Oluwatobi Amusat
Researcher
Graduate Student Researcher
Research Areas
Biography and Research Information
OverviewAI-generated summary
Oluwatobi Amusat's research focuses on the impact of dietary components and natural extracts on human health. His work includes investigating the anti-colon cancer effects of apio tuber extract and exploring how 3D-printed starch-zein hydrogels can enhance lutein bioaccessibility and intestinal transport. This latter study utilizes an in vitro digestion model with Caco-2 cells to simulate human digestion and absorption processes. Amusat collaborates with Sun-Ok Lee at the University of Arkansas at Fayetteville, with whom he has co-authored two publications. His recent activity indicates ongoing engagement in research within the health and nutrition sciences.
Metrics
- Publications: 1
Selected Publications
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3DP-Encapsulated Lutein Attenuates LPS-Induced Intestinal Inflammation in a Caco-2/RAW 264.7 Cells Co-culture Model (2026)
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Impact of In Vitro Digestion on Garlic Scape Bioactive Compounds and Antioxidant Activity (2026)
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Impact of Protein Hydrolysis and Starch Heat-Moisture Treatment on the Phenolic Profile and Antioxidant Activities of Pigmented Rice Bran Protein-Starch Complexes (2026)
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3D-printed starch-zein hydrogels enhance lutein bioaccessibility and intestinal transport in an in vitro digestion–Caco-2 model (2026)
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3D-Printed Lutein Formulations: Investigating Effects on Antioxidant Activity and In Vitro Bioavailability (2025)
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Anti-colon Cancer Effect of Apio Tuber Extract (2024)
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Anti-inflammatory Effect of Apio Leaf (Arracacia Xanthorrhiza) Extracts on Lipopolysaccharide (LPS)-Stimulated RAW 264.7 Cells (2024)
Collaboration Network
Top Collaborators
- Anti-colon Cancer Effect of Apio Tuber Extract
- Anti-colon Cancer Effect of Apio Tuber Extract
- Anti-colon Cancer Effect of Apio Tuber Extract
- 3D-printed starch-zein hydrogels enhance lutein bioaccessibility and intestinal transport in an in vitro digestion–Caco-2 model
- 3D-printed starch-zein hydrogels enhance lutein bioaccessibility and intestinal transport in an in vitro digestion–Caco-2 model
- 3D-printed starch-zein hydrogels enhance lutein bioaccessibility and intestinal transport in an in vitro digestion–Caco-2 model
- 3D-printed starch-zein hydrogels enhance lutein bioaccessibility and intestinal transport in an in vitro digestion–Caco-2 model
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