25 Bilder zum Thema "microrna" bei ClipDealer

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mRNA Technology - Messenger RNA - Two Strands of mRNA on Abstract Technology Background - Development of New Therapies and Vaccines Based on mRNA Technology - Conceptual Illustration
3D rendering of an aptamer-shRNA chimera, a novel therapeutic platform leveraging the specificity of aptamers and the potency of RNA interference.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
microRNA or miRNA is a small single-stranded non-coding RNA molecule that functions in RNA silencing and post-transcriptional regulation of gene expression
3D rendering of an aptamer-shRNA chimera, a novel therapeutic platform leveraging the specificity of aptamers and the potency of RNA interference.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
New targeted therapy, breast cancer. microRNA (miR-182-3p) inhibits the telomeric protein TRF2, responsible for tumor. 3D rendering
3D rendering of an aptamer-shRNA chimera, a novel therapeutic platform leveraging the specificity of aptamers and the potency of RNA interference.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
microRNA or miRNA is a small single-stranded non-coding RNA molecule that functions in RNA silencing and post-transcriptional regulation of gene expression
microRNA or miRNA is a small single-stranded non-coding RNA molecule that functions in RNA silencing and post-transcriptional regulation of gene expression
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
Short hairpin RNA (shRNA) is a synthetic RNA molecule that can silence gene expression through RNA interference; 3d rendering
New targeted therapy, breast cancer. microRNA (miR-182-3p) inhibits the telomeric protein TRF2, responsible for tumor. 3D rendering
Short hairpin RNA (shRNA) is a synthetic RNA molecule that can silence gene expression through RNA interference; 3d rendering
Short hairpin RNA (shRNA) is a synthetic RNA molecule that can silence gene expression through RNA interference; 3d rendering
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
MicroRNAs are transcribed from DNA by RNA polymerase 3D rendering
Short hairpin RNA (shRNA) is a synthetic RNA molecule that can silence gene expression through RNA interference; 3d rendering
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
Aptamers are designed to bind to the target analyte. A fluorophore, a molecule that emits light when excited, is attached to the aptamer; 3d rendering.
New targeted therapy, breast cancer. microRNA (miR-182-3p) inhibits the telomeric protein TRF2, responsible for tumor. 3D rendering
microRNA or miRNA is a small single-stranded non-coding RNA molecule that functions in RNA silencing and post-transcriptional regulation of gene expression

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