Polyphenol-Based Particles for Theranostics
- PMID: 31244948
- PMCID: PMC6567970
- DOI: 10.7150/thno.31847
Polyphenol-Based Particles for Theranostics
Abstract
Polyphenols, due to their high biocompatibility and wide occurrence in nature, have attracted increasing attention in the engineering of functional materials ranging from films, particles, to bulk hydrogels. Colloidal particles, such as nanogels, hollow capsules, mesoporous particles and core-shell structures, have been fabricated from polyphenols or their derivatives with a series of polymeric or biomolecular compounds through various covalent and non-covalent interactions. These particles can be designed with specific properties or functionalities, including multi-responsiveness, radical scavenging capabilities, and targeting abilities. Moreover, a range of cargos (e.g., imaging agents, anticancer drugs, therapeutic peptides or proteins, and nucleic acid fragments) can be incorporated into these particles. These cargo-loaded carriers have shown their advantages in the diagnosis and treatment of diseases, especially of cancer. In this review, we summarize the assembly of polyphenol-based particles, including polydopamine (PDA) particles, metal-phenolic network (MPN)-based particles, and polymer-phenol particles, and their potential biomedical applications in various diagnostic and therapeutic applications.
Keywords: diagnosis; drug delivery; metal-phenolic networks; polydopamine particles; self-assembly.
Conflict of interest statement
Competing Interests: The authors have declared that no competing interest exists.
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References
-
- Quideau S, Deffieux D, Douat-Casassus C, Pouységu L. Plant polyphenols: Chemical properties, biological activities, and synthesis. Angew Chem Int Ed Engl. 2011;50:586–621. - PubMed
-
- Haslam E, Cai Y. Plant polyphenols (vegetable tannins): Gallic acid metabolism. Nat Prod Rep. 1994;11:41–66. - PubMed
-
- Wigglesworth VB. The source of lipids and polyphenols for the insect cuticle: The role of fat-body, enocytes and enocytoids. Tissue Cell. 1988;20:919–32. - PubMed
-
- Krishnan G. Phenolic tanning and pigmentation of the cuticle in Carcinus maenas. Q J Microsc Sci. 1951;92:333–42.
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