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Personalized Medicine: Gene Therapy and CRISPR
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Related lectures (32)
Immune Cell Engineering: Targeting Checkpoint Inhibitors
Explores immune cell engineering for cancer therapy, emphasizing checkpoint inhibitor targeting through innovative delivery methods.
Gene Editing and DNA Origami: Innovations in Biotechnology
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Discusses recombinant DNA technology, CRISPR/Cas9 gene editing, and DNA origami applications in biotechnology.
Programmable RNA-Targeting & Genome Editing
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Explores synthetic biology, CRISPR technology, programmable RNA targeting, and genome editing, emphasizing CRISPR-based diagnostics and precision RNA technologies.
Genome Editing: CRISPR Babies
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Explores the creation of gene-edited babies using CRISPR technology in China, highlighting the ethical and scientific implications.
Genome Editing: CRISPR-Cas Applications
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Explores the applications of CRISPR-Cas in genome editing, focusing on engineering bacterial genomes, curing genetic diseases, guide RNA simplicity, Cas9 specificity, DNA damage mechanisms, and base editing.
Synthetic Biology: Therapeutic Advancement
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Delves into cutting-edge tools for disease treatment through synthetic biology.
Synthetic Biology: Therapeutic Advancement
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Introduces synthetic biology for disease treatment, covering RNA therapeutics, drug discovery, and gene circuits.
RNA-based Approaches to Disease Treatment
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Explores RNA-based disease treatment, synthetic biology impact on therapeutics, and programmable RNA-targeting tools.
Synthetic Biology: Engineering Living Systems
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Explores synthetic biology, emphasizing protein engineering, gene circuits, and cellular design for diverse applications.
Programmable RNA-Targeting & Genome Editing
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Explores programmable RNA-targeting tools, CRISPR history, base editing, and CoVID-19 detection strategies.
DNA: PCR and Sequencing Techniques
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Explores DNA engineering through PCR, Sanger sequencing, the Human Genome Project, recombinant DNA, bacterial DNA manipulation, and CRISPR/Cas9.
Metabolic Engineering: Tools and Concepts
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Explores metabolic engineering tools, synthetic biology objectives, and metabolic pathway analysis for understanding cell physiology.
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