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A promising Artemisia capillaris Thunb. Leaf proteins with high nutrition, applicable function and excellent antioxidant activity.


ABSTRACT: The nutritional and functional properties of leaf proteins is a decisive factor for their use in food. This work was aimed to extract defatted Artemisia capillaris Thunb. (ACD) leaf proteins (ACLP), and assess ACLP nutritional quality, functional properties and in vitro antioxidant activity, as well characterize the structure. ACLP had a balanced amino acid profile and high bioavailability (protein digestibility corrected amino acid score (PDCAAS) 99.29 %). Solubility, foaming capacity and emulsifying ability of ACLP correlated positively with pH. Water and oil holding capacity were increased with temperature. Gel electrophoresis shown the protein molecular size was mainly ∼25 kDa, and random coil was the mainly secondary structure while β-sheet was dominant regular conformation as indicated by circular dichroism (CD). ACLP performed in vitro antioxidant activity which was better after digestion. All data implied ACLP met the WHO/FAO protein quality expectations and had application potential in food.

SUBMITTER: Wei WL 

PROVIDER: S-EPMC10838694 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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A promising <i>Artemisia capillaris</i> Thunb. Leaf proteins with high nutrition, applicable function and excellent antioxidant activity.

Wei Wen-Lu WL   Wang Wen-Jun WJ   Chen Hui H   Lin Su-Yun SY   Luo Qiu-Shui QS   Li Jian-Ming JM   Yan Jin J   Chen Ling-Li LL  

Food chemistry: X 20240121


The nutritional and functional properties of leaf proteins is a decisive factor for their use in food. This work was aimed to extract defatted <i>Artemisia capillaris</i> Thunb. (ACD) leaf proteins (ACLP), and assess ACLP nutritional quality, functional properties and <i>in vitro</i> antioxidant activity, as well characterize the structure. ACLP had a balanced amino acid profile and high bioavailability (protein digestibility corrected amino acid score (PDCAAS) 99.29 %). Solubility, foaming capa  ...[more]

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