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Luodan Yu
Researcher at Shanghai University
Publications - 70
Citations - 4696
Luodan Yu is an academic researcher from Shanghai University. The author has contributed to research in topics: Nanomedicine & Chemistry. The author has an hindex of 25, co-authored 62 publications receiving 2615 citations. Previous affiliations of Luodan Yu include Chinese Academy of Sciences.
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Combinatorial Photothermal 3D‐Printing Scaffold and Checkpoint Blockade Inhibits Growth/Metastasis of Breast Cancer to Bone and Accelerates Osteogenesis
TL;DR: This work not only demonstrates the promising clinical application potentials of BG@NbSiR scaffold‐based therapy against bone metastasis of breast cancer, but also provides distinctive avenues to optimize the design and construction of multifunctional tissue‐engineering biomaterials based on single‐cell genomes.
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Engineering Janus Chemoreactive Nanosonosensitizers for Bilaterally Augmented Sonodynamic and Chemodynamic Cancer Nanotherapy
Wenwen Xu,Caihong Dong,Hui Hu,Xiaoqin Qian,Ling Chang,Qvzi Jiang,Luodan Yu,Yu Chen,Jianqiao Zhou +8 more
TL;DR: A distinct TiO2Fe3O4@PEG Janus nanostructure is rationally designed and engineered for bilaterally enhanced SDT and chemodynamic therapy (CDT), which can both accelerate mass transfer and chemical reaction rates of the Fenton reaction to enhance the CDT effect.
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Targeting ferroptosis synergistically sensitizes apoptotic sonodynamic anti-tumor nanotherapy
TL;DR: A nanosonosensitizer (PpIX)-based liposomal nanosystem is constructed, which simultaneously encapsulated clinically approved iron supplement ferumoxytol, for inducing dual ferroptosis/apoptosis pathways by SDT-based oxidative ferrotherapy.
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Magnesium‐Engineered Silica Framework for pH‐Accelerated Biodegradation and DNAzyme‐Triggered Chemotherapy
TL;DR: Enhanced anticancer efficiency of chemotherapeutic drugs assisted by the biodegradable intelligent HMMSNs is achieved and can be easily excreted via feces and urine guaranteeing their further clinical translation.
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Intrinsic chemistry and design principle of ultrasound-responsive nanomedicine
TL;DR: In this paper, the intrinsic chemistry (e.g., material chemistry, surface chemistry, physiochemistry and biochemistry) and design principle of versatile nanosystems/nanoplatforms with unique ultrasound response not only for diagnostic bioimaging (single and/or multi-modality ultrasound imaging), but also for multiple ultrasound-triggered therapeutic applications.