Home The Active Ingredient Matrix Lycium barbarum (Zeaxanthin)

Formulation Intelligence

Lycium barbarum (Zeaxanthin)

Accelerate your CDMO or DTC pipeline. Map the exact physiochemical constraints, bioavailability synergies, and optimal delivery mechanisms for Lycium barbarum (Zeaxanthin).

Lycium barbarum serves as a concentrated source of zeaxanthin dipalmitate, a xanthophyll carotenoid that selectively accumulates in the macular pigment to provide photoprotective antioxidant activity against high-energy blue light and oxidative stress.

Verified Molecular Profiling (NIH PubChem)

PubChem CID

5280899

Molecular Weight

568.9 g/mol

XLogP3 (Lipophilicity)

10.9

IUPAC Name

(1R)-4-[(1E,3E,5E,7E,9E,11E,13E,15E,17E)-18-[(4R)-4-hydroxy-2,6,6-trimethylcyclohexen-1-yl]-3,7,12,16-tetramethyloctadeca-1,3,5,7,9,11,13,15,17-nonaenyl]-3,5,5-trimethylcyclohex-3-en-1-ol

Pharmacokinetic Synergies & Enhancers

Proven Synergy Pairings

  • Lutein for [complementary macular pigment density enhancement and blue light filtration]
  • Meso-zeaxanthin for [comprehensive foveal protection across the entire macular region]

Biological Formulation Enhancers

  • Medium-chain triglycerides (MCTs) for [facilitating micellar solubilization of lipophilic carotenoids in the intestinal lumen]
  • Piperine for [inhibition of metabolic glucuronidation to increase systemic plasma concentrations]

Delivery System Constraints & Modeling

Every active compound behaves uniquely based on the physical matrix it is suspended in. Below are the known physical chemistry challenges for Lycium barbarum (Zeaxanthin) across standard consumer modalities.

💊 Standard Capsules

The lipophilic nature of zeaxanthin requires a lipid-based carrier or oil-filled softgel to prevent the poor dissolution and erratic absorption associated with dry powder crystalline forms.

🍬 Gummy & Pectin Formats

High temperatures during the pectin setting process can trigger oxidative degradation of the carotenoid polyene chain, necessitating the addition of stabilizing antioxidants like tocopherols.

🔬 Thin-Film Oral Strips

The high hydrophobic payload required for therapeutic efficacy often exceeds the structural capacity of thin-film polymers, leading to recrystallization and compromised mechanical integrity.

For Brand Founders

Formulate with Lycium barbarum (Zeaxanthin)

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Efficacy Evidence

Maximize Lycium barbarum (Zeaxanthin) Bioavailability

Need absolute proof that your Lycium barbarum (Zeaxanthin) extract actually absorbs? Stop blindly combining generic powders. Run a physics-based PBPK simulation to mathematically engineer peak clinical efficacy and targeted plasma concentrations.

Simulate Bioavailability

For R&D Labs & CDMOs

Lycium barbarum (Zeaxanthin) Degradation Testing

Is your Lycium barbarum (Zeaxanthin) payload degrading in the capsule before the expiration date? Stop waiting for costly bench testing. Run an accelerated digital twin to precisely model oxidation pathways and pH shifts before finalizing a manufacturing run.

Model Active Degradation