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- W4313594472 endingPage "102829" @default.
- W4313594472 startingPage "102829" @default.
- W4313594472 abstract "Nanotechnology has opened a new frontier in recent years, capable of providing new ways of controlling and structuring products with greater market value and offering significant opportunities for the development of innovative applications in food processing, preservation, and packaging. Macroalgae (MAG) are the major photoautotrophic group of living beings known as a potential source of secondary metabolites, namely phenolic compounds, pigments, and polysaccharides. Biosynthesis based on the abilities of MAG as nanobiofactories targets the use of algal secondary metabolites as reducing agents to stabilize nanoparticles (NPs). Nowadays, most of the studies are focused on the use of metal (Ag, Au) and metal-oxide (CuO, ZnO) NPs derived from algae. The eco-friendly biosynthesis of metal NPs reduces the cost and production time and increases their biocompatibility, due to the presence of bioactive compounds in MAG, making them suitable for a wide variety of applications. These compounds have been attributed to the antimicrobial and antioxidant properties responsible for their application through innovative technologies such as nanoencapsulation, nanocomposites, or biosensors in the food industry. Nevertheless, toxicity is a key factor that should be considered, so the applicable regulation needs to guarantee the safe use of metal NPs. Consequently, the aim of this review will be to compile the available information on MAG-mediated metal NPs, their biosynthesis, and potential food applications." @default.
- W4313594472 created "2023-01-06" @default.
- W4313594472 creator A5002283155 @default.
- W4313594472 creator A5014289550 @default.
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- W4313594472 creator A5054063193 @default.
- W4313594472 creator A5065035567 @default.
- W4313594472 creator A5079420373 @default.
- W4313594472 date "2023-01-01" @default.
- W4313594472 modified "2023-10-10" @default.
- W4313594472 title "Macroalgae as biofactories of metal nanoparticles; biosynthesis and food applications" @default.
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