guide rna grna expression vector55 (Addgene inc)
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Addgene inc
guide rna grna expression vector55
Guide Rna Grna Expression Vector55, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 451 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/guide+rna+grna+expression+vector55/gRNA_Cloning+Vector+(Plasmid+%2341824)/pm39210067-271-30-35
Average 96 stars, based on 451 article reviews
Guide Rna Grna Expression Vector55, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 451 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/guide+rna+grna+expression+vector55/gRNA_Cloning+Vector+(Plasmid+%2341824)/pm39210067-271-30-35
Average 96 stars, based on 451 article reviews
guide rna grna expression vector55 - by Bioz Stars,
2026-09
96/100 stars
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CRISPR:Article Title: A human-specific progenitor sub-domain extends neurogenesis and increases motor neuron production. Article Snippet: Neurogenesis lasts ~10 times longer in developing humans compared to mice, resulting in a >1,000-fold increase in the number of neurons in the CNS.. To identify molecular and cellular mechanisms contributing to this difference, we studied human and mouse motor neurogenesis using a stem cell differentiation system that recapitulates species-specific scales of development.. Comparison of human and mouse single-cell gene expression data identified human-specific progenitors characterized by coexpression of NKX2-2 and OLIG2 that give rise to spinal motor neurons. Knock-In:Article Title: A human-specific progenitor sub-domain extends neurogenesis and increases motor neuron production. Article Snippet: Neurogenesis lasts ~10 times longer in developing humans compared to mice, resulting in a >1,000-fold increase in the number of neurons in the CNS.. To identify molecular and cellular mechanisms contributing to this difference, we studied human and mouse motor neurogenesis using a stem cell differentiation system that recapitulates species-specific scales of development.. Comparison of human and mouse single-cell gene expression data identified human-specific progenitors characterized by coexpression of NKX2-2 and OLIG2 that give rise to spinal motor neurons. Transfection:Article Title: A human-specific progenitor sub-domain extends neurogenesis and increases motor neuron production. Article Snippet: Neurogenesis lasts ~10 times longer in developing humans compared to mice, resulting in a >1,000-fold increase in the number of neurons in the CNS.. To identify molecular and cellular mechanisms contributing to this difference, we studied human and mouse motor neurogenesis using a stem cell differentiation system that recapitulates species-specific scales of development.. Comparison of human and mouse single-cell gene expression data identified human-specific progenitors characterized by coexpression of NKX2-2 and OLIG2 that give rise to spinal motor neurons. Expressing:Article Title: A human-specific progenitor sub-domain extends neurogenesis and increases motor neuron production. Article Snippet: Neurogenesis lasts ~10 times longer in developing humans compared to mice, resulting in a >1,000-fold increase in the number of neurons in the CNS.. To identify molecular and cellular mechanisms contributing to this difference, we studied human and mouse motor neurogenesis using a stem cell differentiation system that recapitulates species-specific scales of development.. Comparison of human and mouse single-cell gene expression data identified human-specific progenitors characterized by coexpression of NKX2-2 and OLIG2 that give rise to spinal motor neurons. Sequencing:Article Title: A human-specific progenitor sub-domain extends neurogenesis and increases motor neuron production. Article Snippet: Neurogenesis lasts ~10 times longer in developing humans compared to mice, resulting in a >1,000-fold increase in the number of neurons in the CNS.. To identify molecular and cellular mechanisms contributing to this difference, we studied human and mouse motor neurogenesis using a stem cell differentiation system that recapitulates species-specific scales of development.. Comparison of human and mouse single-cell gene expression data identified human-specific progenitors characterized by coexpression of NKX2-2 and OLIG2 that give rise to spinal motor neurons. |