Better Absorption Starts
With Smarter Delivery.
Liposomal technology helps protect active ingredients and improve their absorption compared with conventional supplement formats.
By surrounding nutrients with phospholipid layers, liposomes are designed to reduce degradation during digestion and support more efficient delivery throughout the body. The result is a more intelligent approach to performance, recovery, and everyday nutritional support.
Why Liposomal Delivery Matters
Higher Absorption
Liposomal encapsulation may support improved bioavailability by helping nutrients remain protected during digestion.
Protected Ingredients
The phospholipid shell helps shield sensitive active compounds before they reach the bloodstream.
Smarter Efficiency
More efficient delivery may help maximize nutrient performance without relying only on bigger doses.
Premium Tolerability
Better protected delivery may support a smoother gastrointestinal experience in some formulations.
How It Works
Encapsulation
Active ingredients are enclosed within phospholipid layers that form the liposomal structure.
Protection
The liposomal membrane helps reduce premature breakdown in the digestive environment.
Delivery
Improved transport supports better nutrient availability and more effective cellular delivery.
Why Sunflower Lecithin Phospholipids
Sunflower lecithin phospholipids are used as the structural basis of the liposomal membrane, helping create a cleaner and more advanced delivery system aligned with premium supplement formulation.
Why FOOON uses liposomal science: liposomal delivery is not treated as a trend or surface level claim. It is part of a deeper formulation philosophy focused on absorption, protection, and smarter nutrient performance across mind, body, and sleep support.
- Shade, C. W., et al. (2016). Liposomes as advanced delivery systems for nutraceuticals. Integrative Medicine: A Clinician’s Journal, 15(1), 33–40.
- Jäger, R., et al. (2025). Impact of liposomal delivery on Coenzyme Q10 absorption. Frontiers in Nutrition, 12, 1605033.
- Dałek, P., et al. (2022). Bioavailability by design — Vitamin D₃ liposomal delivery. Advanced Drug Delivery Reviews, 182, 114119.
- Liu, R. H., et al. (2023). Pharmacokinetic analyses of liposomal and non-liposomal multivitamin/mineral formulations: A comparative human study. Nutrients, 15(3), 771–784.
- Davis, J. L., et al. (2016). Liposomal-encapsulated ascorbic acid: Influence on vitamin C bioavailability and capacity to reduce oxidative stress. Nutritional Metabolomics Insights, 9, 25–33.
- Filipczak, N., et al. (2020). Recent advancements in liposome technology. Advanced drug delivery reviews, 156, 4–22.
- Crommelin, D., et al. (2020). The role of liposomes in clinical nanomedicine development. What now? Now what?. Journal of controlled release : official journal of the Controlled Release Society, 318, 256–263.
- Santini, A., et al. (2018). Nutraceuticals: opening the debate for a regulatory framework. British journal of clinical pharmacology, 84(4), 659–672.
- Porter, C., et al. (2007). Lipids and lipid-based formulations: optimizing the oral delivery of lipophilic drugs. Nature Reviews Drug Discovery 6(3), 231-48.
- Hirose, A., et al. (2018). Effect of soy lecithin on fatigue and menopausal symptoms in middle-aged women: a randomized, double-blind, placebo-controlled study. Nutrition Journal, 17(1), 1-8.
- Lee, B., et al. (2015). Oral administration of squid lecithin-transphosphatidylated phosphatidylserine improves memory impairment in aged rats. Progress in Neuro-psychopharmacology and Biological Psychiatry, 56, 1-10.
- Küllenberg, D., et al. (2012). Health effects of dietary phospholipids. Lipids in Health and Disease, 11(1), 1-16.