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Comparative Analysis of Glucosylceramide, Steryl glucoside, and Cytotoxicity in Rice Bran Extracts from Hom Pathum and Riceberry

Comparative Analysis of Glucosylceramide, Steryl Glucoside, And Cytotoxicity in Rice Bran Extracts From Hom Pathum and Riceberry

Original Research ArticleSep 8, 2026Online First Articles https://doi.org/10.55003/cast.2026.270013

Abstract

This study evaluated residual methanol levels, lipid class distribution, and the glucosylceramide (GlcCer) and steryl glucoside (SG) contents of rice bran extracts from Hom Pathum (HP) and Riceberry (RB) cultivars and assessed the cytotoxicity of the GlcCer- and SG-enriched extracts using skin-relevant cell models. Rice bran from both cultivars was sequentially extracted with ethyl acetate followed by methanol. Residual methanol in crude extracts was quantified using headspace GC–MS. Total lipids were fractionated by solid-phase extraction into neutral lipids (NL), glycolipids (GL), and phospholipids (PL), and the GL fraction was analyzed by thin-layer chromatography with image-based quantification to determine GlcCer and SG contents. The RB extract, which showed higher glycolipid content, was selected for cytotoxicity testing using a resazurin reduction assay in HaCaT keratinocytes and BJ fibroblasts. HS-GC–MS results confirmed that residual methanol was below 10 ppm in all extracts, meeting international safety guidelines. Lipid profiling revealed clear varietal differences: HP bran was dominated by NL (90.3% w/w), whereas RB contained higher proportions of GL (14.3% w/w) and PL (17.3% w/w). GlcCer (3.08% of GL; 0.027% w/w of bran) and SG (6.34% of GL; 0.055% w/w of bran) were detected exclusively in RB. In vitro assays showed that RB extract was non-cytotoxic to HaCaT and BJ cells at 6.25–50 µg/mL and increased fibroblast viability (113-114%) at 100-200 µg/mL. Overall, the findings indicate that Riceberry bran provides a safe, GlcCer-rich lipid extract with potential dermal benefits. This integrated assessment identifies Riceberry bran as a promising source of functional sphingolipids for nutraceutical, cosmeceutical, and topical applications.

Hom Pathum rice bran extract
Riceberry rice bran extract
glucosylceramide
steryl glucoside
residual solvents
cytotoxicity
HaCaT keratinocytes
BJ fibroblasts

How to Cite

Wattanuruk, D. ., Pangsri, P. ., & Jaroennon, P. . (2026). Comparative Analysis of Glucosylceramide, Steryl glucoside, and Cytotoxicity in Rice Bran Extracts from Hom Pathum and Riceberry. Current Applied Science and Technology, e0270013. https://doi.org/10.55003/cast.2026.270013

References

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Author Information

Duangduan Wattanuruk

This study evaluated residual methanol levels, lipid class distribution, and the glucosylceramide (GlcCer) and steryl glucoside (SG) contents of rice bran extracts from Hom Pathum (HP) and Riceberry (RB) cultivars and assessed the cytotoxicity of the GlcCer- and SG-enriched extracts using skin-relevant cell models. Rice bran from both cultivars was sequentially extracted with ethyl acetate followed by methanol. Residual methanol in crude extracts was quantified using headspace GC–MS. Total lipids were fractionated by solid-phase extraction into neutral lipids (NL), glycolipids (GL), and phospholipids (PL), and the GL fraction was analyzed by thin-layer chromatography with image-based quantification to determine GlcCer and SG contents. The RB extract, which showed higher glycolipid content, was selected for cytotoxicity testing using a resazurin reduction assay in HaCaT keratinocytes and BJ fibroblasts. HS-GC–MS results confirmed that residual methanol was below 10 ppm in all extracts, meeting international safety guidelines. Lipid profiling revealed clear varietal differences: HP bran was dominated by NL (90.3% w/w), whereas RB contained higher proportions of GL (14.3% w/w) and PL (17.3% w/w). GlcCer (3.08% of GL; 0.027% w/w of bran) and SG (6.34% of GL; 0.055% w/w of bran) were detected exclusively in RB. In vitro assays showed that RB extract was non-cytotoxic to HaCaT and BJ cells at 6.25–50 µg/mL and increased fibroblast viability (113-114%) at 100-200 µg/mL. Overall, the findings indicate that Riceberry bran provides a safe, GlcCer-rich lipid extract with potential dermal benefits. This integrated assessment identifies Riceberry bran as a promising source of functional sphingolipids for nutraceutical, cosmeceutical, and topical applications.

Phanwipa Pangsri

Department of Thai Traditional Biological Science, Faculty of Science and Technology, Valaya Alongkorn Rajabhat University under the Royal Patronage, Pathumthani, 13180, Thailand

Pattamaporn Jaroennon

Department of Nutrition and Dietetics, Faculty of Science and Technology, Valaya Alongkorn Rajabhat University under the Royal Patronage, Pathumthani, 13180, Thailand

About this Article

Journal

Online First Articles

Type of Manuscript

Original Research Article

Published

8 September 2026