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Master advanced CRISPR HDR techniques for efficient large knock-ins in T cells and iPSCs, covering repair mechanisms, reagent selection, and optimized workflows using Aldevron Nanoplasmidsâ„¢.
Discover real-world applications of Archer FUSIONPlex assay for RNA-based NGS in lung, thyroid, salivary gland tumors, and blood cancers with University of Iowa insights.
Learn how an end-to-end workflow accelerates protein expression and purification from DNA for early discovery studies.
Discover a scalable targeted enrichment protocol for long DNA fragments, demonstrated with a custom blood group panel and highly multiplexed enrichment pool of 16 samples.
Explore mRNA applications and production challenges, focusing on BASE's strategies for optimizing workflows and increasing capabilities using synthetic templates.
Explore CRISPR gene editing technology, its applications, and IDT's Alt-R products through an overview of design tools, reagents, and a case study on CRISPR solutions.
Explore advanced techniques for identifying ultra-low frequency variants in cancer research, enhancing biomarker discovery and personalized treatment strategies.
Discover strategies for designing potent antisense oligonucleotides with minimal off-target effects, focusing on gapmer ASOs and their mechanisms for modulating gene expression.
Explore extraction-free PCR for target identification in diverse samples, including urine, saliva, and plant tissues. Learn about IDT's one-step master mix for efficient direct amplification.
Optimize CRISPR genome editing in primary T cells with improved methods for cell culture, delivery, and knock-in rates using HDR donors and enhancing reagents.
Explore the evolution and impact of whole exome sequencing at MGI, including applications, read depth, CNV detection, and gene fusion identification.
Explore whole exome sequencing's potential in rare disease research, focusing on case studies and advanced techniques for uncovering genetic causes.
Automate IDT xGenâ„¢ hybridization capture for uniform coverage and robust performance. Learn to generate reproducible targeted NGS libraries using Biomek i7 automation for efficiency and consistency.
Explore ctDNA hybridization capture for minimal residual disease research in cancer, overcoming challenges and discovering new biomarkers.
Accelerate oncology research using M2GEN's ORIEN Avatar program and IDT's xGen Exome Panel. Learn about sequencing metrics and use cases.
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