Results 281 to 290 of about 685,668 (343)
Comparative analysis of mitochondrial genomes of <i>Epimedium</i> L. reveals heterogeneity in structure, synteny, intercellular gene transfer, and RNA editing. [PDF]
Xu +9 more
europepmc +1 more source
Coatings of titanium‐gold are grown in nitrogen and oxygen environments via magnetron sputtering to simultaneously enhance their biotribological and antibacterial properties. The coatings are highly crystalline with superhard scratch‐resistant surfaces and wear rates 20 times lower than the bare Ti‐6Al‐4V substrate.
Cecil Cherian Lukose +11 more
wiley +1 more source
Systematic analysis of A-to-I RNA editing upon release of ADAR from the nucleolus. [PDF]
Lattuca R +3 more
europepmc +1 more source
We present a strategy to enhance magnetic hyperthermia therapy by modulating nanoparticle–cell interactions. Antibody‐functionalized magnetic nanoparticles targeting the low‐internalizing CCR9 receptor enable spatially controlled membrane anchoring, reducing aggregation and maximizing heat generation under alternating magnetic fields.
David Egea‐Benavente +5 more
wiley +1 more source
Smooth muscle expression of RNA editing enzyme ADAR1 controls activation of the RNA sensor MDA5 in atherosclerosis. [PDF]
Weldy CS +21 more
europepmc +1 more source
Decellularized Extracellular Matrix (dECM) in Tendon Regeneration: A Comprehensive Review
Decellularized Extracellular Matrix (dECM) offers a promising solution by replicating the native tendon microenvironment and promoting regeneration. This review highlights advances in the decellularization methods, as well as their integration with emerging technologies and translational progress in tendon tissue engineering.
Kumaresan Sakthiabirami +4 more
wiley +1 more source
Rapid and Cost-Effective Digital Quantification of RNA Editing and Maturation in Organelle Transcripts by Oxford Nanopore Target-Indexed-PCR (TIP) Sequencing. [PDF]
Hua Z.
europepmc +1 more source
3D printed hybrid scaffolds combining bioactive silica–calcium chemistry with elastic polymers guide human bone stem cells to form bone. The scaffolds support cell survival, organization, and invasion while releasing osteogenic ions. Together, architecture and composition drive bone‐specific gene expression, extracellular matrix organization, and ...
David R. Sory +3 more
wiley +1 more source

