22 results on '"Goldsmith, Taylor"'
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2. An adapted protocol to derive microglia from stem cells and its application in the study of CSF1R-related disorders
3. CelltypeR: A flow cytometry pipeline to characterize single cells from brain organoids
4. Targeted Gene Editing in Porcine Germ Cells
5. The Parkinson’s disease risk gene cathepsin B promotes fibrillar alpha-synuclein clearance, lysosomal function and glucocerebrosidase activity in dopaminergic neurons
6. A reduction of primary cilia but not hedgehog signaling disrupts morphogenesis in testicular organoids
7. The Parkinson's disease risk gene cathepsin B promotes fibrillar alpha-synuclein clearance, lysosomal function and glucocerebrosidase activity in dopaminergic neurons
8. DAZL Knockout Pigs as Recipients for Spermatogonial Stem Cell Transplantation
9. Regulation of Spermatogonial Stem Cell Function
10. CelltypeR: A framework to identify and characterize cell types in human midbrain organoids using flow cytometry
11. Loss of Ubiquitin Carboxy-Terminal Hydrolase L1 Impairs Long-Term Differentiation Competence and Metabolic Regulation in Murine Spermatogonial Stem Cells
12. PNKP is required for maintaining the integrity of progenitor cell populations in adult mice
13. Targeted Gene Editing in Porcine Spermatogonia
14. PNKP is required for maintaining the integrity of progenitor cell populations in adult mice.
15. Stirred Suspension Bioreactor Culture of Porcine Induced Pluripotent Stem Cells
16. Three-dimensional testicular organoids as novel in vitro models of testicular biology and toxicology
17. Regulation of Spermatogonial Stem Cell Function
18. TRAIL GRAMS.
19. Taylor Goldsmith On Will Oldham.
20. The Parkinson's disease risk gene cathepsin B promotes fibrillar alpha-synuclein clearance, lysosomal function and glucocerebrosidase activity in dopaminergic neurons.
21. The Parkinson's disease risk gene cathepsin B promotes fibrillar alpha-synuclein clearance, lysosomal function and glucocerebrosidase activity in dopaminergic neurons.
22. Targeted Gene Editing in Porcine Germ Cells.
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