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Human hair follicle equivalents in vitro for transplantation and chip-based substance testing.
2011
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
TU Berlin, Institute for Biotechnology, Faculty of Process Science and Engineering, 13355 Berlin, Germany.
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R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
In vitro hair follicle growth model for drug testing.
March 2023, Scientific reports,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Skin-on-a-chip strategies for human hair follicle regeneration.
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R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
A multi-organ chip co-culture of neurospheres and liver equivalents for long-term substance testing.
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R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Optimization of hair follicle spheroids for hair-on-a-chip.
February 2024, Biomaterials science,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Chip-based liver equivalents for toxicity testing--organotypicalness versus cost-efficient high throughput.
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R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
iPSC-based approach for human hair follicle regeneration.
January 2023, Frontiers in cell and developmental biology,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Hair Follicle Transplantation for Wound Repair.
March 2021, Advances in wound care,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Human hair growth in vitro: a model for the study of hair follicle biology.
July 1994, Journal of dermatological science,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
Generation of full-thickness skin equivalents using hair follicle-derived primary human keratinocytes and fibroblasts.
April 2018, Journal of tissue engineering and regenerative medicine,
R Horland, and G Lindner, and I Wagner, and B Atac, and S Hoffmann, and M Gruchow, and F Sonntag, and U Klotzbach, and R Lauster, and U Marx
GMP-compliant culture of human hair follicle cells for encapsulation and transplantation.
January 2012, Cell transplantation,
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