Imagine a material that can change its shape, generate movement and even switch between different mechanical behaviours without needing an external signal. Instead of relying on light, chemicals or human intervention, this material uses genetic instructions to control its own activity. Researchers led by Rochelle Silverman have developed an experimental material that brings this idea closer to reality. By combining DNA-based instructions with a network of microscopic biological structures and molecular motors, the team created a system that can autonomously regulate its mechanical behaviour over time. The findings introduce a new approach to designing active materials, in which genetic information does more than provide a blueprint for biological molecules. It also determines how a material moves, deforms and changes its mechanical state. How Does the Self-Morphing Material Work? The key to this new material is the combination of cell-free gene expression and a network of microtubules....