AI Article Synopsis

  • There's increased interest in using agri-food waste in a circular economy, specifically focusing on cold-pressed hempseed oil (HSO) and hempseed meal (HSM).
  • The study found that HSOs from two industrial hemp varieties are rich in phenols, flavonoids, tocopherols, and have a favorable fatty acid ratio, with USO 31 showing the highest antioxidant levels.
  • HSMs maintain some phytochemicals and are also high in protein, fiber, and amino acids while having low anti-nutritional factors, making them good candidates for nutraceutical applications.

Article Abstract

Recently, there has been a growing interest in the recovery of agri-food waste within the circular economy perspective. In this study, the nutritional, phytochemical, and biological features of the cold-pressed hempseed oil (HSO) and hempseed meal (HSM) of two industrial hemp varieties (USO 31 and Futura 75, THC ≤ 0.2%) were evaluated. The HSOs showed a high total phenols and flavonoid content, which were confirmed by LC-DAD-ESI-MS analysis, with rutin as the most abundant compound (56.93-77.89 µg/100 FW). They also proved to be a rich source of tocopherols (81.69-101.45 mg/100 g FW) and of a well-balanced ω-6 to ω-3 fatty acid ratio (3:1) with USO 31, which showed the best phytochemical profile and consequently the best antioxidant activity (about two times higher than Futura 75). The HSMs still retained part of the phytochemicals identified in the HSOs (polyphenols, tocopherols, and the preserved ω-6/ω-3 fatty acids ratio) and a modest antioxidant activity. Furthermore, they showed a very interesting nutritional profile, which was very rich in proteins (29.88-31.44 g/100 g FW), crude fibers (18.39-19.67 g/100 g), and essential and non-essential amino acids. Finally, only a restrained amount of anti-nutritional factors (trypsin inhibitors, phytic acid, and condensed tannins) was found, suggesting a promising re-use of these byproducts in the nutraceutical field.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181874PMC
http://dx.doi.org/10.3390/molecules27113431DOI Listing

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