supported financially by the National Natural Science Foundation of China(Nos.T2322005 and 32101156);Youth Innovation Promotion Association CAS.
Efficient delivery of therapeutics to immune cells remains a formidable challenge for cancer immunotherapy.In this work,we demonstrate that an aptamer-driven DNA nanodevice,constructed through linkage of a synthetic i...
Obstruction of blood vessels(thrombosis)due to blood clots is one of the main causes of death worldwide and is associated with many cardiovascular diseases,such as myocardial infarction,ischemic stroke,and pulmonary e...
supported by the National Key Research and Development Program of China(Nos.2021YFA0910100,2020YFA0907500);the National Natural Science Foundation of China(Nos.22034002,92253304).
The cell membrane is a critical barrier for cellular homeostasis,integral to signaling and intercellular communication,and vital for understanding cellular functions and disease mechanisms.Investigating its microenvir...
supported by the Natural Science Foundation of China(grant nos.21877030,21735002,and 21778016).
Framework nucleic acids(FNAs)have emerged as intelligent sensing systems for the detection of tumor-related biomarkers in living cells.However,orthogonally controlled manipulation of FNAs-based nanodevices for on-site...
financially supported by the Beijing Natural Science Foundation(JQ20005).
Sensitive and specific imaging of tumor-associated biomarkers offers an effective way for cancer diagnosis.However,most of the reported imaging probes are limited to the targeting of a single biomarker,which may impai...
supported by the National Natural Science Foundation of China(21822401,21805060,21771044);the Young Thousand Talented Program。
Rational design of activatable photosensitizers for controlled generation of singlet oxygen remains a challenge for precise photodynamic therapy(PDT).Herein,we present an aptamer-based nanodevice for adenosine 5′-tri...