Learn how advanced molecular dynamics simulations can improve RNA-based therapeutics by modeling complex folding processes.
Ribonucleic acid (RNA) is central to gene regulation, but accurately simulating its folding is a long-standing challenge in computational biology. In a recent study, Associate Professor Tadashi Ando ...
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Stress hormones may silence crucial neuronal genes through specific RNA molecules
What if the brain's response to stress could be read not in fleeting neurotransmitter bursts, but in the quieting of genes ...
An artificial intelligence model predicts how brain immune cells react to RNA and DNA nanoparticles, helping scientists design safer and more effective nucleic acid therapies faster.
In a promising advance for cancer treatment, Northwestern University scientists have re-engineered the molecular structure of ...
Data from Catalent’s preclinical studies evaluating certepetide as a SMARTag® ADC payload showed both improved tumor selective penetration and efficacy ...
By restructuring a common chemotherapy drug, scientists increased its potency by 20,000 times. In a significant step forward for cancer therapy, researchers at Northwestern University have redesigned ...
High-fidelity visualization of a fetal heart is essential for deep understanding about heart myofibers orientation and the ...
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