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High Loading Liposomal St. John’s Wort Extract Powder Bulk Pure Hypericum Perforatum Liposome

Short Description:

Liposomal Hypericum Perforatum (St. John’s Wort) Extract Powder is a premium raw material produced using advanced phospholipid encapsulation technology, designed to overcome the two critical vulnerabilities of standard Hypericum extracts。


Product Detail

Product Tags

Botanical Delivery System

LIPOSOMAL HYPERICUM

PERFORATUM EXTRACT (50% / 70%)

Liposomal Hypericum Perforatum (St. John’s Wort) Extract Powder is a premium raw material produced using advanced phospholipid encapsulation technology, designed to overcome the two critical vulnerabilities of standard Hypericum extracts: extreme sensitivity to light-induced degradation and limited aqueous solubility. By encapsulating the standardized extract—rich in hypericin and hyperforin—within a stable phospholipid bilayer, this raw material acts as a physical light shield and a solubility enhancer. With industry-leading active loading of 50% and 70%, our Liposomal Hypericum ensures the preservation of delicate active compounds while maximizing their systemic bioavailability for premium formulations focused on emotional wellness and relaxation.

Light-Shield Tech
70% High Loading
EE ≥ 90%
Liposomal Hypericum Perforatum Extract Powder

TECHNICAL SPECIFICATIONS

Product Name
Liposomal Hypericum Perforatum Extract Powder
Active Ingredient
Standardized Hypericum Perforatum Extract
Active Loading Capacity
50% / 70% (High Assay)
Encapsulation Efficiency (EE%)
≥ 90%
Particle Size (Typical Range)
100nm – 300nm (Rehydrated)
PDI (Polydispersity Index)
≤ 0.3
Appearance
Fine Light Brown to Brown Powder
Solubility
Dispersible in water (forms stable emulsion)
Storage Condition
Cool, dry place. Keep away from light and heat. Strictly protect from direct sunlight.
Shelf Life
24 Months

LIPOSOMAL LIGHT-SHIELD TECH

Our Liposomal Hypericum Extract utilizes a proprietary high-pressure homogenization process that embeds the light-sensitive phytochemicals within nanometer-scale phospholipid vesicles. Standard Hypericum powders rapidly degrade under ambient light and oxygen, losing bioactivity. The phospholipid bilayer functions as a “molecular light shield,” physically isolating the hypericin and hyperforin from UV and environmental radiation.

Simultaneously, the liposomal carrier enables the hydrophobic active compounds to disperse uniformly in aqueous media and to be absorbed via the lymphatic pathway, bypassing first-pass metabolism and ensuring intact delivery to the systemic circulation.

Liposomal Light-Shield Principle

KEY ADVANTAGES

Enhanced Photostability

The lipid bilayer provides a physical barrier against UV light and oxygen, protecting the delicate naphthodianthrone compounds from rapid degradation during storage and manufacturing.

Maximized Bioavailability

Lymphatic absorption pathway bypasses hepatic metabolism, ensuring higher plasma levels of intact active compounds compared to standard extract powders.

Water-Phase Compatibility

Transforms a hydrophobic botanical into a water-dispersible raw material, enabling its integration into liquid functional beverages and powdered drink mixes.

High Active Loading (Up to 70%)

Provides a highly concentrated format, reducing the required dosage volume in compact capsule and sachet formulations for wellness brands.

EVIDENCE & LAB VERIFICATION

1. DLS Particle Size Verification

Representative particle size analysis (100nm–300nm) confirms successful liposome formation upon rehydration, ensuring true nano-delivery.

2. HPLC Potency Analysis

Every batch is verified for active extract content to confirm the 50% or 70% loading specification with batch consistency.

3. Hypericin Profile Stability Monitoring

Standardized extract substrate is verified for consistent hypericin content, safeguarding the anti-photodegradation performance.

4. Heavy Metal Compliance

Rigorously screened to meet global safety standards for herbal supplements (Pb ≤ 2ppm, As ≤ 1ppm).

Functional Roles of Liposomal Hypericum

FUNCTIONAL ROLES

1. Emotional Wellness Support

Provides traditional herbal support for maintaining a balanced and positive mood throughout seasonal transitions.

2. Relaxation Promotion

Supports the body’s natural relaxation pathways, contributing to restful sleep preparation and mental calm.

3. Antioxidant Defense

The native phenolic compounds within the extract contribute to cellular oxidative stress resilience and overall vitality.

INDUSTRIAL APPLICATIONS

1. Premium Relaxation Capsules

The premier choice for “Mood Balance” and “Nighttime Calm” product lines targeting mental wellness and sleep support.

2. Functional Beverage Mixes

Suitable for water-dispersible herbal sachets, calming teas, and relaxation shots with superior solublity.

3. Holistic Wellness Blends

High loading capacity enables combination with Magnesium or L-Theanine in a single compact dosage form for synergistic calm.

4. Custom Clinical Premixes

Ideal for professional herbal protocols requiring consistent hypericin profiles and reliable shelf stability.

OEM & PACKING

OEM Service

OEM

Packaging Solution

PACKAGING

Certificates

CERTIFICATES

Transport

TRANSPORT

TECHNICAL FAQ

Q1: Why is liposomal encapsulation particularly important for St. John’s Wort?

A: Hypericin and hyperforin are extremely light-sensitive. In standard powders, they degrade rapidly under ambient light. The liposomal lipid bilayer acts as a physical “light shield,” significantly extending the active shelf life during manufacturing and storage.

Q2: How does the 70% loading stay stable without component separation?

A: Our spray-drying process utilizes precise phospholipid-to-extract ratios and proprietary matrix stabilizers to ensure the botanical extract is evenly distributed within the lipid spheres without phase separation, even at high concentrations.

Q3: Is this product water-soluble?

A: It is water-dispersible. Upon rehydration, it forms a stable, slightly brownish or opaque liposomal emulsion. This dispersion state is the physical proof that the botanical compounds are successfully encapsulated within the lipid bilayers.


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