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Weiwei Zeng

Researcher at Sun Yat-sen University

Publications -  10
Citations -  462

Weiwei Zeng is an academic researcher from Sun Yat-sen University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 4, co-authored 5 publications receiving 114 citations.

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Dual-response oxygen-generating MnO2 nanoparticles with polydopamine modification for combined photothermal-photodynamic therapy

TL;DR: Hollow mesoporous MnO2 nanoparticles loaded with photosensitizer chlorin e6 and coated with folic acid-functionalized polydopamine were fabricated and exhibited excellent biodegradation properties, alleviating the possible concerns about the long-term safety of photonic agents.
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SnTe@MnO2-SP Nanosheet–Based Intelligent Nanoplatform for Second Near-Infrared Light–Mediated Cancer Theranostics

TL;DR: This is the first report, as far as is known, with such an inorganic nanoagent setting fluorescence/PA/photothermal imaging and photothermal therapy in NIR II biowindow and TME‐responsive biodegradability rolled into one, which provide insight into the clinical potential for cancer theranostics.
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Smart materials for drug delivery and cancer therapy

TL;DR: In this review, significant research achievements of smart materials responsive to different triggers including their synthesis and formulation mechanism, responsive mechanism, applications, multiple functions are summarized and discussed separately.
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Heterojunction engineered bioactive chlorella for cascade promoted cancer therapy.

TL;DR: In this paper , active photosynthetic Chlorophyceae (Chlorella, Chl) functionalized with black phosphorus nanosheets (BPNSs) through polyaspartic acid (PASP) and Fe3+ mediating "Lego building method" are utilized for photocatalyzed oxygen-evolving to realize photosynthesis enhanced synergistic photodynamic/chemodynamic/immune therapy.
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Engineered gold/black phosphorus nanoplatforms with remodeling tumor microenvironment for sonoactivated catalytic tumor theranostics

TL;DR: Novel sonoactivated oxidative stress amplification nanoplatforms are constructed by coating MnO2 on Au nanoparticle-anchored black phosphorus nanosheets and decorating soybean phospholipid subsequently (Au/BP@MS), which exhibit increased ROS generation efficiency under US irradiation in tumor tissues due to Au/BP nanosensitizer-induced improvement of electron-hole separation, thus leading to notable inhibition effect on tumor growth.