Results 291 to 300 of about 2,451,414 (353)
Reification and cognitive science.
openaire +2 more sources
This study introduces glutathione‐stabilized gold nanoparticles for targeted lithium delivery (LiG‐AuNPs), enabling the controlled modulation of Glycogen Synthase Kinase‐3 (GSK‐3β). These non‐toxic, 2‐nm particles release lithium intracellularly, effectively inhibiting GSK‐3β in the brain without significant plasma lithium alterations.
Antonio Buonerba +20 more
wiley +1 more source
With the most profound misgivings. Interview with Anthony P. Chemero [PDF]
Anthony P. Chemero +2 more
doaj
Macrophages Mediate Mesoscale Brain Mechanical Homeostasis
We investigated the role of infiltrating immune cells in sculpting the developing brain. Using Brillouin microscopy and active microrheology, we found microglia actively maintain tissue viscoelasticity. Moreover, colony stimulating factor one receptor (CSF1R)‐driven stromal remodeling alters brain mechanics in vivo. These findings link immune activity,
Woong Young So +11 more
wiley +1 more source
Helper and ionizable lipids play a crucial role in determining ApoE binding and subsequent liver tropism and LDLR‐mediated uptake. Ionizable lipids primarily govern the LDLR‐independent uptake pathway. This complementary interplay between lipid components ultimately governs LNP delivery performance and therapeutic efficacy in the liver.
Ashish Sarode +16 more
wiley +1 more source
Aqueously Upcycled Lignin with Emergent Tribonegativity for Skin‐Integrated Triboelectronics
Aqueously upcycled lignin is transformed into a printable ink that self‐assembles into a nanotextured surface during printing with the highest reported biopolymer‐based tribonegativity. The resulting skin‐integrated triboelectric sensor enables high‐fidelity cardiovascular monitoring and objective mental workload classification, demonstrating a ...
Robert Ccorahua‐Santo +3 more
wiley +1 more source
E‐Textiles in Biomedicine: Real Time Sensing, Energy Storage, and Therapeutic Applications
E‐textiles merge electronics with fabrics to create intelligent, wearable systems for health, sports, and fashion. By embedding sensors, actuators, and conductive components, these textiles provide real‐time physiological monitoring. Complemented by flexible power sources including embedded batteries and energy‐harvesting technologies, e‐textiles ...
Shiva Sharma +4 more
wiley +1 more source

