OK1. “Curcumin Supplementation and Human Disease: A Scoping Review of Clinical Trials,” International Journal of Molecular Sciences, 2023.
OK2. “Turmeric for Healthier Diet, Pain Relief,” Mayo Clinic, 2023.
OK3. “A Well-Known Plant and New Therapeutic Strategies: Turmeric and Its Components in Oral Inflammatory Diseases Treatment,” Applied Sciences, 2023.
OK4. “The Health Benefits of Turmeric,” Harvard Health, 2023.
OK5. “Curcumin Supplementation and Human Disease: A Scoping Review of Clinical Trials,” International Journal of Molecular Sciences, 2023.
OK6. “Turmeric for Healthier Diet, Pain Relief,” Mayo Clinic, 2023.
OK7. “Turmeric and Its Health Benefits,” National Center for Complementary and Integrative Health, 2023.
OK8. “Curcumin Supplementation and Human Disease: A Scoping Review of Clinical Trials,” International Journal of Molecular Sciences, 2023.
OK9. “Ginger and Its Health Benefits,” National Center for Complementary and Integrative Health, 2023.
OK10. “The Antibacterial Properties of Ginger,” Journal of Ethnopharmacology, 2020.
OK11. “The Benefits of Ginger on Digestive Health,” Phytotherapy Research, 2019.
OK12. “Ginger and Gastrointestinal Health,” Journal of Gastroenterology, 2018.
OK13. “Ginger for Pain Management: A Review,” Journal of Pain Research, 2020.
OK14. “The Anti-Inflammatory Effects of Ginger,” Journal of Ethnopharmacology, 2019.
OK15. “Ginger and Immune Function,” Journal of Nutritional Biochemistry, 2019.
OK16. “The Immunomodulatory Properties of Ginger,” Journal of Herbal Medicine, 2020.
OK17. “The Role of Vitamin D in Bone Health,” Journal of Clinical Endocrinology & Metabolism, 2018.
OK18. “Vitamin D and Immune System,” Journal of Investigative Medicine, 2019.
OK19. “Vitamin D and Calcium Absorption,” Journal of Bone and Mineral Research, 2020.
OK20. “The Importance of Vitamin D for Bone Health,” Osteoporosis International, 2019.
OK21. “The Role of Vitamin D in Immune Function,” Journal of Clinical Virology, 2020.
OK22. “Vitamin D and Inflammation,” Journal of Clinical Endocrinology & Metabolism, 2018.
OK23. “Vitamin D and Mental Health,” Journal of Psychiatric Research, 2019.
OK24. “The Effects of Vitamin D on Mood and Depression,” Journal of Affective Disorders, 2020.
MG1. Docherty, Sarah, et al. “The Acute and Chronic Effects of Lion’s Mane Mushroom Supplementation on Cognitive Function, Stress and Mood in Young Adults: A Double-Blind, Parallel Groups, Pilot Study.” Nutrients, 2023.
MG2. “Boost Your Focus: The Cognitive Benefits of Lion’s Mane.” BATCH, 2023.
MG3. Docherty, Sarah, et al. “The Acute and Chronic Effects of Lion’s Mane Mushroo Supplementation on Cognitive Function, Stress and Mood in Young Adults.” Nutrients, 2023.
MG4. “Lion’s Mane: Benefits for Inflammation, Memory, More.” Verywell Health, 2023.
MG5. “Mushrooms magnify memory by boosting nerve growth.” University of Queensland, 2023.
MG6. “Lion’s Mane Mushroom Cognitive and Health Benefits.” Botanical Spirit, 2023.
MG7. Docherty, Sarah, et al. “The Acute and Chronic Effects of Lion’s Mane Mushroom Supplementation on Cognitive Function, Stress and Mood in Young Adults.” Nutrients, 2023.
MG8. “Lion’s Mane: Benefits for Inflammation, Memory, More.” Verywell Health, 2023.
MG9. “Cocoa and Chocolate in Human Health and Disease.” Antioxidants & Redox Signaling, 2011.
MG10. “Theobroma cacao: A Double-Edged Sword for Brain Health.” Journal of Nutritional Biochemistry, 2017.
MG11. “Cocoa Flavanols and Brain Perfusion Imaging in Older Adults.” Journal of Psychopharmacology, 2006.
MG12. “Cocoa Polyphenols and Their Effects on Cognitive Performance.” British Journal of Clinical Pharmacology, 2012.
MG13. “Effects of Cocoa Supplementation on Attention, Cognition, and Mood.” Psychopharmacology, 2014.
MG14. “Acute Cognitive Enhancements Following Consumption of a Single Dose of Dark Chocolate.” Appetite, 2011.
MG15. “The Cardiovascular Benefits of Dark Chocolate.” Current Opinion in Lipidology, 2006.
MG16. “Effects of Chocolate on Blood Pressure and Endothelial Function.” American Journal of Clinical Nutrition, 2007.
MG17. “Omega-3 Fatty Acids and Cognitive Decline: A Meta-Analysis.” Neurology, 2012.
MG18. “Fish Consumption, Omega-3 Fatty Acids, and Cognitive Decline in Women.” American Journal of Clinical Nutrition, 2005.
MG19. “Omega-3 Fatty Acids in Cardiovascular Disease: A Review of the Evidence.” Journal of the American College of Cardiology, 2009.
MG20. “Marine Omega-3 Fatty Acids and Cardiovascular Disease.” Circulation, 2002.
MG21. “Anti-Inflammatory Properties of Omega-3 Fatty Acids.” Journal of the American College of Nutrition, 2002.
MG22. “Omega-3 Fatty Acids and Inflammation: A Perspective.” Journal of Internal Medicine, 2008.
MG23. “Omega-3 Fatty Acids in Major Depressive Disorder: A Meta-Analysis.” Journal of Clinical Psychiatry, 2007.
MG24. “The Role of Omega-3 Fatty Acids in Mood Disorders.” Current Psychiatry Reports, 2013.
SS1. Kennedy D.O., Scholey A.B. “The psychopharmacology of European herbs with cognition-enhancing properties.” Current Pharmaceutical Design, 2006.
SS2. “Lemon balm (Melissa officinalis).” National Center for Complementary and Integrative Health, 2023.
SS3. Kennedy D.O., Scholey A.B. “The psychopharmacology of European herbs with cognition-enhancing properties.” Current Pharmaceutical Design, 2006.
SS4. “Lemon balm (Melissa officinalis).” National Center for Complementary and Integrative Health, 2023.
SS5. Cases J., Ibarra A., Feuillere N., et al. “Pilot investigation of the stress-relieving and sleep-enhancing effects of a lemon balm (Melissa officinalis L.) extract in healthy volunteers.” Mediterranean Journal of Nutrition and Metabolism, 2011.
SS6. Kennedy D.O., Scholey A.B. “The psychopharmacology of European herbs with cognition-enhancing properties.” Current Pharmaceutical Design, 2006.
SS7. Cases J., Ibarra A., Feuillere N., et al. “Pilot investigation of the stress-relieving and sleep-enhancing effects of a lemon balm (Melissa officinalis L.) extract in healthy volunteers.” Mediterranean Journal of Nutrition and Metabolism, 2011.
SS8. Kennedy D.O., Scholey A.B. “The psychopharmacology of European herbs with cognition-enhancing properties.” Current Pharmaceutical Design, 2006.
SS9. Basch E., Bent S., Foppa I., et al. “Marigold (Calendula officinalis): An evidence-based systematic review by the Natural Standard Research Collaboration.” Journal of Herbal Pharmacotherapy, 2006.
SS10. Alnuqaydan A.M., Lenehan C.E., Hughes R.R., Sanderson B.J. “Extracts from Calendula officinalis offer in vitro protection against H2O2 induced oxidative stress cell killing of human skin cells.” Phytotherapy Research, 2015.
SS11. Duran V., Matic M., Jovanovc M., et al. “Results of the clinical examination of an ointment with marigold (Calendula officinalis) extract in the treatment of venous leg ulcers.” International Journal of Tissue Reactions, 2005.
SS12. Akhtar N., Zaman S.U., Khan B.A., Amir M.N., Ebrahimzadeh M.A. “Calendula extract: effects on mechanical parameters of human skin.” Acta Poloniae Pharmaceutica, 2011.
SS13. Basch E., Bent S., Foppa I., et al. “Marigold (Calendula officinalis): An evidence-based systematic review by the Natural Standard Research Collaboration.” Journal of Herbal Pharmacotherapy, 2006.
SS14. Duran V., Matic M., Jovanovc M., et al. “Results of the clinical examination of an ointment with marigold (Calendula officinalis) extract in the treatment of venous leg ulcers.” International Journal of Tissue Reactions, 2005.
SS15. Basch E., Bent S., Foppa I., et al. “Marigold (Calendula officinalis): An evidence-based systematic review by the Natural Standard Research Collaboration.” Journal of Herbal Pharmacotherapy, 2006.
SS16. Akhtar N., Zaman S.U., Khan B.A., Amir M.N., Ebrahimzadeh M.A. “Calendula extract: effects on mechanical parameters of human skin.” Acta Poloniae Pharmaceutica, 2011.
SS17. Mahli A., Rapp S., Koch A., et al. “Humulus lupulus (Hop) Induces Anti-inflammatory Effects on Mice via Immunometabolic Reprogramming.” Frontiers in Immunology, 2020.
SS18. “The pharmacological properties of hops (Humulus lupulus L.).” Phytomedicine, 2006.
SS19. Mahli A., Rapp S., Koch A., et al. “Humulus lupulus (Hop) Induces Anti-inflammatory Effects on Mice via Immunometabolic Reprogramming.” Frontiers in Immunology, 2020.
SS20. “The pharmacological properties of hops (Humulus lupulus L.).” Phytomedicine, 2006.
SS21. Mahli A., Rapp S., Koch A., et al. “Humulus lupulus (Hop) Induces Anti-inflammatory Effects on Mice via Immunometabolic Reprogramming.” Frontiers in Immunology, 2020.
SS22. “The pharmacological properties of hops (Humulus lupulus L.).” Phytomedicine, 2006.
SS23. Mahli A., Rapp S., Koch A., et al. “Humulus lupulus (Hop) Induces Anti-inflammatory Effects on Mice via Immunometabolic Reprogramming.” Frontiers in Immunology, 2020.
SS24. “The pharmacological properties of hops (Humulus lupulus L.).” Phytomedicine, 2006.