supported by the Natural Science Foundation of Henan(232300421021 and 242300421121);the National Natural Science Foundation of China(22374136,22274143);Henan Fundamental Research Leading Talent,and the National Key Research and Development Program(2023YFF0714402 and 2023YFF0714400).
Invasion and metastasis dominate tumor progression,causing a substantial proportion of cancer-related deaths.However,the efficacy of current antimetastatic treatments is hampered by the dearth of targeted therapeutics...
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...
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...
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...
To realize effective cancer immunotherapy,Ding et al.constructed a structurally well-defined DNA-based nanodevice to quantitatively assemble cancer cell-specific antigen and multiple adjuvants as a cancer vaccine.This...