Aptamer-functionalized nucleic acid nanotechnology for biosensing, bioimaging and cancer therapy

X Zheng, Z Huang, Q Zhang, G Li, M Song, R Peng - Nanoscale, 2025‏ - pubs.rsc.org
Nucleic acids have enabled the fabrication of self-assemblies and dynamic operations.
Among different functional nucleic acids, aptamers can specifically bind to a wide range of …

Exploring Framework Nucleic Acids: A Perspective on Their Cellular Applications

Z Wang, X Wang, Y He, H Wu, R Mao, H Wang, L Qiu - JACS Au, 2024‏ - ACS Publications
Cells are fundamental units of life. The coordination of cellular functions and behaviors
relies on a cascade of molecular networks. Technologies that enable exploration and …

Stimulus-responsive four-stranded DNA nanoring assembly to host multiple nanosilver clusters for cooperatively enhanced fluorescence biosensing

X Jia, J He, M Li, J Ye, Y Zhang, C Yang… - Analytical …, 2024‏ - ACS Publications
Exploring the ability of four-stranded DNA nanorings (fs DNRs) to host multiple nanosilver
clusters (NAgCs) for cooperatively amplifiable fluorescence biosensing to a specific initiator …

Emerging Trends in DNA Nanotechnology-Enabled Cell Surface Engineering

F **ao, X Shen, W Tang, D Yang - JACS Au, 2025‏ - ACS Publications
Cell surface engineering is a rapidly advancing field, pivotal for understanding cellular
physiology and driving innovations in biomedical applications. In this regard, DNA …

Wafer-scale high-performance organic phototransistor arrays

Y Liu, H Li, H Lin, D Ji, W Hu - Cell Reports Physical Science, 2024‏ - cell.com
Detecting low light across different spectral bands is crucial yet challenging due to the need
to fulfill multiple strict conditions simultaneously. To tackle this issue, we introduce wafer …

Framework Nucleic Acids: Innovative Tools for Cellular Sensing and Therapeutics

Y Zhang, Y Li, B Fang, Y Du, P Peng - ChemBioChem‏ - Wiley Online Library
As emerging biomaterials, framework nucleic acids (FNAs) have recently demonstrated
great potential in the biomedical field due to their high programmability, biocompatibility …