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Lecture
RNA-based Approaches to Disease Treatment
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Related lectures (30)
Synthetic Biology: Therapeutic Advancement
Introduces synthetic biology for disease treatment, covering RNA therapeutics, drug discovery, and gene circuits.
Synthetic Biology: Therapeutic Advancement
Delves into cutting-edge tools for disease treatment through synthetic biology.
Untitled
RNA Switches: Design and Applications
Explores RNA switches design and applications, focusing on exploiting nature's design principles to build new biomolecular components and networks.
Protein Production: Engineering Bacteria for Protein Synthesis
Covers the engineering of bacteria for efficient protein production and purification techniques using affinity tags.
RNA Switches: Design & Applications
Explores the design and applications of RNA switches, focusing on regulatory RNA principles and engineered biomolecular components.
Programmable RNA-Targeting & Genome Editing
Explores synthetic biology, CRISPR technology, programmable RNA targeting, and genome editing, emphasizing CRISPR-based diagnostics and precision RNA technologies.
Genetic Circuits: Synthetic Biology
Explores genetic circuits design in synthetic biology, from regulatory mechanisms to plasmid construction.
RNA Metabolism: ALS Genetics
Delves into RNA metabolism in ALS genetics, focusing on key proteins, mutations, and implications in neurodegeneration.
RNA Functions: Transcription and Translation
Explores RNA functions in transcription, translation, and gene regulation, including defense mechanisms and viral infections.
RNA Switches: Design and Applications
Explores RNA switches' design and applications in synthetic biology, focusing on nature-inspired regulatory RNA principles for creating new biomolecular components and networks.
Protein Synthesis: Recombinant Expression
Explores protein synthesis, genetic code, transcription, translation, and recombinant protein expression using vectors and plasmids.
RNA-based probes: Spinach aptamers
Explores RNA-based probes, focusing on Spinach aptamers as GFP-mimics of RNAs and their applications in model systems.
CRISPR-Based Tools & Diagnostics
Explores CRISPR-based tools and diagnostics for faster, simpler, and cheaper testing methods with high specificity and sensitivity.
Programmable RNA-Targeting & Genome Editing
Explores programmable RNA-targeting tools, CRISPR history, base editing, and CoVID-19 detection strategies.
Genetic Circuits: Synthetic Biology
Covers genetic circuits in synthetic biology, including metabolic engineering, lac operon regulation, and synthetic circuit design.
Genetic Compensation Mechanisms
Delves into genetic compensation mechanisms triggered by mutant mRNA degradation and their implications on human genetics.
CRISPR-based Diagnostics
Covers the history and mechanisms of CRISPR-based tools and diagnostics, including advanced concepts like the SHERLOCK detection assay.
Chemical Biology Tools: Transcriptome Interrogation
Covers chemical biology tools for RNA study and explores the applications of GFP in biosciences.
Regulation of Transcription and Translation
Explores the regulation of transcription and translation processes, focusing on control mechanisms and alternative splicing in eukaryotes.
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