Un nouveau type de ciseaux moléculaires pour améliorer CRISPR – Gènéthique
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Un nouveau type de ciseaux moléculaires pour améliorer CRISPR
Gènéthique Dans une étude publiée dans Nature, des scientifiques ont révélé la structure et l’action d’un nouveau type de « ciseaux moléculaires », connus sous le nom de Cpf1, un ARN guide endonucléasique, ce qui peut améliorer l’édition du génome CRISPR. |
Technology Networks |
Breakthrough Nanorod Tech Could Deliver Gene Therapy Directly to Cancer Cells
Technology Networks First, the vector was bound to the ‘enhanced green fluorescent protein’ (EGFP) gene, and then transferred into mammalian cells by the lipid-coated gold nanorods. Exposing cells to near-infrared laser for ten seconds heated up the gold nanorods, turning … |
Technology Networks |
Breakthrough Nanorod Tech Could Deliver Gene Therapy Directly to Cancer Cells
Technology Networks First, the vector was bound to the ‘enhanced green fluorescent protein’ (EGFP) gene, and then transferred into mammalian cells by the lipid-coated gold nanorods. Exposing cells to near-infrared laser for ten seconds heated up the gold nanorods, turning … |
Technology Networks |
Breakthrough Nanorod Tech Could Deliver Gene Therapy Directly to Cancer Cells
Technology Networks First, the vector was bound to the ‘enhanced green fluorescent protein’ (EGFP) gene, and then transferred into mammalian cells by the lipid-coated gold nanorods. Exposing cells to near-infrared laser for ten seconds heated up the gold nanorods, turning … |
Technology Networks |
Breakthrough Nanorod Tech Could Deliver Gene Therapy Directly to Cancer Cells
Technology Networks First, the vector was bound to the ‘enhanced green fluorescent protein’ (EGFP) gene, and then transferred into mammalian cells by the lipid-coated gold nanorods. Exposing cells to near-infrared laser for ten seconds heated up the gold nanorods, turning … |
