Results 181 to 190 of about 42,666 (297)
Lateral flow assays are evolving into interdisciplinary, system‐level sensing platforms. Recent innovations are deconstructed through coupled phases of mass transfer, reaction, and signal transduction, revealing interdependence across porous materials, interfacial chemistry, nanolabels, readout devices, and data‐enabled analysis.
Yan Pan +6 more
wiley +1 more source
Matching TGF-β1 Activation With Stress-Responsive Charge-Reversal Hydrogel Microspheres for the Treatment of Osteoarthritis. [PDF]
Lin F +11 more
europepmc +1 more source
We develop a ligand engineering strategy to construct Ni‐diketimine‐linked COFs with precisely tuned Ni electronic states. By varying the coordinated diketone units, we achieve an optimal electronic configuration that enhances O2 adsorption and lowers the energy barrier for •O2− generation.
Guihong Wu +5 more
wiley +1 more source
Hydrogel microspheres for precision biomedicine: network engineering, microfabrication, and therapeutic applications. [PDF]
Sun Y +5 more
europepmc +1 more source
Sarcopenia has emerged as a major health challenge in the aging population. Developing a sustained‐release system for whey protein may enhance its effectiveness in mitigating sarcopenia. Herein, a novel “single‐protein particle encapsulation” (SPPE) system is developed to protect whey protein and control its release.
Yafei Zhang +11 more
wiley +1 more source
Raphia hookeri seed-inspired weakly anisotropic nanocomposites. [PDF]
Mao J, Yan J, Wang Z, Cheng Q.
europepmc +1 more source
Regenerative Functional Microspheres for Aesthetic Medicine: Mechanism, Materials, Fabrication, and Clinical Applications. [PDF]
Lang Z +9 more
europepmc +1 more source
The engineered MMS@TRP microgel enables targeted, acid‐responsive delivery of a miR‐21 inhibitor to pericytes. It effectively suppresses disc fibrosis by inhibiting TGF‐β signaling while protecting nucleus pulposus cells via sustained, antioxidant tannic acid release.
Fei Ma +12 more
wiley +1 more source
Engineering an Artificial Metalloenzyme for Efficient Photo‐Enzymatic CO2 Conversion
We built a light‐driven artificial metalloenzyme by covalently conjugating formate dehydrogenase (FDH) with a tailored rhodium complex (Rh‐L6) to overcome spatial‐separation‐limited electron transfer. This integration boosts NADH regeneration and CO2 conversion, giving 2.31‐fold higher formate yield than physical mixtures, due to a narrowed bandgap and
Mengxue Kang +6 more
wiley +1 more source

