Mammalian DEAD‐box RNA helicase DDX5, its paralog DDX17, and their orthologs in Saccharomyces cerevisiae and Drosophila melanogaster define a subfamily of DEAD‐box proteins.
Mammalian DEAD‐box RNA helicase DDX5, its paralog DDX17, and their orthologs in Saccharomyces cerevisiae and Drosophila melanogaster define a subfamily of DEAD‐box proteins.
Understanding the interactions, permeability, and partitioning of drug delivery systems in ocular tissues can improve the drug retention time and bioavailability.
A better understanding of the mechanisms of neuronal nanoparticle transport.
Synergistic developments in advanced fluorescent imaging and labeling techniques enable direct visualization of the chromatin structure and dynamics at the nanoscale level and in live cells.
A fascinating look at the evolution of the fish jaw.
Investigating the impact of the physical environment on immune cell activation.
Step‐by‐step Expansion Microscopy protocols for performing analysis of proteins and RNAs using chemicals and hardware found in a typical biology lab.
An atypical, low‐power, atmospheric pressure plasma source for application in plasma medicine.
Primary cilia, membrane-bound organelles, are key coordinators of signaling pathways.
A team of researchers demonstrated the capability of RSOM for detailed, cross‐sectional visualization of microvascular changes in the skin in the volar and dorsal aspects of the human forearm in response to local hyperthermia.