Nanoemulsion applications in photodynamic therapy

Nanoemulsion, or nanoscaled-size emulsions, is a thermodynamically stable system formed by blending two immiscible liquids, blended with an emulsifying agent to produce a single phase. Nanoemulsion science has advanced rapidly in recent years, and it has opened up new opportunities in a variety of f...

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Veröffentlicht in:Journal of controlled release 2022-11, Vol.351, p.164-173
Hauptverfasser: Moghassemi, Saeid, Dadashzadeh, Arezoo, Azevedo, Ricardo Bentes, Amorim, Christiani A.
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Sprache:eng
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Zusammenfassung:Nanoemulsion, or nanoscaled-size emulsions, is a thermodynamically stable system formed by blending two immiscible liquids, blended with an emulsifying agent to produce a single phase. Nanoemulsion science has advanced rapidly in recent years, and it has opened up new opportunities in a variety of fields, including pharmaceuticals, biotechnology, food, and cosmetics. Nanoemulsion has been recognized as a potential drug delivery technology for various drugs, such as photosensitizing agents (PS). In photodynamic therapy (PDT), PSs produce cytotoxic reactive oxygen species under specific light irradiation, which oxidize the surrounding tissues. Over the past decades, the idea of PS-loaded nanoemulsions has received researchers' attention due to their ability to overcome several limitations of common PSs, such as limited permeability, non-specific phototoxicity, hydrophobicity, low bioavailability, and self-aggregation tendency. This review aims to provide fundamental knowledge of nanoemulsion formulations and the principles of PDT. It also discusses nanoemulsion-based PDT strategies and examines nanoemulsion advantages for PDT, highlighting future possibilities for nanoemulsion use. [Display omitted] •Nanoemulsion increases PSs' bioavailability by minimizing the self-aggregation.•Nanoemulsion can change PSs' solubility and prolong the blood circulation time.•They can increase the PSs' permeability and their physicochemical stability.•Using nanoemulsion, it is possible to combine PDT with other treatments/imaging.
ISSN:0168-3659
1873-4995
DOI:10.1016/j.jconrel.2022.09.035