Recent Advances in DNA‐Templated Protein Patterning

Q **a, M Zhou, K Jiao, B Li, L Guo, L Wang… - Small …, 2025 - Wiley Online Library
In recent decades, the advancement of DNA nanotechnology enables precise nanoscale
organization of diverse functional materials with DNA templates. Particularly, a variety of …

A Versatile Microfluidic Platform for Extravasation Studies Based on DNA Origami—Cell Interactions

M García‐Chamé, P Wadhwani, J Pfeifer… - Angewandte …, 2024 - Wiley Online Library
The adhesion of circulating tumor cells (CTCs) to the endothelial lumen and their
extravasation to surrounding tissues are crucial in the seeding of metastases and remain the …

Flexible DNA Nanoclaws Offer Multivalent and Powerful Spatial Pattern-Recognition for Tumor Cells

K Chen, M Mao, L Huo, G Wang, Z Pu… - ACS Applied Materials …, 2024 - ACS Publications
Multivalent receptor–ligand interactions (RLIs) exhibit excellent affinity for binding when
targeting cell membrane receptors with low expression. However, existing strategies only …

Fluidic Interface for Surface-based DNA Origami Studies

M García-Chamé, I Mayer, L Schneider… - … Applied Materials & …, 2024 - ACS Publications
Traditionally, the use of DNA origami nanostructures (DONs) to study early cell signaling
processes has been conducted using standard laboratory equipment with DONs typically …

Sub-10 μm Soft Interlayers Integrating Patterned Multivalent Biomolecular Binding Environments

EK Nava, A Singh, LO Williams… - … Applied Materials & …, 2024 - ACS Publications
Designing surfaces that enable controlled presentation of multivalent ligand clusters (eg, for
rapid screening of biomolecular binding constants or design of artificial extracellular …

Selective placement of functionalised DNA origami via thermal scanning probe lithography patterning

T Zheng, C O'Neill, JF Marshall, T Iskratsch… - Materials …, 2024 - pubs.rsc.org
Here we present a nanopatterning strategy utilising thermal scanning probe lithography (t-
SPL) for the precise organisation of DNA origami into nanoarrays. The aim of this approach …