Results 231 to 240 of about 421,776 (345)
3D Printing for Neural Repair: Bridging the Gap in Regenerative Medicine
This perspective article discusses how 3D bioprinting is advancing the development of neural tissue models and implants. It highlights recent progress in fabricating complex, multicellular neural constructs, examines current technical barriers, and outlines future applications in disease modeling, neurotoxicity testing, and regenerative therapies ...
Mitchell St Clair‐Glover+2 more
wiley +1 more source
Rb substantially compensates for the double loss of p130 and p107 in adult but not embryonic neural stem cell lineages. [PDF]
Swaidan R+9 more
europepmc +1 more source
Workshop W01: Regenerative Responses of Neural Stem Cells to Injury and Disease [PDF]
openalex +1 more source
3D Printing of Conducting Polymer Hydrogels for Electrostimulation‐Assisted Tissue Engineering
This review highlights nanosized inherently conducting polymers (ICPs) as promising ink constituents for 3D printing of conducting hydrogel (CH)‐based electrostimulation (ES) devices. ICP‐based ink formulation, 3D printing, and solidification strategies are discussed, along with the application of 3D‐printed ICP‐based CHs as ES platforms for regulating
Chien Minh Tran+6 more
wiley +1 more source
Photobiomodulation therapy increases neural stem cell pool in aged 3xTg-AD mice. [PDF]
Johnson KJ+4 more
europepmc +1 more source
Spatial Coordination Structure‐Driven Enzyme‐Like Selectivity in Single‐Atom Nanozymes
Sun et al. reviews recent progress in enhancing the enzyme‐like catalytic selectivity of SAzymes through the rational design of their spatial coordination structures. They emphasize the structure‐activity relationships of various attributes of these coordination structures in promoting selective catalytic behavior, the strategic design of coordination ...
Qijun Sun+6 more
wiley +1 more source
Unraveling the impact of human cerebrospinal fluid on human neural stem cell fate. [PDF]
Radoszkiewicz K+7 more
europepmc +1 more source
Nanostructured Protein Surfaces Inspired by Spider Silk
Harnessing recombinant spider silk technology, bioengineered spidroin variants enable the creation of functionalized nanostructured coatings with tunable affinity for specific targets, supporting a broad range of applications ‐ from antifouling surfaces and targeted drug delivery to advanced cell therapies and precision bio‐patterning via lithography ...
Martin Humenik, Thomas Scheibel
wiley +1 more source