FORMULATION ARTICLES
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The Missing Partners In microRNA Silencing: What QKI Reveals About RNA Regulatory Complexity
New research suggests microRNA silencing depends on RNA-binding protein partners like QKI, revealing a more complex regulatory network shaping gene expression.
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RNA Therapeutics: Why CMC Strategy Will Define The Next Decade
As RNA matures into an industrial platform, long-term success will depend less on discovery and more on scalable CMC systems, integration, and execution.
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Rethinking The Oligonucleotide Backbone: Why RNA Therapeutics May Need A New Molecular Design Framework
New backbone chemistries could unlock greater control over delivery, specificity, and safety, expanding the molecular design space for RNA medicines.
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RNA Platforms: What Transfers And What Breaks
A practical framework for distinguishing reusable RNA platform knowledge from biology-specific unknowns as therapeutics expand into new tissues and indications.
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The Hidden Language Of RNA: How lncRNA-Splicing Networks Are Redefining The Future Of Therapeutics
Long non-coding RNAs and splicing networks are emerging as master regulators of cellular identity, opening new therapeutic opportunities beyond proteins.
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RNA-Binding Proteins As Architects Of Post-Transcriptional Control In Disease Biology
RNA-binding proteins orchestrate splicing, stability, localization, and translation, emerging as powerful regulators and therapeutic targets in disease.
ARTICLES, APP NOTES, CASE STUDIES, & WHITE PAPERS
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Industry experts discuss current and future trends, formulating successful lipid compositions and navigating the constantly evolving genomic medicine landscape.
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Find out how you can achieve precise control and linear scalability in nanoparticle formulation with mixing technology that minimizes batch-to-batch variability and simplifies the scale-up process.
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Technical summaries and detailed protocols for purity testing, sizing, sequencing and expression analysis of oligonucleotide-based active agents as well as protein and lipid-based delivery systems.
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With adjustable components and increased stability during bloodstream circulation, LNPs are significantly advancing drug development and delivery, particularly for mRNA vaccines.
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We aim to highlight that commercially available LNP reagent mix, GenVoy-ILM, is an accessible and easy-to-use LNP formulation that allows for rapid preclinical development of RNA vaccines.
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Discover how osmolality can be applied throughout the bioprocessing workflow for RNA, and recognize the importance of this sensitive measurement, from formulation optimization to cryopreservation techniques.
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Here, we provide a detailed description of assays for sequence identification and LNP composition in mRNA-LNP products that support the development of safe and effective mRNA therapies.