Explore how chemical process conceptual design transforms scientific discoveries into sustainable industrial-scale operations, featuring a case study on green ammonia.
Discover how scientists use AI and metric learning to trace the incredible history of cellular division and specialization, reconstructing the complete cell lineage tree.
Exploring how macro- and microscale fluid flow systems influence endothelial cell biology and vascular health.
Explore the relationship between plasma amino acids and glucose metabolism, and how amino acid patterns can predict diabetes risk and inform personalized treatment approaches.
Explore how scientists visualize cytosolic free calcium to decode the hidden communication network within plant and fungal cells.
Discover how plants communicate through the Wood Wide Web, a hidden fungal network that enables trees to talk, trade, and support each other underground.
Scientists discover new potential for drought-resistant crops by building molecules from scratch using de novo aromatic C–H amination.
Discover how diverse protein aggregates beyond amyloid and tau are transforming our understanding of Alzheimer's disease and mild cognitive impairment.
Discover how methylselenocysteine enhances SN-38 cancer therapy through Chk2 phosphorylation and Cdc6 down-regulation in this detailed scientific exploration.
Explore the fascinating world of immune-response gene-associated antigens (Ia/DR) and their crucial role in autoimmune diseases, cancer immunotherapy, and infectious disease response.