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Bioavailability and delivery of nutraceuticals using nanotechnology.

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TLDR
This concise review is mainly focused on nanoemulsions and polymer micelles-based delivery systems which have shown enhanced oral bioavailability and biological efficacies (that is, antiinflammation, anti-cancer, and so on) of different phytochemicals.
Abstract
Nanotechnology is an enable technology that has the potential to revolutionize agriculture and food systems. Driven by increasing consumer demand for healthy food products, researchers have been applying tools and knowledge in nanotechnology to address the issues relevant to food and nutrition. This concise review is mainly focused on nanoemulsions and polymer micelles-based delivery systems which have shown enhanced oral bioavailability and biological efficacies (that is, antiinflammation, anti-cancer, and so on) of different phytochemicals. Nanoemulsions are a class of extremely small droplets that appear to be transparent or translucent with a bluish coloration. They are usually in the range 50 to 200 nm but much smaller than the range (from 1 to 100 mum) for conventional emulsions. Nanoemulsion preparation, characterization, and bioavailability have been discussed. Curcumin nanoemulsions show 85% inhibition of TPA-induced mouse ear inflammation as well as the inhibition of cyclin D1 expression, while dibenzoylmethane (DBM) nanoemulsion shows about 3-fold increase in oral bioavailability compared to the conventional DBM emulsion. Biopolymer micelles show significantly improved water solubility/dispersibility and in vitro anti-cancer activity of phytochemicals. More research efforts are still needed for the understanding of the potential impacts of nanoencapsulated phytochemicals on the human body and environment to address the public concerns.

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Journal ArticleDOI

Food-grade nanoemulsions: formulation, fabrication, properties, performance, biological fate, and potential toxicity.

TL;DR: An overview of the current status of nanoemulsion formulation, fabrication, properties, applications, biological fate, and potential toxicity with emphasis on systems suitable for utilization within the food and beverage industry is provided.
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Nanoemulsions versus microemulsions: terminology, differences, and similarities

TL;DR: In this article, the differences and similarities between nanoemulsions and micro-mulsions in terms of their compositions, structure, fabrication, properties, and stability are discussed.
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Edible nanoemulsions: fabrication, properties, and functional performance

TL;DR: This tutorial review provides an overview of the current status of nanoemulsion fabrication, properties, and applications with special emphasis on systems suitable for utilization within the food industry.
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Formation of nanoemulsions stabilized by model food-grade emulsifiers using high-pressure homogenization: Factors affecting particle size

TL;DR: In this paper, the authors examined the impact of system composition and homogenization conditions on the formation of nanoemulsions using a high-pressure homogenizer (microfluidizer).
Journal ArticleDOI

Nanoencapsulation Techniques for Food Bioactive Components: A Review

TL;DR: This review focuses on the various nanoencapsulation techniques such as emulsification, coacervation, inclusion, complexation nanoprecipitation, emulsifying–solvent evaporation, and supercritical fluid for food ingredients.
References
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Journal ArticleDOI

Bioavailability of curcumin: problems and promises.

TL;DR: Enhanced bioavailability of curcumin in the near future is likely to bring this promising natural product to the forefront of therapeutic agents for treatment of human disease.
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Bioavailability and bioefficacy of polyphenols in humans. I. Review of 97 bioavailability studies

TL;DR: Gallic acid and isoflavones are the most well-absorbed polyphenols, followed by catechins, flavanones, and quercetin glucosides, but with different kinetics, and the least well- absorption polyphenol are the proanthocyanidins, the galloylated tea catech ins, andThe anthocyanins.
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Colloidosomes: Selectively Permeable Capsules Composed of Colloidal Particles

TL;DR: An approach to fabricate solid capsules with precise control of size, permeability, mechanical strength, and compatibility is presented, which are hollow, elastic shells whose permeability and elasticity can be precisely controlled.
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Microemulsion-based media as novel drug delivery systems

TL;DR: The use of microemulsions and closely related microemulsion-based systems as drug delivery vehicles is reviewed, with particular emphasis being placed on recent developments and future directions.
Journal ArticleDOI

Lipids and lipid-based formulations: optimizing the oral delivery of lipophilic drugs

TL;DR: The mechanisms by which lipids and lipidic excipients affect the oral absorption of lipophilic drugs are detailed and a perspective on the possible future applications of lipid-based delivery systems is provided.
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