CrossRef Open Access 2023 20 sitasi

Impact of Thermal Processing on the Selected Biological Activities of Ginger Rhizome—A Review

Justyna Zagórska Lidia Czernicka-Boś Wirginia Kukula-Koch Katarzyna Iłowiecka Wojciech Koch

Abstrak

Ginger (Zingiber officinale Rosc.) is a spice, medicinal and cosmetic plant that has been known for centuries. It can be used in dried, fresh, marinated or candied form, and is also an essential ingredient in well-known curry blends. Ginger rhizomes are often freeze-dried as the first step in the preparation of the raw material. Many studies have proved that the composition and biological activity of ginger changes due to thermal processing. Therefore, the aim of the review was to summarize the scientific results on the impact of traditional and unconventional methods of the heat treatment of ginger rhizomes and their influence on the antioxidant and other selected biological activities of the plant. The review of the available scientific data is inconclusive, and it is hard to state unequivocally whether the thermal treatment of the raw material increases or decreases biological activity. Based on the presented literature review, it can be concluded that traditional cooking and microwave processing in general decrease the antioxidant activity of the ginger rhizome, whereas frying, autoclaving, blanching or traditional drying in the sun mostly lead to a significant increase in ginger activity. Interesting data were presented in the works describing the freeze-drying process during which the antioxidant potential of ginger increased.

Penulis (5)

J

Justyna Zagórska

L

Lidia Czernicka-Boś

W

Wirginia Kukula-Koch

K

Katarzyna Iłowiecka

W

Wojciech Koch

Format Sitasi

Zagórska, J., Czernicka-Boś, L., Kukula-Koch, W., Iłowiecka, K., Koch, W. (2023). Impact of Thermal Processing on the Selected Biological Activities of Ginger Rhizome—A Review. https://doi.org/10.3390/molecules28010412

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Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
Total Sitasi
20×
Sumber Database
CrossRef
DOI
10.3390/molecules28010412
Akses
Open Access ✓