Biocatalytic Enrichment of Dioleoylglycerol from Camellia japonica Seed Oil Through Lipase-Catalyzed Hydrolysis and Evaluation of Its Skin Hydration Properties

Camellia japonica seed oil (CJO), which is generally characterized by a high proportion of oleic acid in its fatty acid composition, represents a renewable lipid substrate for producing value-added glycerides. This study aimed to enrich dioleoylglycerol (DOG) in CJO through controlled lipase-catalyzed hydrolysis and evaluate the skin hydration properties of the resulting DOG-rich hydrolyzed CJO. Seven lipases were screened, and a lipase preparation from Thermomyces lanuginosus was selected. Key reaction variables were identified by factorial screening and subsequently optimized using a Box–Behnken design and response surface methodology. Temperature, enzyme concentration, and reaction time were identified as the major factors affecting DOG content. The quadratic model was significant (p < 0.0001; R2 = 0.9936) and predicted optimal conditions of 52.56 °C, 0.357 wt% enzyme, and 7.22 h, corresponding to 0.3006 mg DOG/mg oil. Validation at 53 °C, 0.36 wt% enzyme, and 7 h yielded 0.2976 ± 0.0040 mg DOG/mg oil. In an exploratory skin hydration assessment involving five participants, a formulation containing 20 wt% DOG-rich hydrolyzed CJO showed a 34.82% descriptive increase in hydration relative to baseline at 4 h and retained 89.29% of the immediate post-application hydration level. These findings demonstrate an effective biocatalytic strategy for producing DOG-rich CJO and support its potential as a functional lipid ingredient for topical applications.

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Journal
Catalysts
Published
2026-09-24
DOI
https://doi.org/10.3390/catal16100861
Primary Topic
Edible Oils Quality and Analysis
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article
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Biocatalytic Enrichment of Dioleoylglycerol from Camellia japonica Seed Oil Through Lipase-Catalyzed Hydrolysis and Evaluation of Its Skin Hydration Properties

Junseong Park, Seul Lee, Soonju Jo
Catalysts
Edible Oils Quality and Analysis
article

Biocatalytic Enrichment of Dioleoylglycerol from Camellia japonica Seed Oil Through Lipase-Catalyzed Hydrolysis and Evaluation of Its Skin Hydration Properties

Junseong Park, Seul Lee, Soonju Jo
article en

Abstract

Camellia japonica seed oil (CJO), which is generally characterized by a high proportion of oleic acid in its fatty acid composition, represents a renewable lipid substrate for producing value-added glycerides. This study aimed to enrich dioleoylglycerol (DOG) in CJO through controlled lipase-catalyzed hydrolysis and evaluate the skin hydration properties of the resulting DOG-rich hydrolyzed CJO. Seven lipases were screened, and a lipase preparation from Thermomyces lanuginosus was selected. Key reaction variables were identified by factorial screening and subsequently optimized using a Box–Behnken design and response surface methodology. Temperature, enzyme concentration, and reaction time were identified as the major factors affecting DOG content. The quadratic model was significant (p < 0.0001; R2 = 0.9936) and predicted optimal conditions of 52.56 °C, 0.357 wt% enzyme, and 7.22 h, corresponding to 0.3006 mg DOG/mg oil. Validation at 53 °C, 0.36 wt% enzyme, and 7 h yielded 0.2976 ± 0.0040 mg DOG/mg oil. In an exploratory skin hydration assessment involving five participants, a formulation containing 20 wt% DOG-rich hydrolyzed CJO showed a 34.82% descriptive increase in hydration relative to baseline at 4 h and retained 89.29% of the immediate post-application hydration level. These findings demonstrate an effective biocatalytic strategy for producing DOG-rich CJO and support its potential as a functional lipid ingredient for topical applications.

CatalystsVol. 16(10)
Chungbuk National University (KR), Seowon University (KR)
Openalex Percentile: Top 21%
Edible Oils Quality and Analysis
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Biocatalytic Enrichment of Dioleoylglycerol from Camellia japonica Seed Oil Through Lipase-Catalyzed Hydrolysis and Evaluation of Its Skin Hydration Properties — Junseong Park, Seul Lee, et al. · Catalysts (2026) | TGRS Research Map | TGRS