Discover how molecular modeling and docking studies of Photorhabdus luminescens PirB fusion protein are revolutionizing our fight against superbugs through computational biology.
Discover how Multiple Overlap Extension PCR (MOE-PCR) is revolutionizing synthetic biology by enabling rapid, seamless DNA assembly of multiple fragments in a single reaction.
Discover how scientists are engineering E. coli bacteria with chaperonins to produce single-chain variable fragment antibodies more efficiently.
Explore the latest breakthroughs in cartilage repair, including mRNA-LNP technology, biomaterial scaffolds, and growth factor delivery methods for joint regeneration.
Discover how cold air plasma technology is transforming dental care by effectively combating oral bacteria and biofilm formation through innovative scientific approaches.
Discover how generative AI is revolutionizing CAR-T cell therapy, accelerating cancer treatment development from years to weeks with unprecedented precision.
Explore how scientists engineered Saccharomyces cerevisiae Met-80→Ala iso-1-cytochrome c, transforming it from an electron shuttle to a multi-functional molecular marvel.
How scientists are turning a common food microbe into a next-generation, living medicine for tissue repair and antioxidant defense.
Discover how self-assembling nanopeptides are transforming medicine through targeted drug delivery, tissue engineering, and smart biomaterials.
Exploring how scientists distinguish causal interactions from static correlations in genome-wide reverse engineering problems to decode cellular networks.