4.7 Article

Isolation of Laurus nobilis Leaf Polyphenols: A Review on Current Techniques and Future Perspectives

Journal

FOODS
Volume 11, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/foods11020235

Keywords

Laurus nobilis L; green extraction; conventional extraction; plant extracts; polyphenols

Funding

  1. project Bioactive molecules of medical plant as natural antioxidants, microbicides and preservatives - Croatian Government [KK.01.1.1.04.0093]
  2. European Union through the European Regional Development Fund-Operational Programme Competitiveness and Cohesion [KK.01.1.1.04]

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This paper provides a systematic review of the literature on the influence of different extraction techniques on the phenolic content of L. nobilis leaf extracts. It offers valuable insights for further research and industrial utilization of this plant.
In recent years, the market demand for products enhanced with ingredients derived from natural products, such as polyphenols, is rapidly increasing. Laurus nobilis L., known as bay, sweet bay, bay laurel, Roman laurel or daphne is an evergreen Mediterranean shrub whose leaves have traditionally been used in cuisines and folk medicine due to their beneficial health effects, which can nowadays be scientifically explained by various biological activities of the leaf extracts. Many of these activities can be attributed to phenolic compounds present in L. nobilis leaves which include flavonoids, phenolic acids, tannins (proanthocyanidins) and lignans. In order to enable efficient industrial utilization of these valuable compounds, it is crucial to establish optimal extraction procedures resulting in the highest yields and quality of the extracts. This paper offers the first systematic review of current literature on the influence of conventional and advanced extraction techniques, including microwave-assisted, ultrasound-assisted, enzyme-assisted, supercritical-CO2 and mechanochemical-assisted extraction on the phenolic content of L. nobilis leaf extracts, allowing more efficient planning of further research and simplifying the steps towards industrial utilization of this plant.

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