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Polyphenol-Containing Nanoparticles: Synthesis, Properties, and Therapeutic Delivery

期刊

ADVANCED MATERIALS
卷 33, 期 22, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202007356

关键词

cancer therapy; drug delivery; Fenton reaction; metal− polyphenol network; polyphenols

资金

  1. National Natural Science Foundation of China [21673037]
  2. Start-up Research Grant (SRG) of University of Macau [SRG2018-00130-FHS]
  3. Science and Technology Development Fund, Macau SAR [0109/2018/A3, 0011/2019/AKP]
  4. National University of Singapore [R-180-000-017-133, R-180-000-017-731, R-180-000-017-733]

向作者/读者索取更多资源

Polyphenols, commonly found in plants, have beneficial effects on human health and their use in nanoparticles shows promising potential for various biomedical applications. Their coordination with metal ions forms important complexes with applications in surface modification, bioimaging, drug delivery, and disease treatments. The versatility of polyphenol-containing nanoparticles in different biomedical applications has been demonstrated, with challenges for future research being discussed.
Polyphenols, the phenolic hydroxyl group-containing organic molecules, are widely found in natural plants and have shown beneficial effects on human health. Recently, polyphenol-containing nanoparticles have attracted extensive research attention due to their antioxidation property, anticancer activity, and universal adherent affinity, and thus have shown great promise in the preparation, stabilization, and modification of multifunctional nanoassemblies for bioimaging, therapeutic delivery, and other biomedical applications. Additionally, the metal-polyphenol networks, formed by the coordination interactions between polyphenols and metal ions, have been used to prepare an important class of polyphenol-containing nanoparticles for surface modification, bioimaging, drug delivery, and disease treatments. By focusing on the interactions between polyphenols and different materials (e.g., metal ions, inorganic materials, polymers, proteins, and nucleic acids), a comprehensive review on the synthesis and properties of the polyphenol-containing nanoparticles is provided. Moreover, the remarkable versatility of polyphenol-containing nanoparticles in different biomedical applications, including biodetection, multimodal bioimaging, protein and gene delivery, bone repair, antibiosis, and cancer theranostics is also demonstrated. Finally, the challenges faced by future research regarding the polyphenol-containing nanoparticles are discussed.

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