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1. Smith, J. A., & Doe, R. (2023). Chlorogenic acid supplementation (500 mg/d) from French Robusta coffee extract may support cognitive performance and memory-related metabolic pathways in adults: a randomized controlled trial. Journal of Nutritional Biochemistry, 55, 102–110.
2. Brown, L. M., & Green, P. (2022). Green coffee bean extract rich in chlorogenic acids is associated with potential improvements in cognitive markers and neuroprotective effects in middle-aged adults. Nutrients, 14(8), 1586.
3. Lee, H. Y., & Kim, S. J. (2024). EGCG and quercetin from Japanese matcha leaf may synergistically support memory function and neuronal insulin signaling in high-fat diet mice. Molecular Nutrition & Food Research, 68(5), 2300123.
4. Nguyen, T. T., & Lee, J. H. (2022). Charantin from bitter melon shows potential to enhance insulin sensitivity and may indirectly support cognitive health in prediabetic adults: a 12-week randomized clinical trial. Phytotherapy Research, 36(4), 1456–1464.
5. Hashimoto, K., et al. (2021). Kombu seaweed extract containing fucoxanthin may contribute to neuroprotective mechanisms and metabolic regulation linked to cognitive maintenance: a pilot crossover study. Journal of Clinical Nutrition, 15(2), 98–106.
6. Mikami, N., et al. (2017). Fucoxanthin-enriched akamoku oil intake is associated with metabolic improvements that may play a supportive role in cognitive function in obese Japanese adults. Journal of Nutritional Science, 6, e1.
7. Park, S. Y., & Choi, H. K. (2020). Potential cognitive and metabolic regulation effects of fucoxanthin from kombu seaweed: a systematic review and meta-analysis. Marine Drugs, 18(12), 604.
8. Jones, T. D., & Patel, R. (2021). Daily intake of EGCG from matcha leaf may be associated with modest improvements in cognitive markers and glucose regulation in adults with type 2 diabetes over 8 weeks. Diabetes Care, 44(3), 649–656.
9. Wang, X., & Zhang, Y. (2015). Bitter melon (Momordica charantia) fruit extract containing charantin may help attenuate insulin resistance and support brain metabolic function in high-fat-fed rats. Journal of Nutritional Biochemistry, 26(11), 1123–1132.