedback loop promotes mesenchymal-like glioblastoma
Nature Cell Biology 2018cited by 175position: middledoi
TMIC-43. A TENSION-MEDIATED GLYCOCALYX FEEDBACK LOOP PROMOTES A MESENCHYMAL, STEM-LIKE PHENOTYPE IN GLIOBLASTOMA
Neuro-Oncology 2018cited by 0position: middledoi
Tissue mechanics regulate brain development, homeostasis and disease
Journal of Cell Science 2017cited by 311position: middledoi
Tissue Force Programs Cell Fate and Tumor Aggression
Cancer Discovery 2017cited by 230position: middledoi
Integrin-mediated traction force enhances paxillin molecular associations and adhesion dynamics that increase the invasiveness of tumor cells into a three-dimensional extracellular matrix
Molecular Biology of the Cell 2017cited by 139position: middledoi
Tissue Mechanics Orchestrate Wnt-Dependent Human Embryonic Stem Cell Differentiation
Cell stem cell 2016cited by 185position: firstdoi
Mechanical Control of Epithelial-to-Mesenchymal Transitions in Development and Cancer
Annual Review of Cell and Developmental Biology 2016cited by 122position: firstdoi
Attenuation of extrinsic signaling reveals the importance of matrix remodeling on maintenance of embryonic stem cell self-renewal
Proceedings of the National Academy of Sciences 2012cited by 89position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Valerie M. Weaver · University of California, San Francisco6 papers (2016–2018)J. Matthew Barnes · AbbVie (United States)4 papers (2017–2018)Russell Bainer · Maze (United States)2 papers (2018–2018)FuiBoon Kai · University of California, San Francisco2 papers (2017–2018)Do‐Hyun Nam · Bio-Medical Science (South Korea)2 papers (2018–2018)Joanna J. Phillips · UCSF Helen Diller Family Comprehensive Cancer Center2 papers (2018–2018)Elliot C. Woods · Broad Institute2 papers (2018–2018)K. Jason · Korea University2 papers (2018–2018)Shelly Kaushik · University of San Francisco2 papers (2018–2018)Jonathon N. Lakins · University of California, San Francisco2 papers (2018–2018)Carolyn R. Bertozzi · Stanford University2 papers (2018–2018)Xin Ye · Brown Foundation1 papers (2017–2017) · 1 papers (2018–2018)Juan Du · Ningxia Medical University1 papers (2024–2024)K. Mäder · University of California, San Francisco1 papers (2024–2024)Audrey Y. Chu · Institut thématique Génétique, génomique et bioinformatique1 papers (2024–2024)Kan Lu · Guangxi University1 papers (2018–2018)Jan Lammerding · Cornell University1 papers (2017–2017)Alexander R. Gupta · University of California, San Francisco1 papers (2024–2024) · 1 papers (2018–2018)