Results 101 to 110 of about 6,590 (201)
Light‐Imprinted Chirality in Nanomaterials: From Principles to Applications
Light‐induced chirality represents a transformative paradigm for fabricating chiral nanostructures. This review provides a comprehensive framework encompassing light‐based strategies for imprinting and tuning chirality in nanomaterials, which guides researchers in harnessing light to create next‐generation functional materials.
Xinru Jin +3 more
wiley +1 more source
Engineering Antibodies into Targeted Chimeras: From Recognition Modules to Programmable Degraders
Antibody can be engineered into diverse lysosome‐targeting chimeras that convert target recognition into active degradation. By coupling antibody binding with recruited receptors, encoded domains, conjugated ligands, or nanoparticle scaffolds, these antibody‐associated targeted chimeras (AbTACs) platforms direct extracellular and membrane proteins ...
Kaige Chen, Quanyin Hu
wiley +1 more source
Bacterial Expression of Gene‐Encoding DNA Origami Structures
Previous studies have shown that DNA origamis assembled from gene‐encoding scaffolds can be taken up by mammalian cells and ultimately lead to the expression of the encoded genes.
Verena Dobretzberger +7 more
doaj +1 more source
Multivalent protein ligands interactions are systematically investigated using programable DNA origami compartments as scaffolds. In this way, it is possible to control binding valency, flexibility, and spatial arrangement. Fluorescent labeling of the protein surface further improves binding specificity by minimizing nonspecific electrostatic ...
Sabrina Gambietz +6 more
wiley +1 more source
Precise design and control of molecular self‐assembly as living creatures are exciting ideas in the field of nanotechnology. Characterized with predesigned geometries and accurate spatial addressability, programmable DNA origami nanostructures have been ...
Yushuai Wu +5 more
doaj +1 more source
Artificial Catch Bonds: From Molecular Design to Network Mechanics
Catch bonds strengthen rather than weaken under force. This review follows the discovery and development of our understanding of this counterintuitive phenomenon, from the molecular mechanisms that produce it to the design rules for engineering it in DNA, proteins, and polymers, and on to the collective network mechanics enabling materials that stiffen
Hengfeng Jiang +2 more
wiley +1 more source
DNA origami nanostructures functionalized with lipophilic anchors of distinct hydrophobicity reveal synergistic effects on membrane binding and phase‐specific localization. Weak anchors, although insufficient for binding alone, enhance membrane association and govern selective phase partitioning when combined with strong anchors, establishing multi ...
Subhasini Singh, Henri G. Franquelim
wiley +1 more source
Recent Advances in Food Allergens and Emerging Biosensing Technologies
ABSTRACT Food allergies have become a worldwide public health issue, highlighting the critical need for rapid, sensitive, and field‐deployable detection strategies. While traditional detection methods offer high accuracy, their high cost, operational complexity, and lengthy analysis time limit their applicability for rapid screening purposes.
Maojie Hu +6 more
wiley +1 more source
Hierarchical Assembly of Multilayer Core-Shell DNA Origami Crystals. [PDF]
Yu Y +6 more
europepmc +1 more source

