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Advanced machine learning methods generate
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Engineering other cells of the immune system
Chimeric antigen receptor engineering is now possible for immune cells other than T cells, including macrophages and invariant natural killer T cells.
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Accelerating antibody discovery with cell-free DNA synthesis
Advances in synthetic biology and automation accelerate high throughput antibody screening.
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Shining a light on neural circuitry
Scientists employ optogenetic tools to understand how the brain recovers from damage and generates sensory experiences.
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Oligonucleotide-based gene therapy
Optimizing the chemical architecture of siRNA improves its therapeutic potential for neurodegenerative disorders.
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Assembling genes using in-house oligonucleotide printing
An innovative oligonucleotide synthesis approach streamlines gene assembly, providing researchers with autonomy and efficiency.
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Expanding histopathology tools for drug discovery
Advanced histotechnology techniques enable accurate assessment of treatment outcomes, fueling pharmaceutical development.
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Advancing cancer biomarker detection
Researchers leverage novel biomarker detection techniques to transform cancer diagnosis and treatment management.
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A novel approach to healing a broken heart
Direct cardiac reprogramming relies on the principles of transdifferentiation to convert specialized cells into new cell types that help repair the heart.
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Immune dysregulation in inflammatory bowel disease
Spatial biology platforms shed light on the cellular and molecular players underlying ulcerative colitis and Crohn’s disease.
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Breakthroughs in computer aided drug design
User friendly, large-scale high performance computing platforms accelerate drug discovery with efficient computational chemistry.
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Innovating gene therapy delivery
Innovative carriers and delivery strategies may improve gene therapy efficacy and safety.
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Accelerating access to soluble, functional proteins
Discover approaches that shorten the path from DNA constructs to purified, functional proteins.
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Breaking barriers in mRNA therapeutics development
By replacing conventional plasmid systems, cell-free DNA synthesis improves speed and quality in mRNA research.
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Volume 21 • Issue 3 • September 2025
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