Results 301 to 310 of about 8,934,147 (357)
Unlocking the gut: microbiome's role in energy metabolism. [PDF]
Blok NB, Bozadjieva-Kramer N.
europepmc +1 more source
Bioinspired Design of a Wet‐Adhesive Cornea Glue Based on Recombinant Human Protein Networks
Natures protein‐based high performance materials e.g. elastin, silk and muscle proteins have been mimicked by a new protein‐hybrid material based on redesigned human partial sequences only, showing high wet‐adhesiveness and elasticity for biomedical applications.
Anna Resch +17 more
wiley +1 more source
Interaction with AK2A links AIFM1 to cellular energy metabolism. [PDF]
Rothemann RA +19 more
europepmc +1 more source
Charge‐Induced Morphing Gels for Bioinspired Actuation
This study introduces a novel electroactive actuation mechanism that enables the gel material to generate substantial and reversible shape‐changing while preserving topological and isochoric (volumetric) equivalence. The resultant morphing behaviors can mimic the movements of muscle‐driven organelles in nature, including cilia‐like beating and ...
Ciqun Xu +4 more
wiley +1 more source
PKP1 promotes lung cancer by modulating energy metabolism through stabilization of PFKP. [PDF]
Ritoré-Salazar F +8 more
europepmc +1 more source
Reconfigurable Magnetic Soft Microrobot for Acoustically Triggered Targeted Bacterial Sterilization
Reconfigurable magnetic soft microrobots integrate in situ‐grown piezoelectric zinc oxide nanorods that produce reactive oxygen species upon acoustic excitation. Combining magnetically guided transport with thermally induced planar reconfiguration, the microrobots achieve targeted delivery and enhanced bacterial sterilization through efficient on ...
Quan Gao +12 more
wiley +1 more source
Carbon Monoxide and Prokaryotic Energy Metabolism. [PDF]
Borisov VB, Forte E.
europepmc +1 more source
Chemoselective Sequential Polymerization: An Approach Toward Mixed Plastic Waste Recycling
Inspired by biological protein metabolism, this study demonstrates the closed‐loop recycling of mixed synthetic polymers via ring‐closing depolymerization followed by a chemoselective sequential polymerizations process. The approach recovers pure polymers from mixed feedstocks, even in multilayer formats, highlighting a promising strategy to overcome a
Gadi Slor +5 more
wiley +1 more source

