Neural crest cell recruitment and reprogramming as central drivers of embryonic limb regeneration. [PDF]
Laplace-Builhé B +11 more
europepmc +1 more source
A modular biosynthetic PVA–gelatin hydrogel crosslinked via visible‐light thiol‐ene chemistry is engineered as a coating for neural electrodes. Optimizing matrix composition and mechanical properties enables the hydrogel to support astrocytic populations that guide neural differentiation and functional maturation.
Martina Genta +4 more
wiley +1 more source
Experimental Optimization of a Plasmonic Surface Biofunctionalization, toward the Bimodal Biosensing and Kinetic Characterization of sPD1. [PDF]
Khalid-Salako F, Kurt H, Yüce M.
europepmc +1 more source
Regenerative activity of stomach epithelial cells at small-intestinal obstruction
В. Е. Милюков +1 more
openalex +2 more sources
Real‐Time, Label‐Free Monitoring of Cell Behavior on a Bioelectronic Scaffold
A bioelectronic nanofibrous scaffold is introduced that supports cell growth while enabling real‐time, label‐free monitoring of cellular behavior through impedance measurements. The system correlates electrical signals with cell viability and surface coverage, offering an integrated platform for studying dynamic biological processes and advancing next ...
Dana Cohen‐Gerassi +10 more
wiley +1 more source
Overcoming Recalcitrance: A Review of Regeneration Methods and Challenges in Roses. [PDF]
Nelson A +5 more
europepmc +1 more source
Cold Quad‐Modal Nanocomplex for Precise and Quantitative In Vivo Stem Cell Tracking
Multimodal albumin–bismuth sulfide–superparamagnetic iron oxide (ABS) nanocomplexes are developed for stem cell tracking across four different imaging modalities: MRI, MPI, MSOT, and CT. Combining its flexibility with high sensitivity, this quad‐modal imaging agent enables a robust quantification of ABS‐labeled stem cells in vivo.
Ali Shakeri‐Zadeh +4 more
wiley +1 more source
Identification of a cytosol-to-nucleus feedback loop that regulates neuronal microtubule nucleation. [PDF]
Kumar N +7 more
europepmc +1 more source
An Ionic Gelation Powder for Ultrafast Hemostasis and Accelerated Wound Healing
An ultrafast ionic gelation‐activated hemostatic powder (AGCL) forms a hydrogel within ≈1 s upon contact with blood‐derived calcium ions. The AGCL powder enables rapid hemorrhage control, strong tissue adhesion, and enhanced healing. The powder's pre‐crosslinked polymer network ensures high blood uptake and stability, offering effective treatment for ...
Youngju Son +12 more
wiley +1 more source

