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Prof. Dr. Xiaohong Li
Southwest Jiaotong University
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xhli@swjtu.edu.cn
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Intracellular bacteria destruction via traceable enzymes-responsive release and deferoxamine-mediated ingestion of a...
Bacteria-propelled microrockets to promote the tumor accumulation and intracellular drug uptake
3D spheroids generated on carbon nanotube-functionalized fibrous scaffolds for drug metabolism and toxicity screenin...
Fibrous strips decorated with cleavable aggregation-induced emission probes for visual detection of Hg2+
Janus micromotors for motion-capture-ratiometric fluorescence detection of circulating tumor cells
Macrophage spheroids with chronological phenotype shifting to promote therapeutic angiogenesis in critical limb isch...
Engineering HepG2 spheroids with injectable fiber fragments as predictable models for drug metabolism and tumor infi...
Janus micromotors for motion-capture-lighting of bacteria
Bacterial biofilm destruction by size/surface charge-adaptive micelles
Synergistic antitumor efficacy of hybrid micelles with mitochondrial targeting and stimuli-responsive drug release
Fluorescent fibrous mats assembled with self-propagating probes for visual sensing of hydrogen peroxide and choline
Enzyme-powered Janus nanomotors launched from intratumoral depots to address drug delivery barriers
Uniform-field electrospinning for 3D printing of fibrous configurations as strain sensors
Sequential drug release to modulate collagen synthesis and promote micelle penetration in tumors
Bacterial microbots for acid-labile release of hybrid micelles to promote the synergistic antitumor efficacy
Antibacterial micelles with vancomycin-mediated targeting and pH/lipase-triggered release of antibiotics
Acid-labile degradation of injectable fiber fragments to release bioreducible micelles for targeted cancer therapy
An implantable depot capable of in situ generation of micelles to achieve controlled and targeted tumor chemotherap...
Doxorubicin-conjugated Escherichia coli Nissle 1917 swimmers to achieve tumor targeting and responsive drug release
Tumor pH-responsive release of drug-conjugated micelles from fiber fragments for intratumoral chemotherapy.
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