RNA Biology
Explore RNA structure, regulation, processing, stability and cellular function across emerging research areas.
Navigate the scientific programme, research themes, expert sessions, networking opportunities and practical information designed to help you make the most of the Next-Generation RNA Technologies experience.
The programme brings together fundamental RNA biology, therapeutic development, molecular engineering, delivery technologies and translational research within a connected scientific environment.
Explore RNA structure, regulation, processing, stability and cellular function across emerging research areas.
Follow advances in mRNA, siRNA, antisense oligonucleotides, circular RNA and other therapeutic RNA modalities.
Discover strategies designed to improve RNA stability, biodistribution, cellular uptake and therapeutic performance.
Examine the scientific and technological challenges involved in moving RNA discoveries toward clinical and industrial applications.
Select a programme day to explore the scientific themes and session architecture.
Opening perspectives on the evolution of RNA science and the technologies shaping the next generation of research.
RNA processing, modification, stability, localization and regulatory mechanisms.
Molecular design strategies for improving RNA performance, specificity and functional control.
An opportunity for researchers, technology developers and industry professionals to exchange perspectives.
mRNA, siRNA, antisense technologies, circular RNA and emerging therapeutic platforms.
Delivery platforms, formulation strategies, tissue targeting and intracellular transport.
Key scientific considerations involved in advancing RNA-based candidates through development.
Emerging technologies, remaining challenges and opportunities shaping the future of RNA therapeutics.
Translational pathways connecting fundamental RNA research with therapeutic development.
Novel molecular formats and technologies expanding the possibilities of RNA engineering.
A forward-looking discussion on scientific, technological and translational opportunities.
Closing reflections and perspectives from across the RNA research landscape.
Molecular design, translation control, stability, manufacturing and therapeutic applications of messenger RNA.
RNAi mechanisms, siRNA engineering, target specificity and applications in gene silencing.
Emerging approaches for programmable RNA modification and post-transcriptional control.
Nanoparticle systems, formulation technologies and strategies for targeted intracellular delivery.
Sequencing, transcriptomics, structural analysis and computational approaches for characterizing RNA systems.
Scientific and technological pathways connecting RNA discovery with therapeutic development.
Identify emerging research directions and technological advances.
Engage with scientific presentations and expert perspectives.
Build relationships across academia, biotechnology and industry.
Connect scientific knowledge with future research and development.
Use this section as your practical reference before and during the event.
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The programme focuses on emerging RNA technologies, including RNA biology, therapeutic RNA modalities, molecular engineering, delivery systems, analytics and translational research.
The scientific programme is designed for researchers, biotechnology professionals, technology developers, academics, translational scientists and other professionals working across the RNA ecosystem.
Networking opportunities can include dedicated discussion sessions, scientific exchanges and interactions between researchers, technology developers and industry participants.
Please refer to the official event programme and event communications for the most recent information regarding sessions, speakers, timings and venue details.
The future of RNA technology will be shaped by the convergence of molecular biology, engineering, computation and translational science.